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32 lines
2 KiB
Python
32 lines
2 KiB
Python
# ==============================================================================
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# COPYRIGHT NO ONE EVERYWHERE LLC (WYOMING HOLDING COMPANY)
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# PROJECT: SOVEREIGN STACK
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# This artifact is entirely proprietary and cryptographically proven.
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# Open-Source usage requires explicit permission from Brandon Scott Schneider.
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# ==============================================================================
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import os
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with open("KDA_DOC.tex", "r") as f:
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doc = f.read()
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planet_text = """
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\\subsection{Extra-Planetary Deployment \\& Thermodynamic Yields}
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Because the Kinetic Differential Array utilizes purely mechanical manipulation of the localized atmospheric gas bounds, its structural parameters scale dynamically across atmospheric densities without internal reconfiguration. Mapping a fixed $0.5 \\text{ m}^3/\\text{sec}$ volumetric flow at a $\\Delta T = 45^\\circ\\text{C}$ across celestial bodies results in the following operational thermal extraction yields:
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\\begin{itemize}
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\\item \\textbf{Earth (Sea Level):} 1.225 $\\text{kg/m}^3$ (Air) $\\rightarrow$ \\textbf{27.70 kW}
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\\item \\textbf{Mars (Surface):} 0.020 $\\text{kg/m}^3$ ($CO_2$) $\\rightarrow$ \\textbf{0.38 kW} (Requires array upscaling or high-compression pre-chambers)
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\\item \\textbf{Venus (Surface):} 65.0 $\\text{kg/m}^3$ (Super-Critical $CO_2$) $\\rightarrow$ \\textbf{1608.75 kW} (Extreme PZT recovery mode recommended)
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\\item \\textbf{Titan (Surface):} 5.42 $\\text{kg/m}^3$ (Dense $N_2/CH_4$) $\\rightarrow$ \\textbf{126.83 kW}
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\\item \\textbf{Jupiter (1-Bar Altitude):} 0.16 $\\text{kg/m}^3$ (High-Temp $H_2/He$) $\\rightarrow$ \\textbf{51.48 kW}
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\\end{itemize}
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As gas density increases, the structural stress against the Annular MEMS Suspension Ring scales linearly, providing massively increased Piezoelectric recovery on worlds like Venus or Titan.
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"""
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doc = doc.replace("\\end{document}", planet_text + "\n\\end{document}")
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with open("KDA_DOC.tex", "w") as f:
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f.write(doc)
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print("Planetary profiles appended to documentation.")
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