Research-Stack/5-Applications/cff/eigenbasis_review.json
2026-05-11 22:18:31 -05:00

874 lines
No EOL
24 KiB
JSON

{
"eigenvalue_range": [
1.3999779272653148,
8.609567621380449e-18
],
"isolated_equations": [],
"new_equations": [
{
"chiral_new": "left_handed_mass_bias",
"domain": "Classical Mechanics",
"eq_id": 19,
"name": "Damped Harmonic Oscillator",
"spectral_mass": 1.053541
}
],
"num_edges": 64,
"num_eigenvalues": 79,
"num_isolated": 0,
"num_new_equations": 1,
"num_nodes": 79,
"num_shifted": 51,
"shifted_equations": [
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Biophysics",
"dominant_mode": "1",
"eigenvalue": -1.2785,
"eq_id": 593,
"layer": 4,
"name": "Nernst Equation (Membrane Equilibrium Potential)",
"spectral_mass": 2.699023
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Statistical Mechanics",
"dominant_mode": "1",
"eigenvalue": -1.2785,
"eq_id": 300,
"layer": 2,
"name": "Gibbs Entropy Formula",
"spectral_mass": 2.680224
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "right_handed_vector_bias",
"domain": "Thermodynamics",
"dominant_mode": "1",
"eigenvalue": -1.2785,
"eq_id": 68,
"layer": 1,
"name": "Second Law of Thermodynamics",
"spectral_mass": 2.632046
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Statistical Mechanics",
"dominant_mode": "1",
"eigenvalue": -1.2785,
"eq_id": 296,
"layer": 2,
"name": "Boltzmann Distribution",
"spectral_mass": 2.609717
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Cosmology",
"dominant_mode": "7",
"eigenvalue": -1.0101,
"eq_id": 164,
"layer": 2,
"name": "CMB Blackbody Spectrum",
"spectral_mass": 2.550659
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Surface Science",
"dominant_mode": "24",
"eigenvalue": -0.7071,
"eq_id": 451,
"layer": 2,
"name": "Kelvin Equation (Capillary Condensation)",
"spectral_mass": 2.436894
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Material Physics",
"dominant_mode": "17",
"eigenvalue": 0.7265,
"eq_id": 502,
"layer": 2,
"name": "Nernst Equation (Electrode Potential)",
"spectral_mass": 2.421445
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Plasma Physics",
"dominant_mode": "7",
"eigenvalue": -1.0101,
"eq_id": 272,
"layer": 2,
"name": "MHD Induction Equation",
"spectral_mass": 2.300064
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Quantum Mechanics",
"dominant_mode": "29",
"eigenvalue": -0.7071,
"eq_id": 102,
"layer": 1,
"name": "Spin-\u00bd Algebra (Pauli Matrices)",
"spectral_mass": 2.277911
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Condensed Matter",
"dominant_mode": "29",
"eigenvalue": -0.7071,
"eq_id": 219,
"layer": 2,
"name": "Bloch's Theorem",
"spectral_mass": 2.192643
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Optics",
"dominant_mode": "27",
"eigenvalue": -0.7071,
"eq_id": 203,
"layer": 2,
"name": "Rayleigh Criterion (Resolution Limit)",
"spectral_mass": 2.183978
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Biophysics",
"dominant_mode": "9",
"eigenvalue": -0.9036,
"eq_id": 597,
"layer": 4,
"name": "Cable Equation (Neuronal Dendrite/Axon)",
"spectral_mass": 2.089467
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Quantum Mechanics",
"dominant_mode": "7",
"eigenvalue": -1.0101,
"eq_id": 86,
"layer": 1,
"name": "Planck's Blackbody Radiation Law",
"spectral_mass": 2.087887
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Polymer Physics",
"dominant_mode": "33",
"eigenvalue": -0.7071,
"eq_id": 438,
"layer": 2,
"name": "Williams-Landel-Ferry (WLF) Equation",
"spectral_mass": 2.079654
},
{
"chiral_new": "chiral_scarred",
"chiral_old": "left_handed_mass_bias",
"domain": "Cosmology",
"dominant_mode": "40",
"eigenvalue": 0.5,
"eq_id": 168,
"layer": 2,
"name": "Dark Energy Equation of State",
"spectral_mass": 2.069697
},
{
"chiral_new": "chiral_scarred",
"chiral_old": "left_handed_mass_bias",
"domain": "Extremophile Bounds",
"dominant_mode": "40",
"eigenvalue": 0.5,
"eq_id": 745,
"layer": 4,
"name": "Perchlorate Brine Limit (Don Juan Pond: -50\u00b0C liquid water maintained by CaCl\u2082 e",
"spectral_mass": 2.062542
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Electromagnetism",
"dominant_mode": "7",
"eigenvalue": -1.0101,
"eq_id": 38,
"layer": 1,
"name": "Maxwell's Equations (Differential)",
"spectral_mass": 2.039742
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Nuclear Physics",
"dominant_mode": "3",
"eigenvalue": -1.1176,
"eq_id": 241,
"layer": 2,
"name": "Radioactive Decay Law",
"spectral_mass": 1.993108
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Thermodynamics",
"dominant_mode": "28",
"eigenvalue": -0.7071,
"eq_id": 69,
"layer": 1,
"name": "Third Law of Thermodynamics",
"spectral_mass": 1.928032
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Biophysics",
"dominant_mode": "0",
"eigenvalue": 1.4,
"eq_id": 773,
"layer": 4,
"name": "Optimal DNA Sequence Compression (PIST/CFF Biological Analogue)",
"spectral_mass": 1.925629
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Material Physics",
"dominant_mode": "26",
"eigenvalue": -0.7071,
"eq_id": 464,
"layer": 2,
"name": "Fick's First Law (Steady-State Diffusion)",
"spectral_mass": 1.808281
},
{
"chiral_new": "right_handed_vector_bias",
"chiral_old": "achiral_stable",
"domain": "Continuum Mechanics",
"dominant_mode": "11",
"eigenvalue": -0.866,
"eq_id": 316,
"layer": 2,
"name": "Euler-Bernoulli Beam Equation",
"spectral_mass": 1.800321
},
{
"chiral_new": "right_handed_vector_bias",
"chiral_old": "achiral_stable",
"domain": "Fluid Dynamics",
"dominant_mode": "11",
"eigenvalue": -0.866,
"eq_id": 181,
"layer": 2,
"name": "Poiseuille Flow (Hagen-Poiseuille)",
"spectral_mass": 1.800321
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Electromagnetism",
"dominant_mode": "24",
"eigenvalue": -0.7071,
"eq_id": 65,
"layer": 1,
"name": "Magnetic Susceptibility",
"spectral_mass": 1.723144
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Electromagnetism",
"dominant_mode": "4",
"eigenvalue": 1.083,
"eq_id": 46,
"layer": 1,
"name": "Kirchhoff's Current Law (KCL)",
"spectral_mass": 1.71528
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Optics",
"dominant_mode": "22",
"eigenvalue": 0.7071,
"eq_id": 200,
"layer": 2,
"name": "Fresnel Equations (Amplitude Reflection/Transmission)",
"spectral_mass": 1.684137
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Radical Adaptations",
"dominant_mode": "1",
"eigenvalue": -1.2785,
"eq_id": 754,
"layer": 4,
"name": "Primary Endosymbiosis \u2014 Mitochondrial and Plastid Acquisition, the Singular Evol",
"spectral_mass": 1.653077
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Quantum Mechanics",
"dominant_mode": "29",
"eigenvalue": -0.7071,
"eq_id": 104,
"layer": 1,
"name": "Dirac Equation",
"spectral_mass": 1.610726
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Extremophile Bounds",
"dominant_mode": "0",
"eigenvalue": 1.4,
"eq_id": 744,
"layer": 4,
"name": "Long-Term Dormancy Survival Limit (~250 million years in salt; ~100 million year",
"spectral_mass": 1.577049
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Quantum Mechanics",
"dominant_mode": "29",
"eigenvalue": -0.7071,
"eq_id": 94,
"layer": 1,
"name": "Time-Independent Schr\u00f6dinger Equation",
"spectral_mass": 1.550433
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Optics",
"dominant_mode": "27",
"eigenvalue": -0.7071,
"eq_id": 191,
"layer": 2,
"name": "Snell's Law of Refraction",
"spectral_mass": 1.544305
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "right_handed_vector_bias",
"domain": "Information Theory",
"dominant_mode": "2",
"eigenvalue": 1.2785,
"eq_id": 324,
"layer": 4,
"name": "Landauer's Principle",
"spectral_mass": 1.476851
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Nuclear Physics",
"dominant_mode": "1",
"eigenvalue": -1.2785,
"eq_id": 247,
"layer": 2,
"name": "Four-Factor Formula (Nuclear Reactor)",
"spectral_mass": 1.476851
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Polymer Physics",
"dominant_mode": "33",
"eigenvalue": -0.7071,
"eq_id": 443,
"layer": 2,
"name": "Flory-Fox Equation (T_g vs Molecular Weight)",
"spectral_mass": 1.470538
},
{
"chiral_new": "right_handed_vector_bias",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "11",
"eigenvalue": -0.866,
"eq_id": 766,
"layer": 4,
"name": "Pterosaur Giant Flight \u2014 Quetzalcoatlus 11m Wingspan, Estimated 200-250 kg, Larg",
"spectral_mass": 1.434296
},
{
"chiral_new": "right_handed_vector_bias",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "12",
"eigenvalue": 0.866,
"eq_id": 764,
"layer": 4,
"name": "Sauropod Hemodynamics \u2014 Pumping Blood 8-10m Vertically Against Gravity, the Larg",
"spectral_mass": 1.434296
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Thermodynamics",
"dominant_mode": "28",
"eigenvalue": -0.7071,
"eq_id": 70,
"layer": 1,
"name": "Ideal Gas Law",
"spectral_mass": 1.363325
},
{
"chiral_new": "right_handed_vector_bias",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "45",
"eigenvalue": 0.5,
"eq_id": 752,
"layer": 4,
"name": "Biological Cavitation / Sonoluminescence \u2014 Pistol Shrimp, Mantis Shrimp",
"spectral_mass": 1.329916
},
{
"chiral_new": "right_handed_vector_bias",
"chiral_old": "achiral_stable",
"domain": "Fluid Dynamics",
"dominant_mode": "45",
"eigenvalue": 0.5,
"eq_id": 176,
"layer": 2,
"name": "Navier-Stokes Equation (Incompressible)",
"spectral_mass": 1.329916
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Material Physics",
"dominant_mode": "26",
"eigenvalue": -0.7071,
"eq_id": 465,
"layer": 2,
"name": "Fick's Second Law (Time-Dependent Diffusion)",
"spectral_mass": 1.278648
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Optics",
"dominant_mode": "22",
"eigenvalue": 0.7071,
"eq_id": 197,
"layer": 2,
"name": "Single-Slit Diffraction",
"spectral_mass": 1.190865
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "right_handed_vector_bias",
"domain": "Classical Mechanics",
"dominant_mode": "4",
"eigenvalue": 1.083,
"eq_id": 4,
"layer": 1,
"name": "Hamilton-Jacobi Equation",
"spectral_mass": 1.175209
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "achiral_stable",
"domain": "Extremophile Bounds",
"dominant_mode": "4",
"eigenvalue": 1.083,
"eq_id": 738,
"layer": 4,
"name": "Upper Temperature Limit of Carbon-Based Life (~122\u00b0C at depth, ~113\u00b0C at surface",
"spectral_mass": 1.175209
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Quantum Information",
"dominant_mode": "46",
"eigenvalue": 0.5,
"eq_id": 668,
"layer": 4,
"name": "Concatenated Quantum Error Correction Threshold Theorem",
"spectral_mass": 1.148621
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "14",
"eigenvalue": -0.809,
"eq_id": 748,
"layer": 4,
"name": "Biological Immortality via Cellular Transdifferentiation \u2014 Turritopsis dohrnii (",
"spectral_mass": 1.08631
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Astrophysics",
"dominant_mode": "15",
"eigenvalue": -0.809,
"eq_id": 254,
"layer": 2,
"name": "TOV Limit (Neutron Star Maximum Mass)",
"spectral_mass": 1.08631
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "48",
"eigenvalue": 0.5,
"eq_id": 757,
"layer": 4,
"name": "Biological Sonar \u2014 Echolocation Convergent Evolution in Bats and Toothed Whales ",
"spectral_mass": 1.077442
},
{
"chiral_new": "left_handed_mass_bias",
"chiral_old": "unknown",
"domain": "Classical Mechanics",
"dominant_mode": "0",
"eigenvalue": 1.4,
"eq_id": 19,
"layer": 1,
"name": "Damped Harmonic Oscillator",
"spectral_mass": 1.053541
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "36",
"eigenvalue": 0.6296,
"eq_id": 767,
"layer": 4,
"name": "Megalodon Bite Force \u2014 108,000-182,000 N (~11-19 tonnes-force), Largest Bite For",
"spectral_mass": 0.92388
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Extremophile Bounds",
"dominant_mode": "5",
"eigenvalue": 1.0505,
"eq_id": 739,
"layer": 4,
"name": "Maximum Hydrostatic Pressure for Cell Division (~100-200 MPa confirmed; ~1 GPa s",
"spectral_mass": 0.92388
},
{
"chiral_new": "achiral_stable",
"chiral_old": "left_handed_mass_bias",
"domain": "Radical Adaptations",
"dominant_mode": "5",
"eigenvalue": 1.0505,
"eq_id": 755,
"layer": 4,
"name": "Spider Silk \u2014 Tensile Strength Exceeding Steel, Toughness Exceeding Kevlar, Mole",
"spectral_mass": 0.92388
}
],
"spectral_gap_max_idx": 2,
"spectral_gap_max_value": -0.16095547241916908,
"top_eigenmodes": [
{
"eigenvalue": 1.4,
"mode": 0,
"num_nodes_below_threshold": 10,
"top_nodes": [
{
"coordinate": 0.839756,
"eq_id": 773,
"name": "Optimal DNA Sequence Compression (PIST/CFF Biological Analog"
},
{
"coordinate": 0.37185,
"eq_id": 744,
"name": "Long-Term Dormancy Survival Limit (~250 million years in sal"
},
{
"coordinate": 0.299918,
"eq_id": 19,
"name": "Damped Harmonic Oscillator"
},
{
"coordinate": 0.201408,
"eq_id": 241,
"name": "Radioactive Decay Law"
},
{
"coordinate": 0.120151,
"eq_id": 605,
"name": "Arrhenius Equation (Chemical Reaction Rate)"
},
{
"coordinate": 0.071933,
"eq_id": 741,
"name": "Maximum Ionizing Radiation Dose Survived (Deinococcus radiod"
},
{
"coordinate": 0.049186,
"eq_id": 46,
"name": "Kirchhoff's Current Law (KCL)"
},
{
"coordinate": 0.042912,
"eq_id": 4,
"name": "Hamilton-Jacobi Equation"
},
{
"coordinate": 0.042912,
"eq_id": 738,
"name": "Upper Temperature Limit of Carbon-Based Life (~122\u00b0C at dept"
},
{
"coordinate": 0.017567,
"eq_id": 758,
"name": "Explosive Biochemistry \u2014 Bombardier Beetle, Skunk Spray, Ven"
}
]
},
{
"eigenvalue": -1.2785,
"mode": 1,
"num_nodes_below_threshold": 19,
"top_nodes": [
{
"coordinate": -0.571024,
"eq_id": 68,
"name": "Second Law of Thermodynamics"
},
{
"coordinate": 0.468627,
"eq_id": 593,
"name": "Nernst Equation (Membrane Equilibrium Potential)"
},
{
"coordinate": 0.281256,
"eq_id": 296,
"name": "Boltzmann Distribution"
},
{
"coordinate": 0.263633,
"eq_id": 300,
"name": "Gibbs Entropy Formula"
},
{
"coordinate": -0.227656,
"eq_id": 597,
"name": "Cable Equation (Neuronal Dendrite/Axon)"
},
{
"coordinate": 0.223313,
"eq_id": 247,
"name": "Four-Factor Formula (Nuclear Reactor)"
},
{
"coordinate": 0.223313,
"eq_id": 324,
"name": "Landauer's Principle"
},
{
"coordinate": -0.216358,
"eq_id": 502,
"name": "Nernst Equation (Electrode Potential)"
},
{
"coordinate": -0.183268,
"eq_id": 754,
"name": "Primary Endosymbiosis \u2014 Mitochondrial and Plastid Acquisitio"
},
{
"coordinate": -0.148165,
"eq_id": 742,
"name": "Absolute Minimum Metabolic Rate for Sustained Life (~10\u207b\u00b3 to"
}
]
},
{
"eigenvalue": 1.2785,
"mode": 2,
"num_nodes_below_threshold": 19,
"top_nodes": [
{
"coordinate": -0.571024,
"eq_id": 68,
"name": "Second Law of Thermodynamics"
},
{
"coordinate": -0.468627,
"eq_id": 593,
"name": "Nernst Equation (Membrane Equilibrium Potential)"
},
{
"coordinate": -0.281256,
"eq_id": 296,
"name": "Boltzmann Distribution"
},
{
"coordinate": -0.263633,
"eq_id": 300,
"name": "Gibbs Entropy Formula"
},
{
"coordinate": -0.227656,
"eq_id": 597,
"name": "Cable Equation (Neuronal Dendrite/Axon)"
},
{
"coordinate": -0.223313,
"eq_id": 324,
"name": "Landauer's Principle"
},
{
"coordinate": -0.223313,
"eq_id": 247,
"name": "Four-Factor Formula (Nuclear Reactor)"
},
{
"coordinate": -0.216358,
"eq_id": 502,
"name": "Nernst Equation (Electrode Potential)"
},
{
"coordinate": -0.183268,
"eq_id": 754,
"name": "Primary Endosymbiosis \u2014 Mitochondrial and Plastid Acquisitio"
},
{
"coordinate": -0.148165,
"eq_id": 742,
"name": "Absolute Minimum Metabolic Rate for Sustained Life (~10\u207b\u00b3 to"
}
]
},
{
"eigenvalue": -1.1176,
"mode": 3,
"num_nodes_below_threshold": 10,
"top_nodes": [
{
"coordinate": -0.611076,
"eq_id": 605,
"name": "Arrhenius Equation (Chemical Reaction Rate)"
},
{
"coordinate": 0.477243,
"eq_id": 241,
"name": "Radioactive Decay Law"
},
{
"coordinate": 0.341813,
"eq_id": 46,
"name": "Kirchhoff's Current Law (KCL)"
},
{
"coordinate": 0.273394,
"eq_id": 4,
"name": "Hamilton-Jacobi Equation"
},
{
"coordinate": 0.273394,
"eq_id": 738,
"name": "Upper Temperature Limit of Carbon-Based Life (~122\u00b0C at dept"
},
{
"coordinate": -0.242116,
"eq_id": 744,
"name": "Long-Term Dormancy Survival Limit (~250 million years in sal"
},
{
"coordinate": -0.213518,
"eq_id": 741,
"name": "Maximum Ionizing Radiation Dose Survived (Deinococcus radiod"
},
{
"coordinate": -0.152926,
"eq_id": 758,
"name": "Explosive Biochemistry \u2014 Bombardier Beetle, Skunk Spray, Ven"
},
{
"coordinate": 0.063921,
"eq_id": 773,
"name": "Optimal DNA Sequence Compression (PIST/CFF Biological Analog"
},
{
"coordinate": -0.028598,
"eq_id": 19,
"name": "Damped Harmonic Oscillator"
}
]
},
{
"eigenvalue": 1.083,
"mode": 4,
"num_nodes_below_threshold": 10,
"top_nodes": [
{
"coordinate": -0.623289,
"eq_id": 605,
"name": "Arrhenius Equation (Chemical Reaction Rate)"
},
{
"coordinate": -0.40892,
"eq_id": 241,
"name": "Radioactive Decay Law"
},
{
"coordinate": -0.365687,
"eq_id": 46,
"name": "Kirchhoff's Current Law (KCL)"
},
{
"coordinate": -0.287748,
"eq_id": 738,
"name": "Upper Temperature Limit of Carbon-Based Life (~122\u00b0C at dept"
},
{
"coordinate": -0.287748,
"eq_id": 4,
"name": "Hamilton-Jacobi Equation"
},
{
"coordinate": 0.249307,
"eq_id": 773,
"name": "Optimal DNA Sequence Compression (PIST/CFF Biological Analog"
},
{
"coordinate": -0.188782,
"eq_id": 741,
"name": "Maximum Ionizing Radiation Dose Survived (Deinococcus radiod"
},
{
"coordinate": -0.168823,
"eq_id": 758,
"name": "Explosive Biochemistry \u2014 Bombardier Beetle, Skunk Spray, Ven"
},
{
"coordinate": 0.115095,
"eq_id": 19,
"name": "Damped Harmonic Oscillator"
},
{
"coordinate": -0.073687,
"eq_id": 744,
"name": "Long-Term Dormancy Survival Limit (~250 million years in sal"
}
]
}
]
}