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6088 lines
144 KiB
Markdown
6088 lines
144 KiB
Markdown
# Physics Equations — Parallel Mapped
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**Workers:** 6 | **Equation:** Ω = Ψ [ B(θ) ⊗ C(n, α) ] ⊕ Δ(n, θ, α)
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---
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## Eq 5. Euler-Lagrange Equation
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Predicted trajectory or position |
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| Ψ | Lagrangian function or Hamiltonian operator |
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| B | Generalized momentum or conserved quantity |
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| C | Coordinate or generalized coordinate |
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| Δ | External force or perturbation |
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---
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## Eq 2. Lagrangian Mechanics (Principle of Least Action)
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Action S |
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| Ψ | Lagrangian L |
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| B | Conserved momentum p |
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| C | Generalized coordinates q |
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| Δ | Residual energy uncertainty |
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---
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## Eq 6. D'Alembert's Principle
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Virtual work for dynamics |
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| Ψ | Lagrange's equations or Newtonian mechanics |
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| B | Conserved momentum or energy |
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| C | Variable parameters like mass, velocity, and position |
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| Δ | Residual forces or unaccounted energy |
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---
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## Eq 3. Hamiltonian Mechanics
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Hamiltonian |
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| Ψ | Lagrangian |
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| B | Position |
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| C | Momentum |
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| Δ | Energy |
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---
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## Eq 1. Newton's Three Laws of Motion
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Force |
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| Ψ | Inertia |
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| B | Mass |
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| C | Velocity |
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| Δ | Friction |
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---
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## Eq 4. Hamilton-Jacobi Equation
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Action S |
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| Ψ | Hamiltonian H |
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| B | Conserved energy E |
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| C | Generalized coordinates q |
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| Δ | Residual energy uncertainty |
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---
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## Eq 7. Euler's Rigid Body Rotation Equations
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Angular velocity |
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| Ψ | Euler's rotation theory |
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| B | Inertia tensor |
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| C | Angular momentum |
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| Δ | Torque |
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---
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## Eq 8. Conservation of Momentum
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Momentum |
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| Ψ | Laws of motion |
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| B | Mass and velocity |
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| C | External forces |
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| Δ | Frictional losses |
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---
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## Eq 9. Conservation of Angular Momentum
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Angular Momentum |
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| Ψ | Laws of Classical Mechanics |
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| B | Moment of Inertia |
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| C | Torque |
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| Δ | External Torque |
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---
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## Eq 10. Conservation of Energy
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Total Energy |
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| Ψ | Lagrangian or Hamiltonian |
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| B | Kinetic and Potential Energy |
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| C | External Forces and Friction |
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| Δ | Thermal Noise and Dissipation |
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---
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## Eq 11. Work-Energy Theorem
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Work done |
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| Ψ | Force applied over distance |
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| B | Kinetic energy |
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| C | Mass and velocity |
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| Δ | Initial kinetic energy |
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---
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## Eq 12. Impulse-Momentum Theorem
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Change in momentum |
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| Ψ | Force applied over time |
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| B | Conserved linear momentum |
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| C | Time and force variation |
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| Δ | Residual impulse error |
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---
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## Eq 13. Center of Mass Equation
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Position of Center of Mass |
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| Ψ | Newton's Second Law of Motion |
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| B | Mass of System Components |
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| C | External Forces Acting on System |
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| Δ | Frictional and Other Unaccounted Forces |
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---
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## Eq 14. Hooke's Law
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**Domain:** Continuum Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Force |
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| Ψ | Spring Constant |
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| B | Stress |
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| C | Strain |
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| Δ | Residual Stress |
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---
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## Eq 15. Parallel Axis Theorem
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Moment of inertia |
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| Ψ | Rotational dynamics theory |
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| B | Mass distribution basis |
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| C | Distance from axis parameter |
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| Δ | Residual rotational energy |
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---
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## Eq 16. Coriolis Force
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Coriolis Force |
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| Ψ | Rotating Frame Theory |
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| B | Angular Momentum |
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| C | Velocity Vector |
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| Δ | Inertial Frame Error |
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---
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## Eq 17. Centrifugal Force
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Centrifugal Force |
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| Ψ | Rotating Frame Theory |
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| B | Angular Momentum Basis |
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| C | Angular Velocity Parameter |
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| Δ | Inertial Error Residual |
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---
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## Eq 18. Simple Harmonic Motion
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Displacement |
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| Ψ | Hooke's Law |
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| B | Spring Constant |
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| C | Angular Frequency |
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| Δ | Damping |
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---
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## Eq 19. Damped Harmonic Oscillator
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Position or displacement of the oscillator |
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| Ψ | Lagrangian or Hamiltonian formulation of the system |
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| B | Conserved energy or momentum basis |
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| C | Damping coefficient or friction parameter |
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| Δ | Frictional force or thermal noise |
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---
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## Eq 20. Forced Oscillator + Resonance
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Amplitude of oscillation |
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| Ψ | Forced oscillator model |
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| B | Conserved energy basis |
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| C | Damping coefficient and frequency |
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| Δ | Resonance error margin |
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---
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## Eq 21. Coupled Oscillators (Normal Modes)
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Coupled Oscillator Normal Mode |
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| Ψ | Mechanical Theory of Coupled Oscillators |
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| B | Conserved Linear Momentum Basis |
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| C | Dynamic Mass and Spring Constant Context |
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| Δ | Residual Energy Loss due to Friction |
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---
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## Eq 22. Pendulum Equation
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Angular displacement |
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| Ψ | Lagrangian mechanics |
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| B | Conserved angular momentum |
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| C | Gravity parameter (g) |
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| Δ | Energy dissipation |
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---
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## Eq 23. Kinematics (Constant Acceleration)
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**Domain:** Classical Mechanics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Velocity |
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| Ψ | Kinematics Theory |
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| B | Constant Acceleration |
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| C | Time and Distance |
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| Δ | Displacement Error |
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---
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## Eq 24. Universal Gravitation Law
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Force |
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| Ψ | Gravity Theory |
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| B | Mass |
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| C | Distance |
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| Δ | None |
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---
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## Eq 25. Gravitational Potential Energy
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Gravitational Potential Energy |
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| Ψ | General Relativity Theory |
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| B | Mass (M) |
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| C | Distance (r) and Angle (θ, α) |
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| Δ | Residual Error in Measurement |
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---
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## Eq 26. Kepler's First Law
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Eccentricity of planetary orbit |
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| Ψ | Gravitational force law |
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| B | Conserved angular momentum |
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| C | Variable semi-major axis and eccentricity |
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| Δ | Residual orbital perturbations |
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---
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## Eq 27. Kepler's Second Law
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Angular momentum |
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| Ψ | Gravitational force law |
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| B | Conserved angular momentum |
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| C | Orbital eccentricity and inclination |
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| Δ | Residual gravitational perturbations |
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---
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## Eq 28. Kepler's Third Law
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Orbital period squared |
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| Ψ | Gravitational theory of elliptical orbits |
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| B | Mass of central body (M) |
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| C | Semimajor axis length (a) |
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| Δ | Residual gravitational error |
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---
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## Eq 29. Escape Velocity
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Escape Velocity |
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| Ψ | Gravitational Theory |
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| B | Mass and Gravity |
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| C | Radius of Orbit |
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| Δ | Residual Error |
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---
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## Eq 30. Orbital Velocity (Circular)
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Orbital Velocity |
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| Ψ | Gravitational Theory |
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| B | Mass (M) |
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| C | Radius (r) |
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| Δ | None, exact solution |
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---
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## Eq 31. Poisson Equation (Gravity)
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Gravitational potential Φ |
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| Ψ | Gravity theory / general relativity |
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| B | Mass M (conserved basis) |
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| C | Density ρ (dynamic context) |
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| Δ | Residual error in gravitational field |
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---
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## Eq 32. Tidal Force
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**Domain:** Gravitation
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Tidal Force |
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| Ψ | Gravitational Theory |
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| B | Mass (M) |
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| C | Distance (r) |
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| Δ | Positional Error |
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---
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## Eq 33. Gravitational Time Dilation (GR)
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**Domain:** Relativity
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Gravitational time dilation effect |
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| Ψ | General Relativity theory |
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| B | Mass (M) and radius (r) |
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| C | Velocity (v) and acceleration (a) |
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| Δ | Residual error in time measurement |
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---
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## Eq 34. Precession of Perihelion (GR)
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**Domain:** Relativity
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Precession of Perihelion |
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| Ψ | General Relativity Theory |
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| B | Conserved Angular Momentum |
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| C | Orbital Eccentricity and Mass |
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| Δ | Gravitational Frame-Dragging Error |
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---
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## Eq 35. Lense-Thirring Precession (Frame Dragging)
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**Domain:** Relativity
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Lense-Thirring Precession angular velocity |
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| Ψ | General Relativity theory |
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| B | Conserved angular momentum J |
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| C | Mass M and spin axis α |
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| Δ | Residual error due to approximations |
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---
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## Eq 36. Coulomb's Law
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Force between charges |
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| Ψ | Electromagnetic theory |
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| B | Charge (q) |
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| C | Distance (r) and angle (θ) |
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| Δ | None, exact result |
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---
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## Eq 37. Lorentz Force Law
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Force (F) |
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| Ψ | Electromagnetic theory |
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| B | Magnetic field |
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| C | Electric charge and velocity |
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| Δ | Residual electromagnetic noise |
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---
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## Eq 39. Maxwell's Equations (Integral)
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Electric flux density |
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| Ψ | Electromagnetic theory |
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| B | Magnetic field strength |
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| C | Surface area or length |
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| Δ | Residual magnetic flux |
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---
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## Eq 41. Scalar and Vector Potentials
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Electromagnetic field |
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| Ψ | Maxwell's equations |
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| B | Magnetic flux density |
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| C | Electric potential and current |
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| Δ | Residual electromagnetic noise |
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---
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## Eq 42. Gauge Invariance (U(1) in E&M)
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Predicted electromagnetic field |
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| Ψ | Gauge theory operator |
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| B | Conserved electric potential |
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| C | Dynamic gauge parameter |
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| Δ | Residual gauge invariance error |
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---
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## Eq 43. Biot-Savart Law
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | dB |
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| Ψ | Electromagnetic theory |
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| B | Magnetic field strength |
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| C | Current and distance |
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| Δ | Residual magnetic noise |
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---
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## Eq 44. Ampère's Force Law (Wire)
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Magnetic force |
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| Ψ | Electromagnetic theory |
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| B | Magnetic field |
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| C | Current density |
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| Δ | Torque uncertainty |
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---
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## Eq 45. Ohm's Law
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Voltage |
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| Ψ | Electric field |
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| B | Current |
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| C | Conductivity |
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| Δ | Resistance |
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---
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## Eq 46. Kirchhoff's Current Law (KCL)
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Current |
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| Ψ | Electromagnetic theory |
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| B | Charge carriers |
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| C | Voltage and resistance |
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| Δ | Junction losses |
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---
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## Eq 47. Kirchhoff's Voltage Law (KVL)
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Voltage |
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| Ψ | Electromagnetic theory |
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| B | Current |
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| C | Resistance |
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| Δ | Joule's law limit |
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---
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## Eq 48. Faraday's Law of Induction
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Induced EMF |
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| Ψ | Faraday's Law of Induction |
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| B | Magnetic Flux |
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| C | Time (t) |
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| Δ | Residual Error |
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---
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## Eq 49. Lenz's Law
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Induced current |
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| Ψ | Electromagnetic induction |
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| B | Magnetic field |
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| C | Flux change rate |
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| Δ | Resistance |
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---
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## Eq 50. Poynting's Theorem
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Power flow |
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| Ψ | Electromagnetic theory |
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| B | Magnetic field |
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| C | Current density |
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| Δ | Energy dissipation |
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---
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## Eq 51. Electromagnetic Wave Equation
|
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**Domain:** Electromagnetism
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| Symbol | Mapping |
|
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|--------|---------|
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| Ω | Electromagnetic wave amplitude |
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| Ψ | Maxwell's equations |
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| B | Magnetic field strength |
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| C | Electric permittivity and permeability |
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| Δ | Radiation resistance |
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---
|
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## Eq 52. EM Stress-Energy Tensor
|
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**Domain:** Electromagnetism
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| Symbol | Mapping |
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|--------|---------|
|
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| Ω | Stress-Energy Tensor |
|
||
| Ψ | Electromagnetic Theory |
|
||
| B | Field Strength Tensor F |
|
||
| C | Permittivity μ and Permeability α |
|
||
| Δ | Quantum Fluctuation Limit |
|
||
|
||
---
|
||
|
||
## Eq 53. Lienard-Wiechert Potentials
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electric potential |
|
||
| Ψ | Lienard-Wiechert theory |
|
||
| B | Electromagnetic field |
|
||
| C | Charge position and velocity |
|
||
| Δ | Radiation reaction term |
|
||
|
||
---
|
||
|
||
## Eq 54. Larmor Formula (Non-rel. Radiation)
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Power radiated by a non-relativistic charge |
|
||
| Ψ | Larmor's underlying theory of electromagnetic radiation |
|
||
| B | Magnetic field strength (conserved basis) |
|
||
| C | Charge velocity (dynamic context, variable parameter) |
|
||
| Δ | Residual error due to fundamental limits |
|
||
|
||
---
|
||
|
||
## Eq 55. Liénard Formula (Relativistic Radiation)
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Radiation power |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Electric field strength |
|
||
| C | Velocity and acceleration |
|
||
| Δ | Quantum fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 56. Abraham-Lorentz Force (Radiation Reaction)
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Radiation force |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Electric charge |
|
||
| C | Velocity and acceleration |
|
||
| Δ | Quantum fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 57. Coulomb Gauge
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electric field strength |
|
||
| Ψ | Maxwell's equations |
|
||
| B | Magnetic vector potential |
|
||
| C | Charge distribution and current density |
|
||
| Δ | Electromagnetic wave residual |
|
||
|
||
---
|
||
|
||
## Eq 58. Lorenz Gauge
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electromagnetic field strength |
|
||
| Ψ | Maxwell's equations |
|
||
| B | Electric and magnetic fields |
|
||
| C | Charge density and current |
|
||
| Δ | Radiation and scattering effects |
|
||
|
||
---
|
||
|
||
## Eq 59. RC Circuit Charging
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Capacitor charge |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Electric field strength |
|
||
| C | Capacitance and time constant |
|
||
| Δ | Residual voltage error |
|
||
|
||
---
|
||
|
||
## Eq 60. RL Circuit Time Constant
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current I(t) |
|
||
| Ψ | RL Circuit Theory |
|
||
| B | Inductance L |
|
||
| C | Resistance R |
|
||
| Δ | Residual Voltage Noise |
|
||
|
||
---
|
||
|
||
## Eq 61. LC Oscillation
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Angular frequency |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Inductance (L) |
|
||
| C | Capacitance (C) |
|
||
| Δ | Residual charge |
|
||
|
||
---
|
||
|
||
## Eq 62. RLC Damped Oscillation
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Displacement of charge |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Inductive basis |
|
||
| C | Capacitive context |
|
||
| Δ | Damping coefficient |
|
||
|
||
---
|
||
|
||
## Eq 63. Skin Effect
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Penetration depth |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Magnetic field strength |
|
||
| C | Conductivity and frequency |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 64. Dielectric Polarization (Linear)
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dielectric Polarization |
|
||
| Ψ | Electromagnetic Theory |
|
||
| B | Electric Field (E) |
|
||
| C | Relative Permittivity (ε_r) |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 65. Magnetic Susceptibility
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic Susceptibility |
|
||
| Ψ | Electromagnetic Theory |
|
||
| B | Magnetic Field Strength |
|
||
| C | Permeability and Permittivity |
|
||
| Δ | Residual Magnetic Moment |
|
||
|
||
---
|
||
|
||
## Eq 66. Zeroth Law of Thermodynamics
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Temperature |
|
||
| Ψ | Thermal equilibrium principle |
|
||
| B | Conserved energy |
|
||
| C | Variable heat capacity |
|
||
| Δ | Residual thermal fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 67. First Law of Thermodynamics
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Internal Energy Change |
|
||
| Ψ | Thermodynamic Process |
|
||
| B | Heat and Work |
|
||
| C | Temperature and Pressure |
|
||
| Δ | Entropy |
|
||
|
||
---
|
||
|
||
## Eq 68. Second Law of Thermodynamics
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Total entropy |
|
||
| Ψ | Thermodynamic process |
|
||
| B | Energy basis |
|
||
| C | Temperature and volume parameters |
|
||
| Δ | Irreversibility limit |
|
||
|
||
---
|
||
|
||
## Eq 69. Third Law of Thermodynamics
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Entropy |
|
||
| Ψ | Thermodynamic theory |
|
||
| B | Energy basis |
|
||
| C | Temperature parameter |
|
||
| Δ | Zero-point energy limit |
|
||
|
||
---
|
||
|
||
## Eq 70. Ideal Gas Law
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure |
|
||
| Ψ | Thermodynamic Theory |
|
||
| B | Mole of Gas |
|
||
| C | Temperature |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 71. Van der Waals Equation of State
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure |
|
||
| Ψ | Thermodynamic theory |
|
||
| B | Molecular volume |
|
||
| C | Temperature and volume |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 72. Kinetic Theory: Pressure
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure |
|
||
| Ψ | Kinetic Theory |
|
||
| B | Momentum |
|
||
| C | Velocity distribution |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 73. Equipartition Theorem
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy |
|
||
| Ψ | Thermal theory |
|
||
| B | Degrees of freedom |
|
||
| C | Temperature and volume |
|
||
| Δ | Residual heat |
|
||
|
||
---
|
||
|
||
## Eq 74. Maxwell-Boltzmann Speed Distribution
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Speed distribution of particles |
|
||
| Ψ | Maxwell-Boltzmann theory |
|
||
| B | Kinetic energy |
|
||
| C | Temperature (T) |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 75. Carnot Efficiency
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Maximum efficiency |
|
||
| Ψ | Thermodynamic theory |
|
||
| B | Temperature ratio |
|
||
| C | Heat reservoir temperature |
|
||
| Δ | Residual heat loss |
|
||
|
||
---
|
||
|
||
## Eq 76. Clausius-Clapeyron Relation
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure change |
|
||
| Ψ | Thermodynamic theory |
|
||
| B | Volume of phase |
|
||
| C | Temperature and latent heat |
|
||
| Δ | Specific volume difference |
|
||
|
||
---
|
||
|
||
## Eq 77. Gibbs Phase Rule
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Number of degrees of freedom |
|
||
| Ψ | Thermodynamic theory or model |
|
||
| B | Conserved thermodynamic properties |
|
||
| C | Variable parameters like temperature and pressure |
|
||
| Δ | Residual error in phase equilibrium |
|
||
|
||
---
|
||
|
||
## Eq 78. Helmholtz Free Energy
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Helmholtz Free Energy |
|
||
| Ψ | Thermodynamic System |
|
||
| B | Internal Energy (U) |
|
||
| C | Entropy (S) |
|
||
| Δ | Enthalpy Change |
|
||
|
||
---
|
||
|
||
## Eq 79. Gibbs Free Energy
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gibbs Free Energy |
|
||
| Ψ | Thermodynamic Theory |
|
||
| B | Entropy (S) |
|
||
| C | Temperature (T) and Pressure (P) |
|
||
| Δ | Residual Entropy |
|
||
|
||
---
|
||
|
||
## Eq 80. Enthalpy
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Enthalpy |
|
||
| Ψ | Thermodynamic theory |
|
||
| B | Internal energy |
|
||
| C | Pressure and volume |
|
||
| Δ | Heat added at constant pressure |
|
||
|
||
---
|
||
|
||
## Eq 81. Maxwell Relations (Thermodynamics)
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Thermodynamic properties |
|
||
| Ψ | Thermal equilibrium theory |
|
||
| B | Energy and entropy |
|
||
| C | Temperature, volume, pressure, and entropy |
|
||
| Δ | Irreversibility and uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 82. TdS Equations
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Temperature change |
|
||
| Ψ | Thermodynamic theory |
|
||
| B | Internal energy |
|
||
| C | Volume and pressure |
|
||
| Δ | Entropy residual |
|
||
|
||
---
|
||
|
||
## Eq 83. Specific Heat Relations (C_p−C_V)
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Specific Heat Capacity Difference |
|
||
| Ψ | Thermodynamic Theory |
|
||
| B | Conserved Volume Basis |
|
||
| C | Dynamic Pressure and Temperature Context |
|
||
| Δ | Residual Thermal Fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 84. Joule-Thomson Coefficient
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Joule-Thomson Coefficient |
|
||
| Ψ | Thermodynamic mechanism |
|
||
| B | Enthalpy (H) |
|
||
| C | Specific heat capacity (C_p) and volume (V) |
|
||
| Δ | Residual error in temperature prediction |
|
||
|
||
---
|
||
|
||
## Eq 85. Entropy of Mixing
|
||
**Domain:** Thermodynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Entropy of Mixing |
|
||
| Ψ | Thermodynamic Theory |
|
||
| B | Mole Fractions (x1, x2) |
|
||
| C | Number of Molecules (N1, N2) |
|
||
| Δ | Residual Entropy Error |
|
||
|
||
---
|
||
|
||
## Eq 87. Wien's Displacement Law
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Wavelength of maximum emission |
|
||
| Ψ | Quantum mechanical theory |
|
||
| B | Conserved energy basis |
|
||
| C | Temperature and frequency parameter |
|
||
| Δ | Residual thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 88. Stefan-Boltzmann Law
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Radiant energy flux |
|
||
| Ψ | Quantum field theory |
|
||
| B | Photon basis |
|
||
| C | Temperature parameter |
|
||
| Δ | Thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 89. Photoelectric Effect Equation (Einstein)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Maximum kinetic energy of electron |
|
||
| Ψ | Quantum theory or mechanism |
|
||
| B | Photon energy (Planck's constant) |
|
||
| C | Frequency of incident photon |
|
||
| Δ | Work function of material |
|
||
|
||
---
|
||
|
||
## Eq 90. Einstein A and B Coefficients
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Einstein A and B Coefficients |
|
||
| Ψ | Quantum Mechanical Theory |
|
||
| B | Conserved Basis of Energy States |
|
||
| C | Dynamic Context of Frequency and Temperature |
|
||
| Δ | Residual Error in Calculation |
|
||
|
||
---
|
||
|
||
## Eq 91. Compton Scattering Formula
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Compton Scattering Shift |
|
||
| Ψ | Quantum Mechanics Theory |
|
||
| B | Photon Energy Basis |
|
||
| C | Scattering Angle Parameter |
|
||
| Δ | Residual Wavelength Error |
|
||
|
||
---
|
||
|
||
## Eq 92. de Broglie Wavelength
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | de Broglie Wavelength |
|
||
| Ψ | Quantum Theory Mechanism |
|
||
| B | Momentum Basis |
|
||
| C | Relativistic Mass Context |
|
||
| Δ | Quantum Limitation |
|
||
|
||
---
|
||
|
||
## Eq 93. Schrödinger Equation (Time-Dependent)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity or observable output |
|
||
| Ψ | Operator, mechanism, or underlying theory in quantum mechanics |
|
||
| B | Conserved basis or fundamental component of the system |
|
||
| C | Dynamic context or variable parameter influencing the system |
|
||
| Δ | Residual error, noise, or fundamental limit of measurement |
|
||
|
||
---
|
||
|
||
## Eq 94. Time-Independent Schrödinger Equation
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy level |
|
||
| Ψ | Wave function |
|
||
| B | Hamiltonian operator |
|
||
| C | Potential energy |
|
||
| Δ | Uncertainty principle |
|
||
|
||
---
|
||
|
||
## Eq 95. Born Rule (Probability Interpretation)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Probability of measurement outcome |
|
||
| Ψ | Wave function or state vector |
|
||
| B | Conserved basis or eigenstates |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or uncertainty principle |
|
||
|
||
---
|
||
|
||
## Eq 96. Probability Current (QM)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Probability Current |
|
||
| Ψ | Wave Function |
|
||
| B | Conserved Probability Density |
|
||
| C | Position and Momentum |
|
||
| Δ | Residual Uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 97. Canonical Commutation Relations
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 98. Heisenberg Uncertainty Principle
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Uncertainty |
|
||
| Ψ | Wave function |
|
||
| B | Position/momentum basis |
|
||
| C | Energy/time parameter |
|
||
| Δ | Error limit |
|
||
|
||
---
|
||
|
||
## Eq 99. Harmonic Oscillator Energy Levels (QM)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy Levels |
|
||
| Ψ | Quantum Mechanics Theory |
|
||
| B | Conserved Angular Momentum Basis |
|
||
| C | Dynamic Quantum Number Context |
|
||
| Δ | Zero-Point Energy Residual |
|
||
|
||
---
|
||
|
||
## Eq 100. Hydrogen Atom Energy Levels
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hydrogen Atom Energy Levels |
|
||
| Ψ | Quantum Mechanics Theory |
|
||
| B | Conserved Basis of Electron Mass |
|
||
| C | Dynamic Context of Nuclear Charge |
|
||
| Δ | Residual Error in Energy Calculation |
|
||
|
||
---
|
||
|
||
## Eq 101. Angular Momentum Quantization
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Angular Momentum |
|
||
| Ψ | Quantum Theory |
|
||
| B | Conserved Angular Momentum Basis |
|
||
| C | Dynamic Spin Context / Quantum Number |
|
||
| Δ | Residual Uncertainty Limit |
|
||
|
||
---
|
||
|
||
## Eq 103. Spin-Orbit Coupling
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Spin-Orbit Coupling Energy |
|
||
| Ψ | Quantum Mechanical Hamiltonian |
|
||
| B | Angular Momentum Basis |
|
||
| C | Magnetic Field Parameter |
|
||
| Δ | Relativistic Correction Error |
|
||
|
||
---
|
||
|
||
## Eq 104. Dirac Equation
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted particle behavior |
|
||
| Ψ | Wave function of the system |
|
||
| B | Conserved basis (energy, momentum, etc.) |
|
||
| C | Dynamic context (spin, charge, etc.) |
|
||
| Δ | Residual error or uncertainty principle limit |
|
||
|
||
---
|
||
|
||
## Eq 105. Klein-Gordon Equation
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted particle energy |
|
||
| Ψ | Quantum field operator |
|
||
| B | Conserved momentum basis |
|
||
| C | Variable mass parameter |
|
||
| Δ | Residual mass-energy error |
|
||
|
||
---
|
||
|
||
## Eq 106. Fine Structure Formula (Hydrogen)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy difference ΔE |
|
||
| Ψ | Quantum mechanics theory |
|
||
| B | Conserved angular momentum basis |
|
||
| C | Principal quantum number and fine structure constant α |
|
||
| Δ | Residual energy error |
|
||
|
||
---
|
||
|
||
## Eq 107. Lamb Shift
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Lamb Shift energy difference |
|
||
| Ψ | Quantum Electrodynamics (QED) |
|
||
| B | Photon field basis |
|
||
| C | Atomic nucleus and electron configuration |
|
||
| Δ | Vacuum polarization residual error |
|
||
|
||
---
|
||
|
||
## Eq 108. Anomalous Magnetic Moment (Electron)
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Anomalous Magnetic Moment of Electron |
|
||
| Ψ | Quantum Electrodynamics and Electroweak Theory |
|
||
| B | Conserved Basis of Quantum Numbers |
|
||
| C | Dynamic Context of Fine Structure Constant |
|
||
| Δ | Residual Error due to Hadronic Contributions |
|
||
|
||
---
|
||
|
||
## Eq 110. Spin-Statistics Theorem
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 111. Fermi's Golden Rule
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Transition probability |
|
||
| Ψ | Hamiltonian operator |
|
||
| B | Energy eigenstates |
|
||
| C | Density of states |
|
||
| Δ | Residual broadening |
|
||
|
||
---
|
||
|
||
## Eq 113. WKB Approximation
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted wave function |
|
||
| Ψ | Quantum mechanical operator |
|
||
| B | Conserved momentum basis |
|
||
| C | Energy parameter or variable |
|
||
| Δ | Residual action uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 114. Born Approximation (Scattering)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Scattering cross-section |
|
||
| Ψ | Wave function or quantum state |
|
||
| B | Momentum basis or plane wave |
|
||
| C | Potential energy V(r) |
|
||
| Δ | Uncertainty principle limit |
|
||
|
||
---
|
||
|
||
## Eq 115. Partial Wave Expansion (Scattering)
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Scattering amplitude |
|
||
| Ψ | Quantum wave function |
|
||
| B | Orbital angular momentum |
|
||
| C | Impact parameter and scattering angle |
|
||
| Δ | Phase shift uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 116. Optical Theorem
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Scattering cross-section |
|
||
| Ψ | Wave function or operator |
|
||
| B | Conserved basis (e.g. energy, momentum) |
|
||
| C | Dynamic context (e.g. frequency, angle) |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 117. Feynman Path Integral
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted probability amplitude |
|
||
| Ψ | Quantum operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise limit |
|
||
|
||
---
|
||
|
||
## Eq 118. Von Neumann Equation
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output/predicted quantity |
|
||
| Ψ | Operator/mechanism/underlying theory |
|
||
| B | Conserved basis/fundamental component |
|
||
| C | Dynamic context/variable parameter |
|
||
| Δ | Residual error/noise/fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 119. Ehrenfest Theorem
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output / predicted quantity |
|
||
| Ψ | Operator, mechanism, or underlying theory |
|
||
| B | Conserved basis / fundamental component |
|
||
| C | Dynamic context / variable parameter |
|
||
| Δ | Residual error / noise / fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 120. Bell's Inequality
|
||
**Domain:** Quantum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 121. Lorentz Transformations (Boost)
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted position or time |
|
||
| Ψ | Lorentz transformation operator |
|
||
| B | Conserved basis (space and time) |
|
||
| C | Relative velocity (v) and speed of light (c) |
|
||
| Δ | Residual error due to finite speed |
|
||
|
||
---
|
||
|
||
## Eq 122. Minkowski Spacetime Interval
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Minkowski Spacetime Interval |
|
||
| Ψ | Relativity Theory |
|
||
| B | Conserved Basis of Space and Time |
|
||
| C | Dynamic Context of Velocity and Acceleration |
|
||
| Δ | Residual Error in Measurement |
|
||
|
||
---
|
||
|
||
## Eq 123. Time Dilation
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Time Dilation Factor |
|
||
| Ψ | Theory of Special Relativity |
|
||
| B | Proper Time (t) |
|
||
| C | Relative Velocity (v) |
|
||
| Δ | Residual Time Error |
|
||
|
||
---
|
||
|
||
## Eq 124. Length Contraction
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Length Contraction |
|
||
| Ψ | Theory of Special Relativity |
|
||
| B | Proper Length (L) |
|
||
| C | Relative Velocity (v) |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 125. Relativistic Energy-Momentum Relation
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy E |
|
||
| Ψ | Theory of Special Relativity |
|
||
| B | Momentum p and Mass m |
|
||
| C | Velocity v and Lorentz factor γ |
|
||
| Δ | Residual energy due to quantum fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 126. Mass-Energy Equivalence
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy |
|
||
| Ψ | Theory of Relativity |
|
||
| B | Mass |
|
||
| C | Velocity (c) |
|
||
| Δ | Residual mass |
|
||
|
||
---
|
||
|
||
## Eq 127. Relativistic Doppler Effect
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observed frequency |
|
||
| Ψ | Relativistic Doppler effect theory |
|
||
| B | Velocity of light (c) |
|
||
| C | Relative velocity between observer and source |
|
||
| Δ | Residual error in observed frequency |
|
||
|
||
---
|
||
|
||
## Eq 128. Relativistic Velocity Addition
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Relativistic velocity |
|
||
| Ψ | Theory of special relativity |
|
||
| B | Conserved basis (velocity) |
|
||
| C | Dynamic context (relative velocity) |
|
||
| Δ | Residual error (time dilation) |
|
||
|
||
---
|
||
|
||
## Eq 129. Einstein Field Equations (GR)
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gravitational field tensor G_μν |
|
||
| Ψ | General Relativity theory |
|
||
| B | Conserved energy-momentum basis |
|
||
| C | Variable spacetime metric parameter α |
|
||
| Δ | Residual curvature error or noise |
|
||
|
||
---
|
||
|
||
## Eq 130. Einstein-Hilbert Action
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gravitational action |
|
||
| Ψ | Riemannian metric tensor |
|
||
| B | Conserved energy-momentum basis |
|
||
| C | Variable curvature parameter |
|
||
| Δ | Cosmological constant residual |
|
||
|
||
---
|
||
|
||
## Eq 131. Schwarzschild Metric
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Schwarzschild Metric |
|
||
| Ψ | General Relativity Theory |
|
||
| B | Conserved Mass Basis |
|
||
| C | Variable Radius Parameter |
|
||
| Δ | Gravitational Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 133. FLRW Metric
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Curvature of spacetime |
|
||
| Ψ | General Relativity theory |
|
||
| B | Conserved basis vectors |
|
||
| C | Variable scale factor 'a(t)' |
|
||
| Δ | Residual curvature error |
|
||
|
||
---
|
||
|
||
## Eq 134. Geodesic Equation
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Geodesic deviation |
|
||
| Ψ | Curvature of spacetime |
|
||
| B | Christoffel symbols |
|
||
| C | Coordinate basis |
|
||
| Δ | Intrinsic curvature |
|
||
|
||
---
|
||
|
||
## Eq 135. Gravitational Wave (TT Gauge)
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gravitational Wave Amplitude |
|
||
| Ψ | General Relativity Theory |
|
||
| B | Conserved Basis of Metric Tensor |
|
||
| C | Dynamic Context of Mass and Energy |
|
||
| Δ | Residual Error due to Quantum Fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 136. Bekenstein-Hawking Black Hole Entropy
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Black Hole Entropy |
|
||
| Ψ | General Relativity Theory |
|
||
| B | Conserved Energy Basis |
|
||
| C | Gravitational Context Parameter |
|
||
| Δ | Quantum Fluctuation Limit |
|
||
|
||
---
|
||
|
||
## Eq 137. Hawking Temperature
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hawking Temperature |
|
||
| Ψ | General Relativity Theory |
|
||
| B | Gravitational Constant (G) |
|
||
| C | Mass of Black Hole (M) |
|
||
| Δ | Quantum Fluctuation Limit |
|
||
|
||
---
|
||
|
||
## Eq 138. Black Hole Area Theorem (Hawking 1971)
|
||
**Domain:** Relativity
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Black Hole Area |
|
||
| Ψ | General Relativity Theory |
|
||
| B | Conserved Angular Momentum |
|
||
| C | Dynamic Mass and Spin Parameters |
|
||
| Δ | Residual Entropy Limit |
|
||
|
||
---
|
||
|
||
## Eq 139. Standard Model Lagrangian (Full)
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity or observable output |
|
||
| Ψ | Operator, mechanism, or underlying theory in QFT |
|
||
| B | Conserved basis or fundamental component of the Standard Model |
|
||
| C | Dynamic context or variable parameter in the Lagrangian |
|
||
| Δ | Residual error, noise, or fundamental limit in the model |
|
||
|
||
---
|
||
|
||
## Eq 145. DGLAP Evolution Equations
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity or observable output |
|
||
| Ψ | Operator, mechanism, or underlying theory in QFT |
|
||
| B | Conserved basis or fundamental component of the system |
|
||
| C | Dynamic context or variable parameter with uncertainty |
|
||
| Δ | Residual error, noise, or fundamental limit of measurement |
|
||
|
||
---
|
||
|
||
## Eq 146. CKM Matrix (Quark Mixing)
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | CKM Matrix elements |
|
||
| Ψ | Quark Mixing mechanism |
|
||
| B | Conserved quark flavors |
|
||
| C | Mixing angles and CP phase |
|
||
| Δ | Experimental uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 151. Faddeev-Popov Gauge Fixing + Ghosts
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gluon degrees of freedom |
|
||
| Ψ | Quantum field theory mechanism |
|
||
| B | Conserved gluon basis |
|
||
| C | Variable gauge parameter |
|
||
| Δ | Residual unphysical effects |
|
||
|
||
---
|
||
|
||
## Eq 152. BRST Symmetry
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Residual global symmetry after gauge fixing |
|
||
| Ψ | Operator or underlying theory in Quantum Field Theory |
|
||
| B | Conserved basis or fundamental component of the system |
|
||
| C | Dynamic context or variable parameter influencing the system |
|
||
| Δ | Residual error, noise, or fundamental limit of predictability |
|
||
|
||
---
|
||
|
||
## Eq 153. Running Coupling (RGE, General)
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Running Coupling |
|
||
| Ψ | Quantum Field Theory Operator |
|
||
| B | Conserved Basis of Fundamental Components |
|
||
| C | Dynamic Context with Variable Parameters |
|
||
| Δ | Residual Error or Noise Limit |
|
||
|
||
---
|
||
|
||
## Eq 154. Fermi's Theory (4-Fermion, Low-Energy EW)
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output/predicted quantity |
|
||
| Ψ | Operator/mechanism/underlying theory |
|
||
| B | Conserved basis/fundamental component |
|
||
| C | Dynamic context/variable parameter |
|
||
| Δ | Residual error/noise/fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 155. Pati-Salam Model (SU(4)×SU(2)×SU(2))
|
||
**Domain:** Quantum Field Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted particle properties |
|
||
| Ψ | Pati-Salam operator mechanism |
|
||
| B | SU(4) × SU(2) × SU(2) basis |
|
||
| C | Lepton as 4th color variable parameter |
|
||
| Δ | Residual error in unification |
|
||
|
||
---
|
||
|
||
## Eq 160. Second Friedmann Equation
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Density parameter |
|
||
| Ψ | General Relativity theory |
|
||
| B | Conserved energy density |
|
||
| C | Pressure and cosmological constant |
|
||
| Δ | Residual curvature error |
|
||
|
||
---
|
||
|
||
## Eq 161. Cosmological Fluid Equation
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Density of the cosmological fluid |
|
||
| Ψ | General Relativity theory |
|
||
| B | Conserved energy density |
|
||
| C | Hubble parameter and pressure |
|
||
| Δ | Residual error in density measurement |
|
||
|
||
---
|
||
|
||
## Eq 162. Redshift Relation
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Redshift ratio |
|
||
| Ψ | Cosmological expansion theory |
|
||
| B | Wavelength of emitted light |
|
||
| C | Expansion factor and redshift parameter |
|
||
| Δ | Residual error in wavelength measurement |
|
||
|
||
---
|
||
|
||
## Eq 163. Hubble-Lemaître Law
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Redshift velocity |
|
||
| Ψ | Expansion rate of the universe |
|
||
| B | Hubble constant |
|
||
| C | Distance to galaxy |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 164. CMB Blackbody Spectrum
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Cosmic Microwave Background radiation intensity |
|
||
| Ψ | Thermal equilibrium of the universe |
|
||
| B | Photon energy density in the early universe |
|
||
| C | Temperature and chemical composition of the universe |
|
||
| Δ | Residual thermal noise and measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 165. BBN Primordial Element Abundances
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Primordial element abundances |
|
||
| Ψ | Big Bang nucleosynthesis theory |
|
||
| B | Conserved basis of fundamental elements |
|
||
| C | Variable parameters: temperature, density, time |
|
||
| Δ | Residual errors in measurement and calculation |
|
||
|
||
---
|
||
|
||
## Eq 166. Sound Horizon at Recombination
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Sound Horizon at Recombination |
|
||
| Ψ | Operator for Cosmological Sound Horizon |
|
||
| B | Conserved Basis of Baryon Acoustic Oscillations |
|
||
| C | Dynamic Context of Expansion History and Parameters |
|
||
| Δ | Residual Error in Predicted Sound Horizon |
|
||
|
||
---
|
||
|
||
## Eq 168. Dark Energy Equation of State
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dark Energy Density |
|
||
| Ψ | Cosmological Mechanism |
|
||
| B | Conserved Matter Basis |
|
||
| C | Variable Expansion Parameter |
|
||
| Δ | Residual Uncertainty Error |
|
||
|
||
---
|
||
|
||
## Eq 171. Cosmic Distance Ladder Relations
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Cosmic Distance Ladder Relations output |
|
||
| Ψ | Operator for cosmological distance calculations |
|
||
| B | Conserved basis of fundamental components in space |
|
||
| C | Dynamic context of variable parameters in cosmology |
|
||
| Δ | Residual error or noise in distance measurements |
|
||
|
||
---
|
||
|
||
## Eq 172. Inflation (Slow-Roll)
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Inflationary scalar spectral index |
|
||
| Ψ | Slow-Roll inflation theory mechanism |
|
||
| B | Conserved basis of fundamental energy density |
|
||
| C | Dynamic context of variable inflaton field parameter |
|
||
| Δ | Residual error in predicted quantity due to noise |
|
||
|
||
---
|
||
|
||
## Eq 173. Hubble Tension
|
||
**Domain:** Cosmology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hubble constant discrepancy |
|
||
| Ψ | Cosmological model or theory |
|
||
| B | Conserved basis of space-time |
|
||
| C | Variable cosmological parameters (e.g. dark matter) |
|
||
| Δ | Residual error in Hubble constant measurement |
|
||
|
||
---
|
||
|
||
## Eq 176. Navier-Stokes Equation (Incompressible)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fluid velocity |
|
||
| Ψ | Navier-Stokes operator |
|
||
| B | Mass conservation |
|
||
| C | Density and viscosity parameters |
|
||
| Δ | Viscous dissipation error |
|
||
|
||
---
|
||
|
||
## Eq 177. Continuity Equation (Fluid)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fluid density |
|
||
| Ψ | Continuity operator |
|
||
| B | Mass basis |
|
||
| C | Velocity field parameter |
|
||
| Δ | Viscosity residual |
|
||
|
||
---
|
||
|
||
## Eq 178. Euler Equation (Inviscid)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fluid velocity |
|
||
| Ψ | Navier-Stokes operator |
|
||
| B | Conserved momentum |
|
||
| C | Density and gravity parameters |
|
||
| Δ | Viscosity limit |
|
||
|
||
---
|
||
|
||
## Eq 179. Bernoulli's Equation
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure |
|
||
| Ψ | Fluid Dynamics Theory |
|
||
| B | Density |
|
||
| C | Velocity and Height |
|
||
| Δ | Viscosity |
|
||
|
||
---
|
||
|
||
## Eq 180. Stokes Law (Drag on Sphere)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Drag force on a sphere |
|
||
| Ψ | Fluid dynamics theory |
|
||
| B | Viscosity of the fluid |
|
||
| C | Sphere's radius and velocity |
|
||
| Δ | Reynolds number (low) |
|
||
|
||
---
|
||
|
||
## Eq 181. Poiseuille Flow (Hagen-Poiseuille)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Flow rate |
|
||
| Ψ | Fluid dynamics theory |
|
||
| B | Pressure gradient |
|
||
| C | Viscosity and radius |
|
||
| Δ | Frictional losses |
|
||
|
||
---
|
||
|
||
## Eq 182. Reynolds Number
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Reynolds Number |
|
||
| Ψ | Fluid Dynamics Theory |
|
||
| B | Density and Viscosity |
|
||
| C | Velocity and Pipe Length |
|
||
| Δ | Turbulence Threshold |
|
||
|
||
---
|
||
|
||
## Eq 183. Kolmogorov Energy Spectrum
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy spectrum |
|
||
| Ψ | Kolmogorov theory |
|
||
| B | Conserved basis (velocity) |
|
||
| C | Dynamic context (viscosity, α) |
|
||
| Δ | Residual error (turbulence) |
|
||
|
||
---
|
||
|
||
## Eq 184. Froude Number
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Froude Number |
|
||
| Ψ | Fluid Dynamics Theory |
|
||
| B | Conserved Momentum Basis |
|
||
| C | Velocity and Gravity Parameters |
|
||
| Δ | Wave/Gravity Scaling Error |
|
||
|
||
---
|
||
|
||
## Eq 185. Mach Number
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mach Number |
|
||
| Ψ | Fluid Dynamics Theory |
|
||
| B | Conserved Basis (Velocity) |
|
||
| C | Dynamic Context (Speed of Sound) |
|
||
| Δ | Residual Error (Compressibility) |
|
||
|
||
---
|
||
|
||
## Eq 186. Kutta-Joukowski Theorem (Lift)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Lift per unit span |
|
||
| Ψ | Fluid dynamics theory |
|
||
| B | Density of fluid |
|
||
| C | Velocity and angle of attack |
|
||
| Δ | Residual turbulence or viscosity |
|
||
|
||
---
|
||
|
||
## Eq 187. Torricelli's Law (Efflux Speed)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | v |
|
||
| Ψ | Torricelli's Law |
|
||
| B | gh |
|
||
| C | n, α |
|
||
| Δ | residual error |
|
||
|
||
---
|
||
|
||
## Eq 189. Surface Tension (Young-Laplace)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure difference |
|
||
| Ψ | Surface tension theory |
|
||
| B | Interfacial energy density |
|
||
| C | Curvature of surface |
|
||
| Δ | Residual pressure error |
|
||
|
||
---
|
||
|
||
## Eq 190. Kelvin-Helmholtz Instability Condition
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Kelvin-Helmholtz Instability Condition |
|
||
| Ψ | Fluid Dynamics Theory |
|
||
| B | Density Ratio (ρ₁/ρ₂) |
|
||
| C | Velocity Difference (v₁-v₂) and Gravity (g) |
|
||
| Δ | Residual Error / Noise |
|
||
|
||
---
|
||
|
||
## Eq 191. Snell's Law of Refraction
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | n₂ sinθ₂ |
|
||
| Ψ | Snell's Law of Refraction |
|
||
| B | Light speed in medium n₁ and n₂ |
|
||
| C | Angle of incidence θ₁ and refraction θ₂ |
|
||
| Δ | Residual error in angle measurement |
|
||
|
||
---
|
||
|
||
## Eq 192. Thin Lens Equation
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | focal length |
|
||
| Ψ | thin lens theory |
|
||
| B | light rays |
|
||
| C | object and image distances |
|
||
| Δ | residual aberrations |
|
||
|
||
---
|
||
|
||
## Eq 193. Lens Maker's Formula
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | 1/f |
|
||
| Ψ | Optics theory |
|
||
| B | Refraction index (n) |
|
||
| C | Curvatures (R₁, R₂) |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 194. Magnification (Geometric Optics)
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnification |
|
||
| Ψ | Geometric Optics Theory |
|
||
| B | Conserved Basis (Wavelength) |
|
||
| C | Dynamic Context (Object Distance, Angle) |
|
||
| Δ | Residual Error (Aberration) |
|
||
|
||
---
|
||
|
||
## Eq 196. Young's Double-Slit Interference
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fringe spacing |
|
||
| Ψ | Wave function of light |
|
||
| B | Light wavelength |
|
||
| C | Distance between slits |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 199. Bragg's Law (X-ray Diffraction)
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | nλ |
|
||
| Ψ | Optics theory |
|
||
| B | Wavelength λ |
|
||
| C | Angle θ |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 201. Brewster's Angle
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Brewster's Angle |
|
||
| Ψ | Optical Theory |
|
||
| B | Polarization State |
|
||
| C | Refraction Index Ratio |
|
||
| Δ | Zero Reflected P-Pol |
|
||
|
||
---
|
||
|
||
## Eq 202. Malus's Law
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Intensity |
|
||
| Ψ | Light theory |
|
||
| B | Polarization basis |
|
||
| C | Angle of incidence |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 203. Rayleigh Criterion (Resolution Limit)
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | θ_min |
|
||
| Ψ | Optics theory |
|
||
| B | Wavelength λ |
|
||
| C | Aperture diameter D |
|
||
| Δ | Resolution limit |
|
||
|
||
---
|
||
|
||
## Eq 204. Abbe Sine Condition
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Abbe Sine Condition |
|
||
| Ψ | Optical theory or mechanism |
|
||
| B | Conserved basis of refraction |
|
||
| C | Variable refractive index (n) |
|
||
| Δ | Residual spherical aberration error |
|
||
|
||
---
|
||
|
||
## Eq 205. Numerical Aperture
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Numerical Aperture |
|
||
| Ψ | Optics Theory or Mechanism |
|
||
| B | Conserved Basis in Optics |
|
||
| C | Dynamic Context of Refraction Angle |
|
||
| Δ | Residual Error or Noise Limit |
|
||
|
||
---
|
||
|
||
## Eq 206. Fermat's Principle of Least Time
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Optical path length |
|
||
| Ψ | Light propagation theory |
|
||
| B | Refraction index n |
|
||
| C | Angle of incidence α |
|
||
| Δ | Residual time deviation |
|
||
|
||
---
|
||
|
||
## Eq 207. Huygens-Fresnel Principle
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Wavefront |
|
||
| Ψ | Huygens-Fresnel Principle |
|
||
| B | Spherical wavelets |
|
||
| C | Variable parameters (n, α) |
|
||
| Δ | Residual diffraction patterns |
|
||
|
||
---
|
||
|
||
## Eq 208. Fabry-Pérot Etalon Transmission
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Transmission |
|
||
| Ψ | Optical mechanism |
|
||
| B | Wavelength basis |
|
||
| C | Finesse parameter |
|
||
| Δ | Phase error |
|
||
|
||
---
|
||
|
||
## Eq 209. Critical Angle (Total Internal Reflection)
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical Angle |
|
||
| Ψ | Optics Theory |
|
||
| B | Refraction Index |
|
||
| C | Angle of Incidence |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 210. Fraunhofer vs Fresnel Diffraction Condition
|
||
**Domain:** Optics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Diffraction condition |
|
||
| Ψ | Optical theory |
|
||
| B | Wavelength and distance |
|
||
| C | Fresnel number parameter |
|
||
| Δ | Residual diffraction error |
|
||
|
||
---
|
||
|
||
## Eq 211. Speed of Sound
|
||
**Domain:** Acoustics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Speed of Sound |
|
||
| Ψ | Acoustic Theory |
|
||
| B | Pressure and Density |
|
||
| C | Temperature and Gas Properties |
|
||
| Δ | Thermal Noise |
|
||
|
||
---
|
||
|
||
## Eq 212. Doppler Effect (Sound)
|
||
**Domain:** Acoustics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Frequency of emitted sound |
|
||
| Ψ | Theory of wave propagation |
|
||
| B | Speed of sound in a medium |
|
||
| C | Velocity of the source and observer |
|
||
| Δ | Error due to Doppler shift |
|
||
|
||
---
|
||
|
||
## Eq 213. Standing Waves (String/Column)
|
||
**Domain:** Acoustics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Wavelength of standing wave |
|
||
| Ψ | Wave equation or vibration theory |
|
||
| B | String or column's fundamental frequency |
|
||
| C | Boundary conditions (fixed, free, open) |
|
||
| Δ | Residual error in wavelength measurement |
|
||
|
||
---
|
||
|
||
## Eq 214. Decibel Scale (SPL)
|
||
**Domain:** Acoustics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Sound pressure level |
|
||
| Ψ | Acoustic theory or model |
|
||
| B | Air density and temperature |
|
||
| C | Frequency and atmospheric conditions |
|
||
| Δ | Instrumental noise and measurement error |
|
||
|
||
---
|
||
|
||
## Eq 215. Shock Wave Rankine-Hugoniot Relations
|
||
**Domain:** Acoustics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shock wave speed |
|
||
| Ψ | Rankine-Hugoniot relations theory |
|
||
| B | Conserved quantities (mass, momentum, energy) |
|
||
| C | Variable parameters (density, pressure, velocity) |
|
||
| Δ | Residual shock wave error |
|
||
|
||
---
|
||
|
||
## Eq 219. Bloch's Theorem
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Wave function of the system |
|
||
| Ψ | Bloch wave function operator |
|
||
| B | Conserved basis (Bloch vector) |
|
||
| C | Crystal momentum and band index |
|
||
| Δ | Residual error due to periodic boundary conditions |
|
||
|
||
---
|
||
|
||
## Eq 220. Kronig-Penney Model (1D Band Structure)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | cos ka |
|
||
| Ψ | Kronig-Penney Model |
|
||
| B | Conserved basis / fundamental component |
|
||
| C | Dynamic context / variable parameter (n, α) |
|
||
| Δ | Residual error / noise / fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 221. Fermi-Dirac Distribution
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fermi-Dirac Distribution function |
|
||
| Ψ | Quantum statistical mechanics operator |
|
||
| B | Energy levels / quantum states |
|
||
| C | Temperature (T) and chemical potential (μ) |
|
||
| Δ | Residual thermal fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 222. Free Electron Density of States
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Free Electron Density of States |
|
||
| Ψ | Quantum Mechanics Theory |
|
||
| B | Electron Mass and Charge |
|
||
| C | Energy E, Planck Constant ℏ |
|
||
| Δ | None (exact solution) |
|
||
|
||
---
|
||
|
||
## Eq 223. Sommerfeld Model (Electron Heat Capacity)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electron heat capacity |
|
||
| Ψ | Sommerfeld model theory |
|
||
| B | Fermi energy basis |
|
||
| C | Temperature and electron number variable |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 224. BCS Theory (Superconductivity)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical temperature T_c |
|
||
| Ψ | BCS Theory mechanism |
|
||
| B | Cooper pairs basis |
|
||
| C | Dynamic pairing parameter α |
|
||
| Δ | Residual energy limit |
|
||
|
||
---
|
||
|
||
## Eq 225. BCS Gap Equation at T=0
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | BCS Gap Energy |
|
||
| Ψ | Superconducting Pairing Mechanism |
|
||
| B | Conserved Cooper Pairs |
|
||
| C | Critical Temperature (Tc) |
|
||
| Δ | Residual Energy Limit |
|
||
|
||
---
|
||
|
||
## Eq 226. London Equations (Perfect Diamagnetism)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic field strength |
|
||
| Ψ | London's theory of perfect diamagnetism |
|
||
| B | Applied magnetic field |
|
||
| C | Superconducting material properties |
|
||
| Δ | Residual magnetic field fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 227. Josephson Effects (DC + AC)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current |
|
||
| Ψ | Josephson Effect Theory |
|
||
| B | Phase Difference |
|
||
| C | Voltage (V) |
|
||
| Δ | Quantum Fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 228. Curie's Law (Paramagnetism)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic susceptibility |
|
||
| Ψ | Thermal energy theory |
|
||
| B | Magnetic moment |
|
||
| C | Temperature |
|
||
| Δ | Residual magnetization |
|
||
|
||
---
|
||
|
||
## Eq 229. Curie-Weiss Law (Ferromagnetism)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic susceptibility |
|
||
| Ψ | Thermal fluctuations |
|
||
| B | Spin angular momentum |
|
||
| C | Temperature above Curie point |
|
||
| Δ | Residual magnetic noise |
|
||
|
||
---
|
||
|
||
## Eq 230. Heisenberg Exchange Interaction
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Exchange energy |
|
||
| Ψ | Heisenberg model |
|
||
| B | Spin basis |
|
||
| C | Nearest neighbor distance |
|
||
| Δ | Quantum fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 231. Magnetic Hysteresis Loop
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic field strength |
|
||
| Ψ | Magnetization mechanism |
|
||
| B | Magnetic flux density |
|
||
| C | Angle of magnetization |
|
||
| Δ | Hysteresis loss |
|
||
|
||
---
|
||
|
||
## Eq 232. Einstein Relation (Diffusion)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Diffusion coefficient D |
|
||
| Ψ | Carrier mobility μ |
|
||
| B | Electric field e |
|
||
| C | Temperature T |
|
||
| Δ | Thermal noise k_B |
|
||
|
||
---
|
||
|
||
## Eq 233. Seebeck Effect (Thermoelectricity)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Seebeck coefficient |
|
||
| Ψ | Thermoelectric theory |
|
||
| B | Electron charge carrier |
|
||
| C | Temperature and chemical potential |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 234. Hall Effect
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hall Voltage |
|
||
| Ψ | Conduction Mechanism |
|
||
| B | Magnetic Field |
|
||
| C | Carrier Concentration |
|
||
| Δ | Residual Resistance |
|
||
|
||
---
|
||
|
||
## Eq 235. Quantum Hall Effect (Integer)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hall resistance |
|
||
| Ψ | Quantum Hall theory |
|
||
| B | Conserved magnetic field |
|
||
| C | Integer filling factor |
|
||
| Δ | Zero residual error |
|
||
|
||
---
|
||
|
||
## Eq 236. Wiedemann-Franz Law
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Thermal conductivity |
|
||
| Ψ | Electron transport theory |
|
||
| B | Energy basis (e.g. electron energy) |
|
||
| C | Temperature and material properties |
|
||
| Δ | Residual thermal resistance |
|
||
|
||
---
|
||
|
||
## Eq 237. Debye Model (Lattice Heat Capacity)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Heat capacity |
|
||
| Ψ | Debye model theory |
|
||
| B | Lattice vibrations |
|
||
| C | Temperature (T) |
|
||
| Δ | Quantum fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 238. Mott Insulator Transition
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mott insulating gap |
|
||
| Ψ | Hubbard model or related theory |
|
||
| B | Conduction electrons and localized electrons |
|
||
| C | Electron-electron interaction strength (U) |
|
||
| Δ | Residual disorder or impurity effects |
|
||
|
||
---
|
||
|
||
## Eq 239. Density Functional Theory (Kohn-Sham Equations)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy eigenvalue |
|
||
| Ψ | Hamiltonian operator |
|
||
| B | Wave function basis |
|
||
| C | Effective potential parameter |
|
||
| Δ | Residual error term |
|
||
|
||
---
|
||
|
||
## Eq 246. Neutrino Oscillation Probability
|
||
**Domain:** Nuclear Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Neutrino Oscillation Probability |
|
||
| Ψ | Underlying theory of neutrino oscillation |
|
||
| B | Conserved basis of flavor (electron, muon, tau) |
|
||
| C | Dynamic context of energy and distance |
|
||
| Δ | Residual error in mass squared difference |
|
||
|
||
---
|
||
|
||
## Eq 250. Breit-Wigner Resonance (Nuclear Reactions)
|
||
**Domain:** Nuclear Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Cross-section of the reaction |
|
||
| Ψ | Breit-Wigner resonance theory |
|
||
| B | Conserved basis (energy levels) |
|
||
| C | Dynamic context (variable parameters) |
|
||
| Δ | Residual error (width of the resonance) |
|
||
|
||
---
|
||
|
||
## Eq 252. Eddington Luminosity Limit
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Luminosity |
|
||
| Ψ | Radiative Transfer |
|
||
| B | Mass-Energy Basis |
|
||
| C | Gravitational Parameter |
|
||
| Δ | Thermal Limit |
|
||
|
||
---
|
||
|
||
## Eq 253. Chandrasekhar Limit (White Dwarf)
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mass of White Dwarf |
|
||
| Ψ | Electron Degeneracy Pressure Mechanism |
|
||
| B | Conserved Electron Mass Basis |
|
||
| C | Variable Electron Number Density Parameter |
|
||
| Δ | Residual Quantum Fluctuation Limit |
|
||
|
||
---
|
||
|
||
## Eq 256. Mass-Luminosity Relation
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Luminosity |
|
||
| Ψ | Mass-energy conversion |
|
||
| B | Conserved mass |
|
||
| C | Variable stellar mass |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 257. Virial Theorem (Astrophysics)
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Total energy |
|
||
| Ψ | Gravitational potential |
|
||
| B | Kinetic energy |
|
||
| C | Potential energy |
|
||
| Δ | Zero residual error |
|
||
|
||
---
|
||
|
||
## Eq 258. Jeans Instability Criterion (Star Formation)
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mass of the star |
|
||
| Ψ | Gravitational collapse mechanism |
|
||
| B | Conserved angular momentum |
|
||
| C | Central density and temperature |
|
||
| Δ | Residual gas pressure |
|
||
|
||
---
|
||
|
||
## Eq 259. Schwarzschild Criterion (Convection)
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Convection instability indicator |
|
||
| Ψ | Schwarzschild criterion operator |
|
||
| B | Conserved basis of energy density |
|
||
| C | Dynamic context of temperature gradient |
|
||
| Δ | Residual error in thermal conduction |
|
||
|
||
---
|
||
|
||
## Eq 260. pp Chain Energy Release
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | pp Chain Energy Release |
|
||
| Ψ | 4p → ⁴He + 2e⁺ + 2ν_e mechanism |
|
||
| B | Proton (p) and electron (e⁻) |
|
||
| C | Variable parameters: n, α, θ |
|
||
| Δ | Residual error in energy release |
|
||
|
||
---
|
||
|
||
## Eq 265. Neutron Star Equation of State (Various)
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Neutron Star Mass |
|
||
| Ψ | Nuclear Matter Theory |
|
||
| B | Conserved Baryon Number |
|
||
| C | Variable Nuclear Composition |
|
||
| Δ | Residual Uncertainty in NS Mass |
|
||
|
||
---
|
||
|
||
## Eq 266. Oppenheimer-Snyder Collapse (BH Formation)
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mass of the formed black hole |
|
||
| Ψ | General Relativity with dust ball collapse |
|
||
| B | Conserved energy and momentum |
|
||
| C | Dust density and velocity parameters |
|
||
| Δ | Quantum gravity corrections and uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 267. Pulsar Spin-Down
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pulsar Spin-Down Rate |
|
||
| Ψ | Spin-Down Mechanism |
|
||
| B | Magnetic Dipole Moment |
|
||
| C | Period and its Derivative |
|
||
| Δ | Residual Error in Measurement |
|
||
|
||
---
|
||
|
||
## Eq 268. Olbers' Paradox Resolution
|
||
**Domain:** Astrophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output/predicted quantity |
|
||
| Ψ | Operator/mechanism/underlying theory |
|
||
| B | Conserved basis/fundamental component |
|
||
| C | Dynamic context/variable parameter |
|
||
| Δ | Residual error/noise/fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 269. Debye Length (Plasma Screening)
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Debye Length |
|
||
| Ψ | Plasma Screening Theory |
|
||
| B | Electron Charge |
|
||
| C | Temperature and Density |
|
||
| Δ | Thermal Noise |
|
||
|
||
---
|
||
|
||
## Eq 270. Plasma Frequency
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Plasma Frequency |
|
||
| Ψ | Electromagnetic Theory |
|
||
| B | Charge Density (n) |
|
||
| C | Mass of Electron (m_e) |
|
||
| Δ | None, idealized model |
|
||
|
||
---
|
||
|
||
## Eq 271. Alfvén Wave Speed
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Alfvén Wave Speed |
|
||
| Ψ | Plasma Physics Theory |
|
||
| B | Magnetic Field Strength |
|
||
| C | Density and Alpha Parameter |
|
||
| Δ | Residual Error or Noise |
|
||
|
||
---
|
||
|
||
## Eq 272. MHD Induction Equation
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic field strength |
|
||
| Ψ | Maxwell's equations |
|
||
| B | Magnetic flux density |
|
||
| C | Velocity of plasma particles |
|
||
| Δ | Resistivity and diffusion |
|
||
|
||
---
|
||
|
||
## Eq 273. Saha Ionization Equation
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Ionization ratio |
|
||
| Ψ | Saha ionization theory |
|
||
| B | Energy levels (U) |
|
||
| C | Temperature (T), charge (α) |
|
||
| Δ | Quantum uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 274. Gyro-frequency (Larmor Frequency)
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gyro-frequency |
|
||
| Ψ | Larmor Frequency Theory |
|
||
| B | Magnetic Field Strength |
|
||
| C | Plasma Parameters (n, α) |
|
||
| Δ | Residual Error or Noise |
|
||
|
||
---
|
||
|
||
## Eq 275. Beta Parameter (Plasma Confinement)
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Beta Parameter |
|
||
| Ψ | Plasma Confinement Theory |
|
||
| B | Magnetic Field Strength |
|
||
| C | Pressure and Magnetic Field Ratio |
|
||
| Δ | Residual Error in Beta Value |
|
||
|
||
---
|
||
|
||
## Eq 276. Lawson Criterion (Fusion Ignition)
|
||
**Domain:** Plasma Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fusion Ignition Threshold |
|
||
| Ψ | Plasma Stability Mechanism |
|
||
| B | Conserved Energy Basis |
|
||
| C | Dynamic Temperature Parameter |
|
||
| Δ | Residual Energy Limitation |
|
||
|
||
---
|
||
|
||
## Eq 277. Noether's Theorem
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Conserved current/charge |
|
||
| Ψ | Continuous symmetry generator |
|
||
| B | Fundamental conserved quantity |
|
||
| C | Variable parameter of the system |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 278. Stokes' Theorem
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Line integral of vector field F |
|
||
| Ψ | Differential operator ∇× |
|
||
| B | Conserved basis of magnetic flux density |
|
||
| C | Dynamic context of curve C with parameter α |
|
||
| Δ | Residual error in surface integral |
|
||
|
||
---
|
||
|
||
## Eq 279. Gauss's Divergence Theorem
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Flux through surface |
|
||
| Ψ | Vector field operator |
|
||
| B | Conserved basis vector |
|
||
| C | Surface normal parameter |
|
||
| Δ | Residual flux error |
|
||
|
||
---
|
||
|
||
## Eq 283. Poisson's Equation
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Potential φ |
|
||
| Ψ | Laplacian operator ∇² |
|
||
| B | Conserved basis of space x |
|
||
| C | Variable parameter f(x) |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 284. Bessel's Equation
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | x² y''+x y'+(x²−n²)y |
|
||
| Ψ | Mathematical model of physical system |
|
||
| B | Conserved angular momentum (L) |
|
||
| C | Variable parameter, n (order of Bessel function) |
|
||
| Δ | Residual error in solution approximation |
|
||
|
||
---
|
||
|
||
## Eq 285. Legendre's Equation
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | y |
|
||
| Ψ | d²/dx² |
|
||
| B | 1-x² |
|
||
| C | 2x |
|
||
| Δ | n(n+1) |
|
||
|
||
---
|
||
|
||
## Eq 286. Hermite's Equation
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | y'' |
|
||
| Ψ | Hermite's Equation |
|
||
| B | 2n |
|
||
| C | x, α |
|
||
| Δ | 0 |
|
||
|
||
---
|
||
|
||
## Eq 287. Associated Legendre Equation
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Associated Legendre Polynomial |
|
||
| Ψ | Differential Operator |
|
||
| B | Conserved Angular Momentum |
|
||
| C | Variable Parameter (x) |
|
||
| Δ | Residual Error Term |
|
||
|
||
---
|
||
|
||
## Eq 288. Chebyshev Polynomials
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 289. Laguerre Polynomials
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Laguerre Polynomial |
|
||
| Ψ | Differential Operator |
|
||
| B | Conserved Energy Basis |
|
||
| C | Variable Potential Parameter |
|
||
| Δ | Residual Quantum Fluctuation |
|
||
|
||
---
|
||
|
||
## Eq 290. Spherical Harmonics (Y_l^m)
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Spherical Harmonics Y_l^m |
|
||
| Ψ | Mathematical Operator for Spherical Coordinates |
|
||
| B | Conserved Basis of Angular Momentum |
|
||
| C | Dynamic Context of Azimuthal Angle φ |
|
||
| Δ | Residual Error in Coordinate Measurement |
|
||
|
||
---
|
||
|
||
## Eq 291. Gamma Function
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Gamma Function output |
|
||
| Ψ | Underlying theory or operator |
|
||
| B | Fundamental component or conserved basis |
|
||
| C | Variable parameter or dynamic context |
|
||
| Δ | Residual error or fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 292. Error Function
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity |
|
||
| Ψ | Underlying theory or mechanism |
|
||
| B | Fundamental component or conserved basis |
|
||
| C | Variable parameter or dynamic context |
|
||
| Δ | Residual error or fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 293. Delta Function (Dirac)
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity or observable output |
|
||
| Ψ | Operator, mechanism, or underlying theory in physics |
|
||
| B | Conserved basis or fundamental component of a system |
|
||
| C | Dynamic context or variable parameter influencing the system |
|
||
| Δ | Residual error, noise, or fundamental limit in measurement |
|
||
|
||
---
|
||
|
||
## Eq 294. Eigenvalue Equation
|
||
**Domain:** Mathematical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Eigenvalue |
|
||
| Ψ | Operator |
|
||
| B | Conserved basis |
|
||
| C | Dynamic context |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 296. Boltzmann Distribution
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Probability of a microstate |
|
||
| Ψ | Hamiltonian operator or energy function |
|
||
| B | Energy basis or fundamental energy unit |
|
||
| C | Temperature parameter (k_B T) |
|
||
| Δ | Residual entropy or thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 297. Canonical Partition Function
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Canonical Partition Function |
|
||
| Ψ | Operator for calculating partition function |
|
||
| B | Conserved basis of energy states |
|
||
| C | Dynamic context of temperature and energy |
|
||
| Δ | Residual error due to approximation |
|
||
|
||
---
|
||
|
||
## Eq 298. Grand Canonical Partition Function
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Grand Canonical Partition Function |
|
||
| Ψ | Statistical Mechanics Theory |
|
||
| B | Conserved Energy Basis |
|
||
| C | Dynamic Temperature Parameter |
|
||
| Δ | Residual Entropy Error |
|
||
|
||
---
|
||
|
||
## Eq 299. Boltzmann Entropy Formula
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Number of microstates |
|
||
| Ψ | Underlying physical theory or mechanism |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 300. Gibbs Entropy Formula
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Entropy |
|
||
| Ψ | Microstate |
|
||
| B | Energy |
|
||
| C | Probability |
|
||
| Δ | Uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 301. Fluctuation-Dissipation Theorem
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fluctuation |
|
||
| Ψ | Mechanism |
|
||
| B | Conserved basis |
|
||
| C | Dynamic context |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 302. Einstein-Smoluchowski Relation (Diffusion)
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mean squared displacement |
|
||
| Ψ | Diffusion theory or mechanism |
|
||
| B | Conserved basis of momentum |
|
||
| C | Dynamic context of temperature and viscosity |
|
||
| Δ | Residual error due to Brownian motion |
|
||
|
||
---
|
||
|
||
## Eq 303. Jarzynski Equality
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Free energy change |
|
||
| Ψ | Thermodynamic process |
|
||
| B | Conserved quantities |
|
||
| C | Temperature and entropy |
|
||
| Δ | Entropy production |
|
||
|
||
---
|
||
|
||
## Eq 304. Crooks Fluctuation Theorem
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Free energy change |
|
||
| Ψ | Hamiltonian operator |
|
||
| B | Conserved basis (e.g. energy) |
|
||
| C | Thermodynamic context (temperature, volume) |
|
||
| Δ | Residual entropy |
|
||
|
||
---
|
||
|
||
## Eq 305. Ising Model (1D/2D Exact Solution)
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical temperature |
|
||
| Ψ | Ising model theory |
|
||
| B | Magnetic field component |
|
||
| C | Spin orientation parameter |
|
||
| Δ | Thermal fluctuation error |
|
||
|
||
---
|
||
|
||
## Eq 306. Central Limit Theorem (Statistical)
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mean of sample |
|
||
| Ψ | Statistical theory |
|
||
| B | Random variable component |
|
||
| C | Sample size and parameter |
|
||
| Δ | Residual standard error |
|
||
|
||
---
|
||
|
||
## Eq 307. Bose-Einstein Condensation (T_c)
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical temperature |
|
||
| Ψ | Quantum statistical theory |
|
||
| B | Momentum basis |
|
||
| C | Particle density and alpha parameter |
|
||
| Δ | Residual thermal fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 308. Kramers-Kronig Relations (Dispersion)
|
||
**Domain:** Statistical Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dielectric susceptibility |
|
||
| Ψ | Hamiltonian operator |
|
||
| B | Electric field basis |
|
||
| C | Magnetic permeability parameter |
|
||
| Δ | Residual dielectric loss |
|
||
|
||
---
|
||
|
||
## Eq 309. Cauchy Stress Principle
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Traction vector |
|
||
| Ψ | Stress tensor operator |
|
||
| B | Conserved basis (normal vector) |
|
||
| C | Dynamic context (material properties) |
|
||
| Δ | Residual error (friction, etc.) |
|
||
|
||
---
|
||
|
||
## Eq 310. Generalized Hooke's Law (Linear Elasticity)
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress tensor |
|
||
| Ψ | Linear Elasticity theory |
|
||
| B | Strain basis |
|
||
| C | Elastic constants matrix |
|
||
| Δ | Residual stress |
|
||
|
||
---
|
||
|
||
## Eq 311. Infinitesimal Strain Tensor
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Infinitesimal Strain Tensor |
|
||
| Ψ | Partial Derivative Operator |
|
||
| B | Conserved Basis of Displacement Components |
|
||
| C | Dynamic Context of Material Properties and Parameters |
|
||
| Δ | Residual Error in Displacement Field |
|
||
|
||
---
|
||
|
||
## Eq 312. Young's Modulus / Elastic Modulus
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Elastic Modulus |
|
||
| Ψ | Continuum Mechanics Theory |
|
||
| B | Stress Basis |
|
||
| C | Strain Parameter |
|
||
| Δ | Material Limitation |
|
||
|
||
---
|
||
|
||
## Eq 313. Shear Modulus
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shear Modulus |
|
||
| Ψ | Continuum Mechanics Theory |
|
||
| B | Stress Tensor Component |
|
||
| C | Strain Rate Parameter |
|
||
| Δ | Material Inhomogeneity Error |
|
||
|
||
---
|
||
|
||
## Eq 314. Bulk Modulus
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Bulk Modulus |
|
||
| Ψ | Continuum Mechanics Theory |
|
||
| B | Isotropic Material Component |
|
||
| C | Pressure and Volume Parameters |
|
||
| Δ | Material Inhomogeneity Error |
|
||
|
||
---
|
||
|
||
## Eq 315. Poisson's Ratio
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Poisson's Ratio |
|
||
| Ψ | Continuum Mechanics Theory |
|
||
| B | Stress Basis |
|
||
| C | Strain Parameters (n, α) |
|
||
| Δ | Measurement Error |
|
||
|
||
---
|
||
|
||
## Eq 316. Euler-Bernoulli Beam Equation
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Deflection w(x) |
|
||
| Ψ | Euler-Bernoulli Beam Theory |
|
||
| B | Young's Modulus EI |
|
||
| C | Load q(x) and boundary conditions |
|
||
| Δ | Material defects and measurement errors |
|
||
|
||
---
|
||
|
||
## Eq 317. Timoshenko Beam Theory
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Deflection of the beam |
|
||
| Ψ | Timoshenko Beam Theory operator |
|
||
| B | Rotational inertia basis |
|
||
| C | Shear modulus and Poisson's ratio parameters |
|
||
| Δ | Residual shear deformation error |
|
||
|
||
---
|
||
|
||
## Eq 318. Elastic Wave Speeds (P and S waves)
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | v_P, v_S |
|
||
| Ψ | Continuum Mechanics Theory |
|
||
| B | Stress Components (K, G) |
|
||
| C | Density and Angle Parameters (ρ, θ, α) |
|
||
| Δ | Measurement Error or Noise |
|
||
|
||
---
|
||
|
||
## Eq 319. Creep / Viscoelastic Maxwell Model
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Strain rate |
|
||
| Ψ | Viscoelastic Maxwell Model operator |
|
||
| B | Stress basis |
|
||
| C | Time-dependent viscosity parameter |
|
||
| Δ | Thermal noise residual |
|
||
|
||
---
|
||
|
||
## Eq 320. Plastic Yield (Von Mises Criterion)
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Plastic Yield Stress |
|
||
| Ψ | Von Mises Criterion Theory |
|
||
| B | Stress Components (σ₁, σ₂, σ₃) |
|
||
| C | Principal Stresses and Angles (α, θ) |
|
||
| Δ | Residual Error in Stress Calculation |
|
||
|
||
---
|
||
|
||
## Eq 321. Shannon Entropy
|
||
**Domain:** Information Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Entropy |
|
||
| Ψ | Probability distribution |
|
||
| B | Information bits |
|
||
| C | Event probability |
|
||
| Δ | Noise or uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 322. Shannon-Hartley Channel Capacity
|
||
**Domain:** Information Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Capacity |
|
||
| Ψ | Theory |
|
||
| B | Bandwidth |
|
||
| C | Signal |
|
||
| Δ | Noise |
|
||
|
||
---
|
||
|
||
## Eq 323. Nyquist-Shannon Sampling Theorem
|
||
**Domain:** Information Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Sampling rate |
|
||
| Ψ | Theoretical framework |
|
||
| B | Fundamental frequency |
|
||
| C | Maximum signal frequency |
|
||
| Δ | Aliasing error |
|
||
|
||
---
|
||
|
||
## Eq 324. Landauer's Principle
|
||
**Domain:** Information Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Heat dissipated |
|
||
| Ψ | Thermodynamic process |
|
||
| B | Conserved energy basis |
|
||
| C | Temperature and entropy context |
|
||
| Δ | Minimum thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 325. Kolmogorov Complexity (Algorithmic Info)
|
||
**Domain:** Information Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output / predicted quantity |
|
||
| Ψ | Operator, mechanism, or underlying theory |
|
||
| B | Conserved basis / fundamental component |
|
||
| C | Dynamic context / variable parameter |
|
||
| Δ | Residual error / noise / fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 326. Maximum Entropy Principle (Jaynes)
|
||
**Domain:** Information Theory
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity or observable output |
|
||
| Ψ | Operator, mechanism, or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise or fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 327. Speed of Light Defines Meter
|
||
**Domain:** Metrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Speed of light |
|
||
| Ψ | Theory of relativity |
|
||
| B | Light speed constant |
|
||
| C | Vacuum conditions |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 328. Planck Constant Defines Kilogram
|
||
**Domain:** Metrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Planck Constant |
|
||
| Ψ | Theory of Quantum Mechanics |
|
||
| B | Fundamental Energy Unit |
|
||
| C | Angular Momentum Parameter |
|
||
| Δ | Quantum Fluctuation Limit |
|
||
|
||
---
|
||
|
||
## Eq 329. Elementary Charge Defines Ampere
|
||
**Domain:** Metrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Ampere |
|
||
| Ψ | Elementary Charge Theory |
|
||
| B | Fundamental Electric Charge |
|
||
| C | Quantum Context Parameter |
|
||
| Δ | Residual Error Limit |
|
||
|
||
---
|
||
|
||
## Eq 330. Boltzmann Constant Defines Kelvin
|
||
**Domain:** Metrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted quantity or observable output |
|
||
| Ψ | Operator, mechanism, or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise or fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 331. Avogadro Number Defines Mole
|
||
**Domain:** Metrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mole quantity |
|
||
| Ψ | Avogadro's number theory |
|
||
| B | Fundamental particle basis |
|
||
| C | Variable atomic mass parameter |
|
||
| Δ | Residual measurement error |
|
||
|
||
---
|
||
|
||
## Eq 332. Josephson Voltage Standard
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Josephson Voltage |
|
||
| Ψ | Superconducting Junction Theory |
|
||
| B | Electron Charge (2e) |
|
||
| C | Frequency (f) and Josephson Constant (K_J) |
|
||
| Δ | Residual Error / Noise Limit |
|
||
|
||
---
|
||
|
||
## Eq 333. Quantum Hall Resistance Standard
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Quantum Hall Resistance |
|
||
| Ψ | Underlying Quantum Mechanics Theory |
|
||
| B | Conserved Basis of Electron Charge |
|
||
| C | Dynamic Context of Magnetic Field Strength |
|
||
| Δ | Residual Error due to Thermal Noise |
|
||
|
||
---
|
||
|
||
## Eq 336. Structure Factor Equation
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Diffraction intensity |
|
||
| Ψ | Crystal structure theory |
|
||
| B | Atomic basis vectors |
|
||
| C | Reciprocal lattice parameters |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 338. Reciprocal Lattice Vector Definition
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Reciprocal Lattice Vector |
|
||
| Ψ | Crystallographic Operator |
|
||
| B | Lattice Basis Vectors |
|
||
| C | Miller Indices (h, k, l) |
|
||
| Δ | Residual Error in Reciprocal Space |
|
||
|
||
---
|
||
|
||
## Eq 340. Ewald Sphere Construction
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Diffraction intensity |
|
||
| Ψ | Crystal structure theory |
|
||
| B | Reciprocal lattice basis |
|
||
| C | Wavelength and orientation parameters |
|
||
| Δ | Momentum transfer error |
|
||
|
||
---
|
||
|
||
## Eq 343. Space Group Symmetry Operations
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Space Group Symmetry Operations |
|
||
| Ψ | Operator for Crystallography |
|
||
| B | Conserved Basis in 3D Space |
|
||
| C | Dynamic Context with Variable Parameters |
|
||
| Δ | Residual Error or Fundamental Limit |
|
||
|
||
---
|
||
|
||
## Eq 344. Interplanar Spacing (Cubic Systems)
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Interplanar Spacing |
|
||
| Ψ | Crystal Lattice Theory |
|
||
| B | Lattice Parameters |
|
||
| C | Miller Indices (h, k, l) |
|
||
| Δ | Measurement Error |
|
||
|
||
---
|
||
|
||
## Eq 345. Scherrer Equation (Crystallite Size)
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Crystallite size |
|
||
| Ψ | Scherrer equation theory |
|
||
| B | Fundamental crystal component |
|
||
| C | X-ray wavelength and FWHM |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 346. Williamson-Hall Analysis (Size + Strain)
|
||
**Domain:** Crystallography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observed diffraction intensity |
|
||
| Ψ | Crystallographic theory of size + strain broadening |
|
||
| B | Conserved basis: crystal lattice parameters |
|
||
| C | Dynamic context: sample orientation (θ, α) |
|
||
| Δ | Residual error: instrumental and measurement noise |
|
||
|
||
---
|
||
|
||
## Eq 348. Hollomon Equation (Work Hardening)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | σ |
|
||
| Ψ | Material properties |
|
||
| B | Strain energy |
|
||
| C | Plastic strain (ε) |
|
||
| Δ | Experimental error |
|
||
|
||
---
|
||
|
||
## Eq 349. Hall-Petch Relationship (Grain Size Strengthening)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | yield stress σ_y |
|
||
| Ψ | Hall-Petch relationship theory |
|
||
| B | grain boundary energy |
|
||
| C | grain size d and orientation α |
|
||
| Δ | experimental error in grain diameter |
|
||
|
||
---
|
||
|
||
## Eq 350. Orowan Equation (Precipitation Strengthening)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress increment |
|
||
| Ψ | Dislocation mechanism |
|
||
| B | Burgers vector magnitude |
|
||
| C | Interparticle spacing |
|
||
| Δ | Residual stress error |
|
||
|
||
---
|
||
|
||
## Eq 351. Schmid's Law (Critical Resolved Shear Stress)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical Resolved Shear Stress |
|
||
| Ψ | Material Deformation Mechanism |
|
||
| B | Crystallographic Slip System |
|
||
| C | Grain Orientation and Texture |
|
||
| Δ | Measurement Uncertainty and Noise |
|
||
|
||
---
|
||
|
||
## Eq 352. Taylor Equation (Dislocation Strengthening)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shear stress |
|
||
| Ψ | Dislocation theory |
|
||
| B | Lattice parameter |
|
||
| C | Dislocation density |
|
||
| Δ | Material variability |
|
||
|
||
---
|
||
|
||
## Eq 353. Petch-Forwood Hardness-Yield Strength Relation
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hardness |
|
||
| Ψ | Material properties |
|
||
| B | Yield strength |
|
||
| C | Metal type and testing method |
|
||
| Δ | Experimental error |
|
||
|
||
---
|
||
|
||
## Eq 354. Griffith Criterion (Brittle Fracture)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | σ_f |
|
||
| Ψ | Griffith Criterion |
|
||
| B | Energy release rate (Eγ_s) |
|
||
| C | Crack radius (a) |
|
||
| Δ | None, fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 355. Stress Intensity Factor (LEFM, Mode I)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress Intensity Factor |
|
||
| Ψ | Linear Elastic Fracture Mechanics Theory |
|
||
| B | Material Properties (e.g. Young's Modulus) |
|
||
| C | Crack Length and Orientation |
|
||
| Δ | Experimental Error or Measurement Uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 356. J-Integral (Elastic-Plastic Fracture)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Path-independent energy release rate |
|
||
| Ψ | Operator for elastic-plastic fracture mechanics |
|
||
| B | Conserved basis of material properties |
|
||
| C | Dynamic context of crack tip parameters |
|
||
| Δ | Residual error in numerical integration |
|
||
|
||
---
|
||
|
||
## Eq 357. Paris' Law (Fatigue Crack Growth)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | da/dN |
|
||
| Ψ | Paris' Law |
|
||
| B | Material properties |
|
||
| C | Dynamic stress intensity factor (ΔK) |
|
||
| Δ | Residual crack growth |
|
||
|
||
---
|
||
|
||
## Eq 358. Basquin Equation (High-Cycle Fatigue)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress amplitude |
|
||
| Ψ | Material fatigue theory |
|
||
| B | Conserved stress basis |
|
||
| C | Number of cycles, notch sensitivity |
|
||
| Δ | Residual error in prediction |
|
||
|
||
---
|
||
|
||
## Eq 359. Coffin-Manson Relation (Low-Cycle Fatigue)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Strain amplitude |
|
||
| Ψ | Material behavior model |
|
||
| B | Stress basis |
|
||
| C | Number of cycles and stress ratio |
|
||
| Δ | Residual strain error |
|
||
|
||
---
|
||
|
||
## Eq 360. Norton-Bailey Creep Law
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Strain rate |
|
||
| Ψ | Creep mechanism |
|
||
| B | Stress exponent |
|
||
| C | Material constant |
|
||
| Δ | Time-dependent error |
|
||
|
||
---
|
||
|
||
## Eq 361. Larson-Miller Parameter (Creep Rupture)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Predicted creep rupture time |
|
||
| Ψ | Material physics theory or model |
|
||
| B | Temperature in Kelvin (K) |
|
||
| C | Constant approximation value, approximately 20 |
|
||
| Δ | Residual error or noise in hours |
|
||
|
||
---
|
||
|
||
## Eq 362. Mohr-Coulomb Failure Criterion
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shear stress |
|
||
| Ψ | Material theory |
|
||
| B | Normal stress component |
|
||
| C | Friction angle parameter |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 363. Drucker-Prager Yield Criterion
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Yield stress |
|
||
| Ψ | Material theory |
|
||
| B | Stress tensor |
|
||
| C | Pressure and deviatoric stress |
|
||
| Δ | Residual stress |
|
||
|
||
---
|
||
|
||
## Eq 364. Weibull Distribution (Brittle Failure Statistics)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Failure probability |
|
||
| Ψ | Weibull distribution theory |
|
||
| B | Stress component |
|
||
| C | Material parameter (n, α) |
|
||
| Δ | Residual error in prediction |
|
||
|
||
---
|
||
|
||
## Eq 365. Stoney Equation (Thin Film Stress)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Film stress |
|
||
| Ψ | Stoney Equation theory |
|
||
| B | Substrate curvature |
|
||
| C | Thin film thickness and elastic properties |
|
||
| Δ | Measurement error or experimental uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 366. Debye Specific Heat Model (Full)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Specific heat capacity |
|
||
| Ψ | Debye model theory |
|
||
| B | Thermal energy basis |
|
||
| C | Temperature parameter |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 367. Dulong-Petit Law
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Specific heat capacity |
|
||
| Ψ | Debye model of lattice vibrations |
|
||
| B | Atomic basis |
|
||
| C | Temperature and atomic number |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 368. Einstein Heat Capacity Model
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Heat capacity |
|
||
| Ψ | Einstein's theory |
|
||
| B | Thermal energy |
|
||
| C | Temperature (T) |
|
||
| Δ | Quantum fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 369. Wiedemann-Franz Law (Electronic Thermal Conductivity)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electronic thermal conductivity |
|
||
| Ψ | Wiedemann-Franz Law mechanism |
|
||
| B | Electron charge and temperature |
|
||
| C | Material properties (n, α) |
|
||
| Δ | Fundamental thermal limit |
|
||
|
||
---
|
||
|
||
## Eq 370. Debye-Callaway Model (Lattice Thermal Conductivity)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Lattice thermal conductivity |
|
||
| Ψ | Debye-Callaway model theory |
|
||
| B | Phonon basis |
|
||
| C | Temperature and Debye temperature |
|
||
| Δ | Residual phonon scattering |
|
||
|
||
---
|
||
|
||
## Eq 371. Thermal Expansion Coefficient (Grüneisen Relation)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Thermal Expansion Coefficient |
|
||
| Ψ | Grüneisen Relation theory |
|
||
| B | Bulk modulus of material |
|
||
| C | Specific heat capacity (C_V) |
|
||
| Δ | Residual thermal expansion error |
|
||
|
||
---
|
||
|
||
## Eq 372. Grüneisen Equation of State (Solids)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure |
|
||
| Ψ | Thermal energy theory |
|
||
| B | Volume |
|
||
| C | Temperature and thermal expansion coefficient |
|
||
| Δ | Residual error in pressure calculation |
|
||
|
||
---
|
||
|
||
## Eq 373. Lindemann Melting Criterion
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Melting temperature T_m |
|
||
| Ψ | Lindemann melting criterion theory |
|
||
| B | Crystal structure basis |
|
||
| C | Material-dependent constant C |
|
||
| Δ | Residual thermal energy |
|
||
|
||
---
|
||
|
||
## Eq 374. Stefan-Boltzmann Radiative Heat Transfer (Between Surfaces)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Radiative heat transfer |
|
||
| Ψ | Stefan-Boltzmann law |
|
||
| B | Thermal energy |
|
||
| C | Surface temperature and emissivity |
|
||
| Δ | View factor correction |
|
||
|
||
---
|
||
|
||
## Eq 375. Complex Dielectric Constant
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Complex Dielectric Constant |
|
||
| Ψ | Material Physics Theory |
|
||
| B | Electric Field Component |
|
||
| C | Frequency and Loss Parameter |
|
||
| Δ | Residual Error or Noise |
|
||
|
||
---
|
||
|
||
## Eq 376. Clausius-Mossotti Relation (Polarizability)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Polarizability |
|
||
| Ψ | Dielectric Theory |
|
||
| B | Electric Field |
|
||
| C | Material Density |
|
||
| Δ | Noise Limit |
|
||
|
||
---
|
||
|
||
## Eq 377. Debye Relaxation (Dipole Response)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dielectric permittivity |
|
||
| Ψ | Dipole response mechanism |
|
||
| B | Electric field component |
|
||
| C | Frequency and damping parameter |
|
||
| Δ | Relaxation time uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 378. Cole-Cole Relaxation (Distributed)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | ε*(ω) |
|
||
| Ψ | Cole-Cole Relaxation Theory |
|
||
| B | Conserved Basis (ε_∞, ε_s) |
|
||
| C | Dynamic Context (ω, τ, α) |
|
||
| Δ | Residual Error / Noise |
|
||
|
||
---
|
||
|
||
## Eq 379. Havriliak-Negami Relaxation
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dielectric permittivity ε*(ω) |
|
||
| Ψ | Havriliak-Negami relaxation theory |
|
||
| B | Conserved basis of dielectric properties |
|
||
| C | Dynamic context: frequency ω, time τ, and exponent α |
|
||
| Δ | Residual error in material response |
|
||
|
||
---
|
||
|
||
## Eq 380. Curie-Weiss Law for Ferroelectrics (Above T_c)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Relative permittivity ε_r |
|
||
| Ψ | Curie-Weiss Law theory |
|
||
| B | Temperature T |
|
||
| C | Curie constant C |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 381. Piezoelectric Constitutive Equations
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress |
|
||
| Ψ | Piezoelectric theory |
|
||
| B | Electric field |
|
||
| C | Strain, temperature |
|
||
| Δ | Residual stress |
|
||
|
||
---
|
||
|
||
## Eq 382. Pyroelectric Coefficient
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pyroelectric Coefficient |
|
||
| Ψ | Material's thermal response mechanism |
|
||
| B | Conserved electric field component |
|
||
| C | Temperature-dependent polarization parameter |
|
||
| Δ | Thermal noise or residual error |
|
||
|
||
---
|
||
|
||
## Eq 383. Fowler-Nordheim Tunneling (Field Emission)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current density |
|
||
| Ψ | Tunneling mechanism |
|
||
| B | Constant in FN equation |
|
||
| C | Electric field strength |
|
||
| Δ | Residual error term |
|
||
|
||
---
|
||
|
||
## Eq 384. Poole-Frenkel Conduction (Insulators)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Conductivity |
|
||
| Ψ | Carrier transport mechanism |
|
||
| B | Electric field component |
|
||
| C | Temperature and electric field parameters |
|
||
| Δ | Thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 385. Varistor I-V Characteristic (Nonlinear)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current |
|
||
| Ψ | Mechanism |
|
||
| B | Charge |
|
||
| C | Voltage |
|
||
| Δ | Noise |
|
||
|
||
---
|
||
|
||
## Eq 386. Percolation Threshold (Conductivity)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Conductivity |
|
||
| Ψ | Material properties |
|
||
| B | Electron mobility |
|
||
| C | Volume fraction |
|
||
| Δ | Noise and error |
|
||
|
||
---
|
||
|
||
## Eq 387. Intrinsic Carrier Concentration (Semiconductors)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Intrinsic Carrier Concentration |
|
||
| Ψ | Semiconductor Physics Theory |
|
||
| B | Conserved Basis (Electron Mass) |
|
||
| C | Dynamic Context (Temperature, Energy Gap) |
|
||
| Δ | Residual Error (Noise in Measurement) |
|
||
|
||
---
|
||
|
||
## Eq 388. Fermi Level in Doped Semiconductors
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fermi Level Energy |
|
||
| Ψ | Schrödinger Equation / Semiconductor Theory |
|
||
| B | Electron Density of States |
|
||
| C | Dopant Concentration and Temperature |
|
||
| Δ | Thermal Fluctuations and Impurities |
|
||
|
||
---
|
||
|
||
## Eq 389. Mass Action Law (Semiconductors)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Carrier concentration |
|
||
| Ψ | Mass Action Law |
|
||
| B | Electron and hole concentrations |
|
||
| C | Temperature (T) |
|
||
| Δ | None, constant at fixed T |
|
||
|
||
---
|
||
|
||
## Eq 390. Shockley Diode Equation (Ideal)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current through the diode |
|
||
| Ψ | Ideal diode theory |
|
||
| B | Electron charge |
|
||
| C | Voltage and temperature |
|
||
| Δ | Residual current error |
|
||
|
||
---
|
||
|
||
## Eq 393. MOS Capacitor Threshold Voltage
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Threshold Voltage |
|
||
| Ψ | Fermi-Dirac Statistics |
|
||
| B | Electron Charge |
|
||
| C | Oxide Capacitance |
|
||
| Δ | Quantum Fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 394. MOSFET Drain Current (Saturation, Long Channel)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | I_D |
|
||
| Ψ | Semiconductor Physics Theory |
|
||
| B | Charge Carrier Mobility (μ_n) |
|
||
| C | Oxide Capacitance (C_ox) and Channel Width (W) |
|
||
| Δ | Thermal Voltage Noise |
|
||
|
||
---
|
||
|
||
## Eq 400. Mott Transition (Doped Semiconductor)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical doping concentration |
|
||
| Ψ | Mott transition theory |
|
||
| B | Electron density of states |
|
||
| C | Doping level and temperature |
|
||
| Δ | Residual disorder or impurity effects |
|
||
|
||
---
|
||
|
||
## Eq 401. Anderson Localization (Disordered Materials)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Conductivity |
|
||
| Ψ | Wave function |
|
||
| B | Energy basis |
|
||
| C | Disorder parameter |
|
||
| Δ | Localization length |
|
||
|
||
---
|
||
|
||
## Eq 402. Tauc Plot (Band Gap from Absorption)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Band Gap Energy |
|
||
| Ψ | Absorption Mechanism |
|
||
| B | Photon Energy (hν) |
|
||
| C | Exponent (r) and Constant (A) |
|
||
| Δ | Residual Error in Fit |
|
||
|
||
---
|
||
|
||
## Eq 403. Stoner Criterion (Itinerant Ferromagnetism)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetization |
|
||
| Ψ | Exchange interaction |
|
||
| B | Density of states (DOS) |
|
||
| C | Energy at Fermi level (E_F) |
|
||
| Δ | Residual magnetization |
|
||
|
||
---
|
||
|
||
## Eq 404. Stoner-Wohlfarth Model (Single-Domain Particle)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy |
|
||
| Ψ | Stoner-Wohlfarth Model |
|
||
| B | Magnetic Moment |
|
||
| C | Anisotropy and Zeeman Energy |
|
||
| Δ | Hysteresis Error |
|
||
|
||
---
|
||
|
||
## Eq 405. Néel Temperature (Antiferromagnetism)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Néel Temperature |
|
||
| Ψ | Mean-field theory |
|
||
| B | Exchange energy (J) |
|
||
| C | Spin magnitude (S) and direction |
|
||
| Δ | Residual thermal fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 406. Curie Temperature (Mean-Field Ferromagnetism)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Curie Temperature |
|
||
| Ψ | Mean-Field Theory |
|
||
| B | Exchange Energy |
|
||
| C | Coordination Number |
|
||
| Δ | Thermal Fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 408. Landau-Lifshitz-Gilbert Equation (Magnetization Dynamics)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetization dynamics |
|
||
| Ψ | Landau-Lifshitz-Gilbert theory |
|
||
| B | Magnetic field |
|
||
| C | Gyromagnetic ratio and damping parameter |
|
||
| Δ | Thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 409. Brown's Paradox (Domain Wall Motion)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Velocity of domain wall motion |
|
||
| Ψ | Operator for domain wall dynamics |
|
||
| B | Magnetic field strength |
|
||
| C | Critical angle or parameter |
|
||
| Δ | Residual magnetic anisotropy |
|
||
|
||
---
|
||
|
||
## Eq 410. Magnetostriction (Joule Magnetostriction)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Change in length |
|
||
| Ψ | Magnetomechanical interaction theory |
|
||
| B | Magnetic field component |
|
||
| C | Saturation magnetostriction coefficient |
|
||
| Δ | Residual strain error |
|
||
|
||
---
|
||
|
||
## Eq 411. Giant Magnetoresistance (GMR, CIP)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Giant Magnetoresistance ratio |
|
||
| Ψ | Spin-dependent scattering mechanism |
|
||
| B | Magnetic field component |
|
||
| C | Angle and number of layers parameter |
|
||
| Δ | Residual resistance error |
|
||
|
||
---
|
||
|
||
## Eq 414. Superexchange (Anderson-Goodenough-Kanamori Rules)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Exchange coupling energy |
|
||
| Ψ | Superexchange mechanism |
|
||
| B | Orbital overlap (180°) |
|
||
| C | Crystal field splitting parameter |
|
||
| Δ | Residual exchange interaction error |
|
||
|
||
---
|
||
|
||
## Eq 415. Complex Refractive Index (General)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Complex Refractive Index |
|
||
| Ψ | Operator for Material Physics |
|
||
| B | Conserved Basis of Fundamental Components |
|
||
| C | Dynamic Context with Variable Parameters (n, α) |
|
||
| Δ | Residual Error or Noise in the Model |
|
||
|
||
---
|
||
|
||
## Eq 416. Kramers-Kronig Relations (Optical Constants)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Optical constant |
|
||
| Ψ | Material properties theory |
|
||
| B | Electric field basis |
|
||
| C | Frequency parameter |
|
||
| Δ | Dispersion relation error |
|
||
|
||
---
|
||
|
||
## Eq 421. Beer-Lambert Law (Absorption)
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Absorbance |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Light intensity |
|
||
| C | Concentration and path length |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 426. Stokes Shift (Luminescence)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stokes Shift |
|
||
| Ψ | Vibrational Relaxation Mechanism |
|
||
| B | Excitation Energy Basis |
|
||
| C | Temperature and Vibration Parameter |
|
||
| Δ | Energy Loss Limit |
|
||
|
||
---
|
||
|
||
## Eq 427. Dexter Energy Transfer (Exchange)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dexter Energy Transfer |
|
||
| Ψ | Exchange Mechanism |
|
||
| B | Electron Basis |
|
||
| C | Short-range Context (≲1 nm) |
|
||
| Δ | Residual Electron Exchange Limit |
|
||
|
||
---
|
||
|
||
## Eq 428. Vickers Hardness Definition
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Vickers Hardness Value |
|
||
| Ψ | Material Deformation Mechanism |
|
||
| B | Force (kgf) |
|
||
| C | Average Diagonal Length (mm) |
|
||
| Δ | Measurement Error |
|
||
|
||
---
|
||
|
||
## Eq 429. Brinell Hardness
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Brinell Hardness |
|
||
| Ψ | Material deformation mechanism |
|
||
| B | Ball diameter |
|
||
| C | Indentation depth and angle |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 430. Rockwell Hardness (Indirect)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Rockwell Hardness |
|
||
| Ψ | Material Physics Theory |
|
||
| B | Conserved Basis of Material Properties |
|
||
| C | Dynamic Context of Penetration Depth and Scale |
|
||
| Δ | Residual Error in Measurement |
|
||
|
||
---
|
||
|
||
## Eq 431. Knoop Hardness (Thin Films / Brittle)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Knoop Hardness |
|
||
| Ψ | Material deformation mechanism |
|
||
| B | Conserved material properties |
|
||
| C | Film thickness and penetration depth |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 432. Nanoindentation (Oliver-Pharr Method)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Nanoindentation hardness |
|
||
| Ψ | Oliver-Pharr method theory |
|
||
| B | Material properties basis |
|
||
| C | Dynamic loading parameters |
|
||
| Δ | Measurement noise residual |
|
||
|
||
---
|
||
|
||
## Eq 433. Charpy Impact Toughness
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy absorbed in fracture |
|
||
| Ψ | Mechanism of material fracture |
|
||
| B | Conserved basis of energy |
|
||
| C | Dynamic context of impact velocity |
|
||
| Δ | Residual error due to measurement noise |
|
||
|
||
---
|
||
|
||
## Eq 434. Izod Impact Test
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy absorbed per unit width |
|
||
| Ψ | Material properties and impact dynamics |
|
||
| B | Conserved basis of material strength |
|
||
| C | Dynamic context of impact velocity and angle |
|
||
| Δ | Residual error in measurement or calculation |
|
||
|
||
---
|
||
|
||
## Eq 435. Rubber Elasticity (Gaussian Chain, Affine)
|
||
**Domain:** Polymer Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress |
|
||
| Ψ | Gaussian Chain Theory |
|
||
| B | Crosslink Density |
|
||
| C | Extension Ratio (λ) |
|
||
| Δ | Residual Stress Error |
|
||
|
||
---
|
||
|
||
## Eq 436. Mooney-Rivlin Equation (Hyperelastic)
|
||
**Domain:** Polymer Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress |
|
||
| Ψ | Mooney-Rivlin theory |
|
||
| B | Cauchy-Green tensor components |
|
||
| C | Material parameters (C₁₀, C₀₁) |
|
||
| Δ | Residual stress |
|
||
|
||
---
|
||
|
||
## Eq 442. Entanglement Molecular Weight
|
||
**Domain:** Polymer Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Molecular weight |
|
||
| Ψ | Entanglement mechanism |
|
||
| B | Polymer chain segment |
|
||
| C | Chain length and temperature |
|
||
| Δ | Experimental uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 443. Flory-Fox Equation (T_g vs Molecular Weight)
|
||
**Domain:** Polymer Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Glass Transition Temperature (T_g) |
|
||
| Ψ | Flory-Fox Theory |
|
||
| B | Molecular Weight (MW) |
|
||
| C | Asymptotic Limit (T_g∞) |
|
||
| Δ | Residual Error in T_g Prediction |
|
||
|
||
---
|
||
|
||
## Eq 444. Cahn-Hilliard Equation (Spinodal Decomposition)
|
||
**Domain:** Polymer Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Concentration field |
|
||
| Ψ | Diffusion mechanism |
|
||
| B | Conserved polymer component |
|
||
| C | Composition parameter and gradient energy |
|
||
| Δ | Thermal noise and diffusion limit |
|
||
|
||
---
|
||
|
||
## Eq 445. Avrami Equation (Crystallization Kinetics)
|
||
**Domain:** Phase Transformations
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Crystallization fraction |
|
||
| Ψ | Nucleation and growth mechanism |
|
||
| B | Crystal volume or mass |
|
||
| C | Time, temperature, and nucleation rate |
|
||
| Δ | Experimental error or noise |
|
||
|
||
---
|
||
|
||
## Eq 447. Young's Equation (Contact Angle)
|
||
**Domain:** Surface Science
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Contact angle |
|
||
| Ψ | Interfacial tension balance theory |
|
||
| B | Surface energy |
|
||
| C | Liquid-vapor interface parameter |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 448. Wenzel Equation (Rough Surface Wetting)
|
||
**Domain:** Surface Science
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Wetting angle |
|
||
| Ψ | Surface energy theory |
|
||
| B | Interfacial tension |
|
||
| C | Roughness parameter (n, α) |
|
||
| Δ | Error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 449. Cassie-Baxter Equation (Composite/Heterogeneous Wetting)
|
||
**Domain:** Surface Science
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Contact angle |
|
||
| Ψ | Wetting theory |
|
||
| B | Surface energy |
|
||
| C | Angle of approach |
|
||
| Δ | Trapped air fraction |
|
||
|
||
---
|
||
|
||
## Eq 450. Laplace Pressure (Curved Interface)
|
||
**Domain:** Fluid Dynamics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Laplace Pressure |
|
||
| Ψ | Fluid Dynamics Theory |
|
||
| B | Surface Tension |
|
||
| C | Curvature Parameters (R1, R2) |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 451. Kelvin Equation (Capillary Condensation)
|
||
**Domain:** Surface Science
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | ln(P/P₀) |
|
||
| Ψ | Kelvin Equation |
|
||
| B | γ V_m / r |
|
||
| C | R T |
|
||
| Δ | residual error |
|
||
|
||
---
|
||
|
||
## Eq 452. Langmuir Adsorption Isotherm (Monolayer)
|
||
**Domain:** Surface Science
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fractional coverage |
|
||
| Ψ | Langmuir Adsorption Isotherm theory |
|
||
| B | Adsorbate molecules |
|
||
| C | Partial pressure (K P) |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 464. Fick's First Law (Steady-State Diffusion)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Flux |
|
||
| Ψ | Diffusion theory |
|
||
| B | Concentration gradient |
|
||
| C | Material properties (D) |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 465. Fick's Second Law (Time-Dependent Diffusion)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Concentration c |
|
||
| Ψ | Diffusion theory |
|
||
| B | Material properties |
|
||
| C | Spatial position x |
|
||
| Δ | Random fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 466. Diffusion Solutions (Common)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Diffusion solution |
|
||
| Ψ | Material properties operator |
|
||
| B | Conserved basis (mass) |
|
||
| C | Dynamic context (temperature, time) |
|
||
| Δ | Residual error (noise) |
|
||
|
||
---
|
||
|
||
## Eq 469. Nernst-Planck Equation (Ion Transport)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Ion flux |
|
||
| Ψ | Diffusion-migration-convection theory |
|
||
| B | Charge carrier |
|
||
| C | Electrochemical potential gradient |
|
||
| Δ | Thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 472. Gibbs-Thomson Effect (Curvature Depression of Melting/Equilibrium Point)
|
||
**Domain:** Phase Transformations
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Temperature of melting point |
|
||
| Ψ | Gibbs-Thomson equation mechanism |
|
||
| B | Surface energy density |
|
||
| C | Particle radius and contact angle |
|
||
| Δ | Residual error in temperature measurement |
|
||
|
||
---
|
||
|
||
## Eq 478. Darken-Gurry Plot (Solubility Limits)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Solubility limits |
|
||
| Ψ | Material physics theory |
|
||
| B | Conserved basis of atoms |
|
||
| C | Electronegativity and atomic number |
|
||
| Δ | Residual error in electronegativity |
|
||
|
||
---
|
||
|
||
## Eq 479. Hume-Rothery Rules (Alloy Formation)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Alloy formation probability |
|
||
| Ψ | Hume-Rothery rules mechanism |
|
||
| B | Atomic size and electronegativity |
|
||
| C | Crystal structure and valence electrons |
|
||
| Δ | Residual error in alloy formation |
|
||
|
||
---
|
||
|
||
## Eq 480. Vegard's Law (Lattice Parameter in Solid Solutions)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Lattice parameter |
|
||
| Ψ | Vegard's Law theory |
|
||
| B | Atomic basis |
|
||
| C | Composition and concentration |
|
||
| Δ | Non-ideal mixing deviations |
|
||
|
||
---
|
||
|
||
## Eq 482. Hashin-Shtrikman Bounds (Composite Moduli)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Composite Moduli |
|
||
| Ψ | Material Physics Theory |
|
||
| B | Conserved Basis Components |
|
||
| C | Dynamic Material Properties |
|
||
| Δ | Residual Error Limits |
|
||
|
||
---
|
||
|
||
## Eq 488. Franz-Keldysh Effect (Electro-Absorption)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Band edge shift |
|
||
| Ψ | Franz-Keldysh theory |
|
||
| B | Conduction band |
|
||
| C | Electric field strength |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 490. Kerr Effect (Quadratic Electro-Optic)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Kerr Effect |
|
||
| Ψ | Material properties |
|
||
| B | Electric field |
|
||
| C | Wavelength and refractive index |
|
||
| Δ | Residual birefringence |
|
||
|
||
---
|
||
|
||
## Eq 491. Photoconductivity (Rose Model)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Photoconductivity |
|
||
| Ψ | Rose Model mechanism |
|
||
| B | Generation rate G |
|
||
| C | Lifetime τ and transit time t_transit |
|
||
| Δ | Residual error in conductivity Δσ |
|
||
|
||
---
|
||
|
||
## Eq 495. Ginzburg-Landau Coherence Length
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Coherence length |
|
||
| Ψ | Superconducting theory |
|
||
| B | Order parameter basis |
|
||
| C | Temperature and critical temperature |
|
||
| Δ | Thermal fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 496. Ginzburg-Landau Penetration Depth
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Penetration depth |
|
||
| Ψ | Superconductivity theory |
|
||
| B | Magnetic field strength |
|
||
| C | Temperature and critical temperature |
|
||
| Δ | Thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 497. Ginzburg-Landau Parameter (κ)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Ginzburg-Landau Parameter |
|
||
| Ψ | Superconducting theory |
|
||
| B | Flux quantum |
|
||
| C | Critical temperature |
|
||
| Δ | Thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 498. Abrikosov Vortex Lattice (Lower/Upper Critical Fields)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical field |
|
||
| Ψ | Ginzburg-Landau theory |
|
||
| B | Magnetic flux |
|
||
| C | Temperature, angle |
|
||
| Δ | Thermal fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 499. Flux Pinning (Bean Critical State Model)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical current density |
|
||
| Ψ | Magnetization mechanism |
|
||
| B | Magnetic field strength |
|
||
| C | Pinning center distribution |
|
||
| Δ | Flux creep noise |
|
||
|
||
---
|
||
|
||
## Eq 500. Little-Parks Effect (Fluxoid Quantization)
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical temperature T_c |
|
||
| Ψ | Superconducting state theory |
|
||
| B | Fluxoid basis |
|
||
| C | Magnetic field strength and orientation |
|
||
| Δ | Quantum flux noise limit |
|
||
|
||
---
|
||
|
||
## Eq 501. Andreev Reflection
|
||
**Domain:** Condensed Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Andreev Reflection Coefficient |
|
||
| Ψ | Superconducting Order Parameter |
|
||
| B | Electron Hole Pair Basis |
|
||
| C | Normal State Electron Energy |
|
||
| Δ | Subgap Conductance Error Limit |
|
||
|
||
---
|
||
|
||
## Eq 502. Nernst Equation (Electrode Potential)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electrode Potential |
|
||
| Ψ | Thermodynamics Theory |
|
||
| B | Charge (Q) |
|
||
| C | Temperature (T), Number of Electrons (n), Faraday Constant (F) |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 503. Butler-Volmer Equation (Electrode Kinetics)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current density |
|
||
| Ψ | Electrode kinetics theory |
|
||
| B | Charge carrier basis |
|
||
| C | Overpotential and transfer coefficient |
|
||
| Δ | Residual error in current prediction |
|
||
|
||
---
|
||
|
||
## Eq 504. Tafel Equation (High Overpotential Limit)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Overpotential |
|
||
| Ψ | Electrochemical mechanism |
|
||
| B | Charge transfer coefficient |
|
||
| C | Current density |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 507. Faraday's Laws of Electrolysis
|
||
**Domain:** Electromagnetism
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mass deposited |
|
||
| Ψ | Electromagnetic theory |
|
||
| B | Charge carriers (ions) |
|
||
| C | Current and time (It) |
|
||
| Δ | Experimental uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 508. Wagner Number (Current Distribution Uniformity)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Wagner Number |
|
||
| Ψ | Current Distribution Mechanism |
|
||
| B | Conserved Basis (Electric Current) |
|
||
| C | Dynamic Context (Material Properties, α) |
|
||
| Δ | Residual Error (Non-Uniformity) |
|
||
|
||
---
|
||
|
||
## Eq 509. Zener Anelasticity (Standard Linear Solid)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Strain |
|
||
| Ψ | Mechanical theory |
|
||
| B | Stress basis |
|
||
| C | Relaxation time parameter |
|
||
| Δ | Residual strain limit |
|
||
|
||
---
|
||
|
||
## Eq 510. Debye Peak (Internal Friction, Point Defect Relaxation)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Internal Friction, Point Defect Relaxation |
|
||
| Ψ | Debye Peak Mechanism |
|
||
| B | Conserved Basis (Energy) |
|
||
| C | Dynamic Context (Temperature, Frequency) |
|
||
| Δ | Residual Error (Noise) |
|
||
|
||
---
|
||
|
||
## Eq 514. Krieger-Dougherty Equation (Concentrated Suspension)
|
||
**Domain:** Soft Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Viscosity |
|
||
| Ψ | Krieger-Dougherty Theory |
|
||
| B | Constituent Particles |
|
||
| C | Packing Fraction and Intrinsic Viscosity |
|
||
| Δ | Experimental Error |
|
||
|
||
---
|
||
|
||
## Eq 515. Frank-Oseen Free Energy (Liquid Crystal Elastic)
|
||
**Domain:** Soft Matter
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Free Energy |
|
||
| Ψ | Liquid Crystal Elastic Theory |
|
||
| B | Strain Tensor Components |
|
||
| C | Molecular Orientation Parameters |
|
||
| Δ | Thermal Fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 520. Ozawa-Flynn-Wall Equation (Isoconversional Kinetics)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Activation energy |
|
||
| Ψ | Kinetic model |
|
||
| B | Temperature |
|
||
| C | Reaction rate constant |
|
||
| Δ | Thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 527. Mott-Gurney Law (Space-Charge-Limited Current)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current density |
|
||
| Ψ | Space-charge-limited current theory |
|
||
| B | Electric field strength |
|
||
| C | Material properties (ε, μ) |
|
||
| Δ | Trap-related residual error |
|
||
|
||
---
|
||
|
||
## Eq 528. Richardson-Dushman Equation (Thermionic Emission)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Thermionic current density |
|
||
| Ψ | Richardson-Dushman theory |
|
||
| B | Electron mass and charge |
|
||
| C | Temperature and work function |
|
||
| Δ | Residual error in emission |
|
||
|
||
---
|
||
|
||
## Eq 529. Schottky Barrier Height (Metal-Semiconductor)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Schottky Barrier Height |
|
||
| Ψ | Quantum Mechanics |
|
||
| B | Electron Charge |
|
||
| C | Doping Concentration and Temperature |
|
||
| Δ | Interface States |
|
||
|
||
---
|
||
|
||
## Eq 530. Spicer's Unified Defect Model (Fermi Level Pinning at Interfaces)
|
||
**Domain:** Semiconductor Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Fermi Level Pinning |
|
||
| Ψ | Native Defect Mechanism |
|
||
| B | Conserved Basis of Energy States |
|
||
| C | Variable Metal Work Function |
|
||
| Δ | Residual Interface Noise |
|
||
|
||
---
|
||
|
||
## Eq 534. Matthiessen's Rule (Electrical Resistivity Additivity)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Electrical resistivity |
|
||
| Ψ | Material physics theory |
|
||
| B | Thermal, impurity, deformation components |
|
||
| C | Temperature, concentration, strain parameters |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 535. Nordheim's Rule (Alloy Resistivity)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Alloy resistivity |
|
||
| Ψ | Nordheim's Rule mechanism |
|
||
| B | Pure metal basis |
|
||
| C | Atomic fraction variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 540. Diffuse Mismatch Model (Thermal Boundary Resistance)
|
||
**Domain:** Material Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Thermal resistance |
|
||
| Ψ | Phonon transport theory |
|
||
| B | Conserved phonon modes |
|
||
| C | Interface roughness parameter |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 542. Snell's Law (Seismic Refraction at Interfaces)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Seismic ray parameter |
|
||
| Ψ | Snell's Law operator |
|
||
| B | Wave velocity |
|
||
| C | Angle of incidence |
|
||
| Δ | Residual refraction error |
|
||
|
||
---
|
||
|
||
## Eq 543. Gutenberg-Richter Magnitude-Energy Relation
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | log₁₀ E |
|
||
| Ψ | Gutenberg-Richter Magnitude-Energy Relation |
|
||
| B | Energy (E) in Joules |
|
||
| C | Magnitude (M) |
|
||
| Δ | Residual error / noise |
|
||
|
||
---
|
||
|
||
## Eq 544. Omori's Law (Aftershock Decay)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Aftershock rate |
|
||
| Ψ | Seismic theory |
|
||
| B | Earthquake energy release |
|
||
| C | Time after mainshock |
|
||
| Δ | Residual seismic activity |
|
||
|
||
---
|
||
|
||
## Eq 545. Frequency-Magnitude Distribution (Gutenberg-Richter Law)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Frequency of earthquakes |
|
||
| Ψ | Seismic theory or mechanism |
|
||
| B | Earthquake magnitude scale |
|
||
| C | Number of earthquakes (cumulative) |
|
||
| Δ | Residual error in earthquake prediction |
|
||
|
||
---
|
||
|
||
## Eq 546. Bullen's Compressibility-Pressure Hypothesis (Earth Interior)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Compressibility of Earth core |
|
||
| Ψ | Linear relationship between pressure and compressibility |
|
||
| B | Pressure (P) |
|
||
| C | Earth core compressibility coefficient |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 547. Love Wave Dispersion Equation (Surface Waves)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Love wave dispersion |
|
||
| Ψ | Rayleigh-Love wave theory |
|
||
| B | Shear modulus (μ) |
|
||
| C | Wave number (β) and angle (α) |
|
||
| Δ | Residual error in wave speed |
|
||
|
||
---
|
||
|
||
## Eq 548. Airy Isostasy (Crustal Compensation Model)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mountain root thickness |
|
||
| Ψ | Airy Isostasy theory |
|
||
| B | Crustal density (ρ_c) |
|
||
| C | Elevation and mantle density (h, ρ_m) |
|
||
| Δ | Residual error in density calculation |
|
||
|
||
---
|
||
|
||
## Eq 553. Plate Motion on a Sphere (Euler Pole Rotation)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | linear velocity |
|
||
| Ψ | Euler Pole Rotation theory |
|
||
| B | angular velocity vector |
|
||
| C | Earth radius vector |
|
||
| Δ | residual error |
|
||
|
||
---
|
||
|
||
## Eq 555. Curie Temperature Isotherm (Magnetic Crustal Thickness)
|
||
**Domain:** Geophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Magnetic Crustal Thickness |
|
||
| Ψ | Thermal demagnetization mechanism |
|
||
| B | Magnetic mineral component |
|
||
| C | Temperature and depth variables |
|
||
| Δ | Residual thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 557. Dupuit-Forchheimer Assumption (Unconfined Aquifer)
|
||
**Domain:** Hydrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Discharge rate |
|
||
| Ψ | Hydrodynamic theory |
|
||
| B | Water head |
|
||
| C | Aquifer properties |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 560. Rational Method (Peak Runoff Estimation)
|
||
**Domain:** Hydrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Peak Runoff |
|
||
| Ψ | Hydrological Theory |
|
||
| B | Conserved Water Mass |
|
||
| C | Runoff Coefficient (0-1) |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 561. Richards Equation (Unsaturated Flow in Soils)
|
||
**Domain:** Hydrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Moisture content |
|
||
| Ψ | Hydraulic conductivity theory |
|
||
| B | Pressure head |
|
||
| C | Soil properties (n, α) |
|
||
| Δ | Residual error in moisture content |
|
||
|
||
---
|
||
|
||
## Eq 562. Horton Infiltration Model
|
||
**Domain:** Hydrology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Infiltration capacity |
|
||
| Ψ | Horton Infiltration Model theory |
|
||
| B | Conserved water basis |
|
||
| C | Variable infiltration parameter |
|
||
| Δ | Residual error in model |
|
||
|
||
---
|
||
|
||
## Eq 565. Linear Wave Theory (Airy Wave, Dispersion Relation)
|
||
**Domain:** Oceanography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Angular frequency |
|
||
| Ψ | Linear wave theory |
|
||
| B | Wave number |
|
||
| C | Water depth |
|
||
| Δ | Dispersion error |
|
||
|
||
---
|
||
|
||
## Eq 566. Stokes Drift (Mass Transport Under Waves)
|
||
**Domain:** Oceanography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stokes Drift |
|
||
| Ψ | Wave Theory Mechanism |
|
||
| B | Conserved Water Mass |
|
||
| C | Wavelength and Amplitude Parameters |
|
||
| Δ | Residual Error in Prediction |
|
||
|
||
---
|
||
|
||
## Eq 567. Significant Wave Height (Sverdrup-Munk-Bretschneider)
|
||
**Domain:** Oceanography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Significant Wave Height |
|
||
| Ψ | Sverdrup-Munk-Bretschneider theory |
|
||
| B | Conserved wave energy basis |
|
||
| C | Sea state parameters (n, α) |
|
||
| Δ | Residual error in wave height prediction |
|
||
|
||
---
|
||
|
||
## Eq 570. Ekman Transport (Wind-Driven Surface Layer)
|
||
**Domain:** Oceanography
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Net transport |
|
||
| Ψ | Ekman theory |
|
||
| B | Wind stress |
|
||
| C | Coriolis parameter |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 574. Sonar Equation (Active, Monostatic)
|
||
**Domain:** Underwater Acoustics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Detection threshold |
|
||
| Ψ | Sonar theory and mechanism |
|
||
| B | Target strength |
|
||
| C | Source level, transmission loss, noise |
|
||
| Δ | Directivity index |
|
||
|
||
---
|
||
|
||
## Eq 578. Ideal Gas Law (Moist Air, Virtual Temperature)
|
||
**Domain:** Atmospheric Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure |
|
||
| Ψ | Ideal Gas Law Theory |
|
||
| B | Moist Air Components |
|
||
| C | Specific Humidity and Temperature |
|
||
| Δ | Virtual Temperature Correction Error |
|
||
|
||
---
|
||
|
||
## Eq 579. Potential Temperature (Adiabatic Reference)
|
||
**Domain:** Atmospheric Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Potential Temperature |
|
||
| Ψ | Adiabatic Reference Theory |
|
||
| B | Conserved Basis (Entropy) |
|
||
| C | Dynamic Context (Pressure, α) |
|
||
| Δ | Residual Error (Noise) |
|
||
|
||
---
|
||
|
||
## Eq 581. Geostrophic Wind (Pressure Gradient + Coriolis Balance)
|
||
**Domain:** Atmospheric Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Geostrophic Wind |
|
||
| Ψ | Pressure Gradient + Coriolis Balance Theory |
|
||
| B | Conserved Angular Momentum |
|
||
| C | Variable Density and Latitude |
|
||
| Δ | Residual Atmospheric Noise |
|
||
|
||
---
|
||
|
||
## Eq 585. Clausius-Clapeyron (Water Vapor Saturation Pressure)
|
||
**Domain:** Atmospheric Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Saturated vapor pressure |
|
||
| Ψ | Thermodynamic theory of water vapor |
|
||
| B | Water molecule (H2O) |
|
||
| C | Temperature (T) and atmospheric conditions |
|
||
| Δ | Measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 587. Köhler Theory (Cloud Droplet Activation)
|
||
**Domain:** Atmospheric Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Critical supersaturation |
|
||
| Ψ | Köhler Theory mechanism |
|
||
| B | Solute term (Raoult effect) |
|
||
| C | Dynamic context (variable parameter) |
|
||
| Δ | Residual error / noise |
|
||
|
||
---
|
||
|
||
## Eq 598. Einstein-Smoluchowski Relation (Molecular Motor Stalling Force)
|
||
**Domain:** Biophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stall force of molecular motor |
|
||
| Ψ | Einstein-Smoluchowski relation theory |
|
||
| B | Step size (fundamental component) |
|
||
| C | Temperature and step size parameters |
|
||
| Δ | Residual error or noise limit |
|
||
|
||
---
|
||
|
||
## Eq 599. Bell's Model (Bond Rupture Under Force)
|
||
**Domain:** Biophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | k_off(F) |
|
||
| Ψ | Bell's Model |
|
||
| B | Conserved basis / fundamental component |
|
||
| C | Dynamic context / variable parameter (slip bond kinetics) |
|
||
| Δ | Residual error / noise / fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 600. Hill's Equation (Muscle Force-Velocity Relation)
|
||
**Domain:** Biophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Muscle force |
|
||
| Ψ | Hill's theory |
|
||
| B | Conserved energy |
|
||
| C | Velocity parameter |
|
||
| Δ | Viscous resistance |
|
||
|
||
---
|
||
|
||
## Eq 603. Michaelis-Menten Enzyme Kinetics
|
||
**Domain:** Chemical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | v, velocity of reaction |
|
||
| Ψ | Michaelis-Menten enzyme kinetics theory |
|
||
| B | Enzyme concentration [E]_total |
|
||
| C | [S], substrate concentration |
|
||
| Δ | Residual error in kinetic model |
|
||
|
||
---
|
||
|
||
## Eq 604. Transition State Theory (Eyring Equation)
|
||
**Domain:** Chemical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Rate constant |
|
||
| Ψ | Transition State Theory |
|
||
| B | Conserved basis (energy) |
|
||
| C | Dynamic context (temperature, entropy) |
|
||
| Δ | Activation energy |
|
||
|
||
---
|
||
|
||
## Eq 607. Butler-Volmer Equation (Electrode Kinetics)
|
||
**Domain:** Chemical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Current density |
|
||
| Ψ | Electrode kinetics mechanism |
|
||
| B | Conserved charge carriers |
|
||
| C | Variable overpotential and transfer coefficients |
|
||
| Δ | Residual error in current prediction |
|
||
|
||
---
|
||
|
||
## Eq 608. Beer-Lambert Law (Spectroscopy)
|
||
**Domain:** Photonics & Laser Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Absorbance |
|
||
| Ψ | Beer-Lambert Law |
|
||
| B | Molar absorptivity |
|
||
| C | Concentration and path length |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 609. Förster Resonance Energy Transfer (FRET) Efficiency
|
||
**Domain:** Biophysics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | FRET Efficiency |
|
||
| Ψ | Forster Resonance Energy Transfer Theory |
|
||
| B | Excitation Wavelength |
|
||
| C | Donor-Acceptor Distance and Orientation |
|
||
| Δ | Instrumental Noise Limit |
|
||
|
||
---
|
||
|
||
## Eq 610. Einstein Rate Equations (Laser Dynamics)
|
||
**Domain:** Photonics & Laser Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Population inversion or photon density |
|
||
| Ψ | Laser dynamics theory or rate equation model |
|
||
| B | Photon absorption coefficient or gain medium |
|
||
| C | Frequency, temperature, or pump power parameter |
|
||
| Δ | Thermal noise or cavity loss limit |
|
||
|
||
---
|
||
|
||
## Eq 611. Laser Threshold Condition
|
||
**Domain:** Photonics & Laser Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Laser Threshold Condition |
|
||
| Ψ | Gain Mechanism |
|
||
| B | Internal Loss |
|
||
| C | Mirror Transmission |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 613. Mode-Locking Condition (fs/ps Pulses)
|
||
**Domain:** Photonics & Laser Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Mode-Locking Condition |
|
||
| Ψ | Laser Dynamics Theory |
|
||
| B | Photon Energy Basis |
|
||
| C | Gain Parameter Context |
|
||
| Δ | Frequency Noise Limit |
|
||
|
||
---
|
||
|
||
## Eq 616. Nonlinear Schrödinger Equation (Optical Solitons in Fibers)
|
||
**Domain:** Photonics & Laser Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Optical soliton amplitude |
|
||
| Ψ | Nonlinear Schrödinger theory |
|
||
| B | Gaussian basis function |
|
||
| C | Dispersion parameter (n, α) |
|
||
| Δ | Quantum noise residual |
|
||
|
||
---
|
||
|
||
## Eq 621. Zeeman Effect (Normal + Anomalous)
|
||
**Domain:** Atomic & Molecular Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy shift |
|
||
| Ψ | Zeeman Effect theory |
|
||
| B | Magnetic field strength |
|
||
| C | Spin angular momentum |
|
||
| Δ | Residual energy uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 622. Stark Effect (Linear + Quadratic)
|
||
**Domain:** Atomic & Molecular Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy difference |
|
||
| Ψ | Quantum mechanical theory |
|
||
| B | Electric field component |
|
||
| C | Principal quantum number and polarizability |
|
||
| Δ | Residual energy uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 623. Hyperfine Structure (Fermi Contact Interaction)
|
||
**Domain:** Atomic & Molecular Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hyperfine Structure Energy Shift |
|
||
| Ψ | Fermi Contact Interaction Theory |
|
||
| B | Magnetic Moment (μ_B) |
|
||
| C | Nuclear Spin (I), Electron Spin (S) |
|
||
| Δ | Residual Error in Hyperfine Splitting |
|
||
|
||
---
|
||
|
||
## Eq 624. Born-Oppenheimer Approximation (Molecular Hamiltonian Separation)
|
||
**Domain:** Atomic & Molecular Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Molecular Hamiltonian |
|
||
| Ψ | Electronic Schrödinger equation |
|
||
| B | Conserved basis of atomic orbitals |
|
||
| C | Nuclear geometry and motion parameters |
|
||
| Δ | Residual nuclear-electronic coupling error |
|
||
|
||
---
|
||
|
||
## Eq 629. Rydberg Formula (Atomic Series Limits)
|
||
**Domain:** Atomic & Molecular Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Rydberg energy or frequency |
|
||
| Ψ | Quantum mechanics theory |
|
||
| B | Principal quantum number (n) |
|
||
| C | Azimuthal quantum number (l) and electron configuration |
|
||
| Δ | Quantum defect correction |
|
||
|
||
---
|
||
|
||
## Eq 632. Power-Law Fluid (Ostwald-de Waele Model)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shear stress |
|
||
| Ψ | Rheological theory |
|
||
| B | Strain rate |
|
||
| C | Power-law exponent (n) |
|
||
| Δ | Viscosity error |
|
||
|
||
---
|
||
|
||
## Eq 633. Bingham Plastic (Yield Stress Fluid)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Yield stress |
|
||
| Ψ | Rheological theory |
|
||
| B | Shear stress component |
|
||
| C | Plastic viscosity parameter |
|
||
| Δ | Flow threshold limit |
|
||
|
||
---
|
||
|
||
## Eq 634. Herschel-Bulkley Model (Yield + Power-Law)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shear stress |
|
||
| Ψ | Rheological model |
|
||
| B | Viscosity component |
|
||
| C | Flow rate exponent |
|
||
| Δ | Yield stress threshold |
|
||
|
||
---
|
||
|
||
## Eq 635. Carreau-Yasuda Model (Shear-Thinning With Zero/Infinite Limits)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Shear viscosity |
|
||
| Ψ | Rheological theory |
|
||
| B | Conserved basis of fluid dynamics |
|
||
| C | Dynamic shear rate and exponent parameters |
|
||
| Δ | Residual error in model prediction |
|
||
|
||
---
|
||
|
||
## Eq 636. Maxwell Viscoelastic Model (Liquid)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Strain rate |
|
||
| Ψ | Maxwell viscoelastic model |
|
||
| B | Stress |
|
||
| C | Relaxation time |
|
||
| Δ | Viscous dissipation |
|
||
|
||
---
|
||
|
||
## Eq 637. Kelvin-Voigt Model (Viscoelastic Solid)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stress |
|
||
| Ψ | Viscoelastic theory |
|
||
| B | Strain energy |
|
||
| C | Retardation time |
|
||
| Δ | Noise or measurement error |
|
||
|
||
---
|
||
|
||
## Eq 638. Generalized Maxwell / Wiechert Model (Multiple Relaxation Times)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Relaxation modulus |
|
||
| Ψ | Rheological theory or model |
|
||
| B | Conserved basis of stress components |
|
||
| C | Dynamic viscosity and relaxation times |
|
||
| Δ | Residual error in relaxation spectrum |
|
||
|
||
---
|
||
|
||
## Eq 639. Cox-Merz Rule (Steady vs Dynamic Viscosity Equivalence)
|
||
**Domain:** Rheology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Steady viscosity |
|
||
| Ψ | Rheological theory |
|
||
| B | Conserved basis of fluid dynamics |
|
||
| C | Dynamic frequency or shear rate |
|
||
| Δ | Residual error in measurement |
|
||
|
||
---
|
||
|
||
## Eq 641. Amontons-Coulomb Friction Laws
|
||
**Domain:** Tribology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Frictional force F_f |
|
||
| Ψ | Tribological theory or mechanism |
|
||
| B | Normal force N (macroscopic) |
|
||
| C | Coefficient of friction μ (variable parameter) |
|
||
| Δ | Residual error in friction model |
|
||
|
||
---
|
||
|
||
## Eq 642. Archard's Law (Adhesive Wear)
|
||
**Domain:** Tribology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Volumetric wear rate |
|
||
| Ψ | Frictional contact theory |
|
||
| B | Normal force component |
|
||
| C | Sliding distance and velocity |
|
||
| Δ | Material hardness variability |
|
||
|
||
---
|
||
|
||
## Eq 643. Stribeck Curve (Lubrication Regimes)
|
||
**Domain:** Tribology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Friction coefficient |
|
||
| Ψ | Lubrication theory |
|
||
| B | Surface roughness |
|
||
| C | Speed and geometry |
|
||
| Δ | Residual frictional force |
|
||
|
||
---
|
||
|
||
## Eq 644. Reynolds Equation (Thin-Film Lubrication)
|
||
**Domain:** Tribology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Pressure gradient |
|
||
| Ψ | Navier-Stokes equations |
|
||
| B | Fluid viscosity |
|
||
| C | Film thickness and velocity |
|
||
| Δ | Turbulence and measurement error |
|
||
|
||
---
|
||
|
||
## Eq 645. Hertzian Contact (Elastic Contact Between Curved Surfaces)
|
||
**Domain:** Continuum Mechanics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Hertzian contact pressure |
|
||
| Ψ | Continuum mechanics theory |
|
||
| B | Elastic modulus and Poisson's ratio |
|
||
| C | Curved surface geometry parameters |
|
||
| Δ | Residual stress and deformation error |
|
||
|
||
---
|
||
|
||
## Eq 646. Elastohydrodynamic Lubrication (EHL) Film Thickness (Hamrock-Dowson)
|
||
**Domain:** Tribology
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | EHL Film Thickness |
|
||
| Ψ | Hamrock-Dowson Theory |
|
||
| B | Conserved Basis (Energy) |
|
||
| C | Dynamic Context (Viscosity, Speed, Pressure) |
|
||
| Δ | Residual Error (Noise, Limitations) |
|
||
|
||
---
|
||
|
||
## Eq 651. Bagnold Scaling (Granular Flow Rheology - Inertial)
|
||
**Domain:** Granular Materials
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | τ |
|
||
| Ψ | Inertial regime theory |
|
||
| B | ρ_p d² |
|
||
| C | γ̇, η_f |
|
||
| Δ | None (inertial regime assumed) |
|
||
|
||
---
|
||
|
||
## Eq 653. Coulomb Blockade Condition (Single-Electron Transistor)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Charging energy |
|
||
| Ψ | Quantum mechanics |
|
||
| B | Electron charge |
|
||
| C | Capacitance |
|
||
| Δ | Thermal noise |
|
||
|
||
---
|
||
|
||
## Eq 654. Landauer Formula (Ballistic Conductance)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Conductance |
|
||
| Ψ | Quantum theory |
|
||
| B | Electron basis |
|
||
| C | Temperature and voltage parameters |
|
||
| Δ | Thermal noise limit |
|
||
|
||
---
|
||
|
||
## Eq 655. Kondo Effect (Resistance Minimum in Dilute Magnetic Alloys)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Resistance |
|
||
| Ψ | Kondo Mechanism |
|
||
| B | Magnetic Impurity Spin |
|
||
| C | Conduction Electron Density |
|
||
| Δ | Thermal Fluctuation Noise |
|
||
|
||
---
|
||
|
||
## Eq 656. 2D Electron Gas Density of States (Constant)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | 2D Electron Gas Density of States |
|
||
| Ψ | Quantum Mechanics Theory |
|
||
| B | Electron Mass / Fundamental Component |
|
||
| C | Energy (E) / Variable Parameter |
|
||
| Δ | Zero / No Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 657. Graphene Dirac Dispersion (Massless 2D Fermions)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy |
|
||
| Ψ | Dirac Theory |
|
||
| B | Conserved Momentum |
|
||
| C | Wave Vector k |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 658. Quantum Confinement (Infinite Well — Nanowire/Quantum Well)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Energy levels |
|
||
| Ψ | Quantum confinement theory |
|
||
| B | Particle mass and charge |
|
||
| C | Well width and height |
|
||
| Δ | Zero-point energy fluctuations |
|
||
|
||
---
|
||
|
||
## Eq 659. Casimir Force (Between Ideal Plates, Nanoscale)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Casimir Force |
|
||
| Ψ | Zero-point EM fluctuations |
|
||
| B | Electromagnetic field |
|
||
| C | Plate separation (d) |
|
||
| Δ | Fundamental limit |
|
||
|
||
---
|
||
|
||
## Eq 660. DLVO Theory (Colloidal Nanoparticle Stability)
|
||
**Domain:** Nanoscience
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Total potential energy of colloidal nanoparticle |
|
||
| Ψ | DLVO theory, van der Waals and electric double-layer interactions |
|
||
| B | van der Waals attraction and electric double-layer repulsion |
|
||
| C | Nanoparticle diameter (d) and surface properties |
|
||
| Δ | Residual error in potential energy calculation |
|
||
|
||
---
|
||
|
||
## Eq 663. No-Cloning Theorem
|
||
**Domain:** Quantum Information
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 665. Deutsch-Jozsa Algorithm Speedup
|
||
**Domain:** Quantum Information
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 666. Grover's Search Algorithm (Quadratic Speedup)
|
||
**Domain:** Quantum Information
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 667. Shor's Factoring Algorithm
|
||
**Domain:** Quantum Information
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Quantum period-finding output |
|
||
| Ψ | Quantum operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise limit |
|
||
|
||
---
|
||
|
||
## Eq 668. Concatenated Quantum Error Correction Threshold Theorem
|
||
**Domain:** Quantum Information
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Observable output |
|
||
| Ψ | Operator or underlying theory |
|
||
| B | Conserved basis or fundamental component |
|
||
| C | Dynamic context or variable parameter |
|
||
| Δ | Residual error or noise |
|
||
|
||
---
|
||
|
||
## Eq 669. Lorenz Equations (Deterministic Chaos)
|
||
**Domain:** Nonlinear Dynamics & Chaos
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | State variables x, y, z |
|
||
| Ψ | Lorenz Equations theory |
|
||
| B | Conserved basis: energy, momentum |
|
||
| C | Dynamic context: parameters σ, β, ρ |
|
||
| Δ | Residual error: noise, numerical precision |
|
||
|
||
---
|
||
|
||
## Eq 671. Lyapunov Exponent (Chaos Diagnostic)
|
||
**Domain:** Nonlinear Dynamics & Chaos
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Lyapunov Exponent |
|
||
| Ψ | Nonlinear Dynamics Theory |
|
||
| B | Conserved Basis of Motion |
|
||
| C | Dynamic Context of Variable Parameters |
|
||
| Δ | Residual Error or Noise |
|
||
|
||
---
|
||
|
||
## Eq 672. KAM Theorem (Kolmogorov-Arnold-Moser)
|
||
**Domain:** Nonlinear Dynamics & Chaos
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Frequency ratio |
|
||
| Ψ | Hamiltonian system |
|
||
| B | Conserved energy |
|
||
| C | Perturbation parameter |
|
||
| Δ | Residual error |
|
||
|
||
---
|
||
|
||
## Eq 673. Kuramoto Model (Synchronization of Coupled Oscillators)
|
||
**Domain:** Nonlinear Dynamics & Chaos
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Phase difference between oscillators |
|
||
| Ψ | Kuramoto model underlying theory |
|
||
| B | Conserved angular frequency ω_i |
|
||
| C | Coupling strength K and oscillator number N |
|
||
| Δ | Residual phase noise or error |
|
||
|
||
---
|
||
|
||
## Eq 675. Bloch Equations (NMR/MRI Signal)
|
||
**Domain:** Medical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | NMR/MRI Signal |
|
||
| Ψ | Bloch Equations Mechanism |
|
||
| B | Magnetic Field Component |
|
||
| C | Spin Relaxation Time Parameters |
|
||
| Δ | Residual Magnetic Noise |
|
||
|
||
---
|
||
|
||
## Eq 676. Larmor Frequency (NMR Precession)
|
||
**Domain:** Medical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Larmor Frequency |
|
||
| Ψ | Magnetic Resonance Theory |
|
||
| B | Magnetic Field Strength |
|
||
| C | Proton Spin Orientation |
|
||
| Δ | Residual Magnetic Noise |
|
||
|
||
---
|
||
|
||
## Eq 677. Beer-Lambert Law (X-ray/γ-ray Attenuation, CT)
|
||
**Domain:** Medical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Intensity of transmitted X-ray/γ-ray |
|
||
| Ψ | Beer-Lambert Law operator/mechanism |
|
||
| B | Mass attenuation coefficient (μ/p) |
|
||
| C | Thickness and density of material (x, n, α) |
|
||
| Δ | Residual error/noise in Hounsfield units |
|
||
|
||
---
|
||
|
||
## Eq 679. Ultrasound Wave Equation (Medical Imaging)
|
||
**Domain:** Medical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Ultrasound wave intensity |
|
||
| Ψ | Acoustic propagation theory |
|
||
| B | Pressure waves (sound) |
|
||
| C | Tissue properties and geometry |
|
||
| Δ | Reflection noise and artifacts |
|
||
|
||
---
|
||
|
||
## Eq 680. Attenuation of Ultrasound in Tissue
|
||
**Domain:** Medical Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Attenuated ultrasound intensity |
|
||
| Ψ | Ultrasound propagation theory |
|
||
| B | Sound wave frequency component |
|
||
| C | Tissue attenuation coefficient and exponent |
|
||
| Δ | Measurement noise or error |
|
||
|
||
---
|
||
|
||
## Eq 681. Linear-Quadratic (LQ) Model (Radiation Therapy Cell Survival)
|
||
**Domain:** Radiation Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Cell survival probability |
|
||
| Ψ | Radiation therapy model mechanism |
|
||
| B | Linear-quadratic dose component |
|
||
| C | Variable α/β ratio and total dose D |
|
||
| Δ | Residual error in cell survival prediction |
|
||
|
||
---
|
||
|
||
## Eq 682. Bragg Peak (Proton/Ion Beam Depth-Dose)
|
||
**Domain:** Radiation Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Depth-Dose Profile |
|
||
| Ψ | Proton/Ion Beam Interaction Theory |
|
||
| B | Kinetic Energy of Incident Particles |
|
||
| C | Atomic Number and Mass of Target Material |
|
||
| Δ | Residual Scattering and Absorption Errors |
|
||
|
||
---
|
||
|
||
## Eq 683. Bethe-Bloch Formula (Stopping Power for Charged Particles)
|
||
**Domain:** Radiation Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Stopping Power |
|
||
| Ψ | Bethe-Bloch Theory |
|
||
| B | Kinetic Energy |
|
||
| C | Particle Velocity and Charge |
|
||
| Δ | Residual Error |
|
||
|
||
---
|
||
|
||
## Eq 684. Dosimetry: Cavity Theory (Bragg-Gray / Spencer-Attix)
|
||
**Domain:** Radiation Physics
|
||
| Symbol | Mapping |
|
||
|--------|---------|
|
||
| Ω | Dose to medium from wall/gas cavity |
|
||
| Ψ | Cavity theory (Bragg-Gray / Spencer-Attix) |
|
||
| B | Conserved dose in wall or gas cavity |
|
||
| C | Variable density and composition of wall/gas cavity |
|
||
| Δ | Residual error due to measurement uncertainty |
|
||
|
||
---
|
||
|
||
## Eq 687. Solar Cell I-V Characteristic (One-Diode Model)
|
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Current |
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| Ψ | Solar Cell Mechanism |
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| B | Electron Charge |
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| C | Temperature and Resistance |
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| Δ | Thermal Noise |
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---
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## Eq 688. Fill Factor (Solar Cell)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Fill Factor |
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| Ψ | Solar Cell Mechanism |
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| B | Conserved Basis (Energy) |
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| C | Dynamic Context (Temperature, Angle) |
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| Δ | Residual Error (Thermal Noise) |
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---
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## Eq 689. Betz Limit (Wind Turbine Maximum Efficiency)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Maximum efficiency of wind turbine |
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| Ψ | Wind energy conversion mechanism |
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| B | Kinetic power component |
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| C | Turbine design parameters (n, α) |
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| Δ | Fundamental limit on extraction |
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---
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## Eq 690. Rankine Cycle Efficiency (Steam Power Plant)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Efficiency |
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| Ψ | Thermodynamic process |
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| B | Heat energy |
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| C | Temperature ratio |
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| Δ | Losses and inefficiencies |
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---
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## Eq 691. Brayton Cycle Efficiency (Gas Turbine / Jet Engine)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Efficiency |
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| Ψ | Thermodynamic theory |
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| B | Heat capacity ratio |
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| C | Compressor pressure ratio and specific heat ratio |
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| Δ | Residual energy loss |
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---
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## Eq 692. Nernst Equation (Fuel Cell Open-Circuit Voltage)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Open-Circuit Voltage |
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| Ψ | Nernst Equation Mechanism |
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| B | Conserved Charge (nF) |
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| C | Variable Parameters (θ, α) |
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| Δ | Residual Error Terms |
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---
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## Eq 693. Parker Spiral (Interplanetary Magnetic Field)
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**Domain:** Space Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Interplanetary Magnetic Field strength |
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| Ψ | Parker Spiral theory mechanism |
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| B | Conserved magnetic field component |
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| C | Solar wind velocity parameter (slow/fast) |
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| Δ | Residual error in magnetic field prediction |
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---
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## Eq 694. Chapman-Ferraro Model (Magnetopause Standoff Distance)
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**Domain:** Space Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Magnetopause Standoff Distance |
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| Ψ | Chapman-Ferraro Theory |
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| B | Earth's Magnetic Field |
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| C | Solar Wind Dynamic Pressure |
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| Δ | Residual Error |
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---
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## Eq 695. Alfvén Mach Number (Solar Wind — Magnetosphere Coupling)
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**Domain:** Space Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Alfvén Mach Number |
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| Ψ | Solar Wind - Magnetosphere Coupling Theory |
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| B | Magnetic Field Strength |
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| C | Solar Wind Velocity and Density |
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| Δ | Residual Error in Measurement |
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---
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## Eq 699. Auroral Electron Acceleration (Knight Relation)
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**Domain:** Space Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | j_∥ |
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| Ψ | Auroral Electron Acceleration Mechanism |
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| B | Field-aligned Conductance (K) |
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| C | Critical Voltage (V_c) and Parallel Potential Drop |
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| Δ | Residual Error in Predicted Quantity |
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---
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## Eq 710. NTU-Effectiveness Method (Heat Exchanger Design)
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**Domain:** Engineering Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Effectiveness |
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| Ψ | Heat Transfer Mechanism |
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| B | Thermal Capacity |
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| C | Heat Exchanger Configuration |
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| Δ | Residual Temperature Difference |
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---
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## Eq 713. Nyquist Stability Criterion
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**Domain:** Engineering Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Open-loop transfer function |
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| Ψ | Operator for stability analysis |
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| B | Conserved basis of system dynamics |
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| C | Dynamic context of variable parameters |
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| Δ | Residual error or noise in the system |
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---
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## Eq 714. Young-Laplace Equation (Capillary Pressure, Droplets/Bubbles)
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**Domain:** Surface Science
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Capillary pressure |
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| Ψ | Surface tension theory |
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| B | Interfacial energy |
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| C | Curvature radius |
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| Δ | Residual surface stress |
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---
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## Eq 725. Schottky Diode I-V (Thermionic Emission Model)
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**Domain:** Semiconductor Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Current |
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| Ψ | Thermionic emission model |
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| B | Electron mass |
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| C | Effective temperature |
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| Δ | Junction noise |
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---
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## Eq 726. Solar Cell Quantum Efficiency (External/Internal)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Solar Cell Quantum Efficiency |
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| Ψ | Photovoltaic Mechanism or Theory |
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| B | Conserved Basis of Energy |
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| C | Dynamic Context of Solar Radiation |
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| Δ | Residual Error in Measurement |
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---
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## Eq 728. Tandem Solar Cell Current-Matching Condition
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Tandem Solar Cell Current |
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| Ψ | Solar Cell Mechanism |
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| B | Conserved Photons |
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| C | Variable Illumination Parameters |
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| Δ | Residual Energy Loss |
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---
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## Eq 731. Peltier Effect (Thermoelectric Heat Pumping)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Thermoelectric current |
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| Ψ | Peltier effect mechanism |
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| B | Heat flux basis |
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| C | Temperature gradient parameter |
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| Δ | Internal thermal resistance |
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---
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## Eq 733. Peukert's Law (Battery Capacity vs Discharge Rate)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Battery capacity |
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| Ψ | Discharge rate mechanism |
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| B | Electrical charge |
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| C | Current (I) |
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| Δ | Energy loss |
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---
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## Eq 734. Ragone Plot (Energy vs Power Density)
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**Domain:** Energy Physics
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| Symbol | Mapping |
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|--------|---------|
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| Ω | Specific energy vs specific power |
|
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| Ψ | Energy storage mechanisms |
|
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| B | Conserved energy basis |
|
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| C | Variable power density parameter |
|
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| Δ | Fundamental efficiency limit |
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|
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---
|
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## Eq 735. Magnetorheological Fluid (Bingham Plastic with Field-Dependent Yield)
|
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**Domain:** Rheology
|
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| Symbol | Mapping |
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|--------|---------|
|
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| Ω | Shear stress |
|
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| Ψ | Magnetorheological fluid theory |
|
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| B | Applied magnetic field |
|
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| C | Yield stress parameterization |
|
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| Δ | Measurement uncertainty |
|
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|
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---
|
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## Eq 736. Electrorheological Fluid (Field-Dependent Viscosity)
|
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**Domain:** Rheology
|
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| Symbol | Mapping |
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|--------|---------|
|
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| Ω | Viscosity |
|
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| Ψ | Electrorheological theory |
|
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| B | Electric field |
|
||
| C | Exponent (n) |
|
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| Δ | Residual error |
|
||
|
||
---
|
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|
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## Eq 737. Phononic Crystal Band Gap (Bragg Scattering of Sound)
|
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**Domain:** Metamaterials
|
||
| Symbol | Mapping |
|
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|--------|---------|
|
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| Ω | Phononic Crystal Band Gap |
|
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| Ψ | Operator for Bragg Scattering of Sound |
|
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| B | Conserved Basis of Elastic Constants |
|
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| C | Dynamic Context of Variable Frequency and Angle |
|
||
| Δ | Residual Error in Acoustic Wave Propagation |
|
||
|
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---
|