The asdf method equates the conditional Shannon entropy of residual mappings between decorrelated microstates to the exact thermodynamic entropy from the canonical partition function for the ideal gas and 1D harmonic oscillator.
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Abstracts DNA transcription as an autonomous Maxwell demon on two bitstreams and analyzes steady-state work extraction, transcription fidelity, and mutual information under constant and time-varying rates.
Temperature requires continuous photon energy input averaging 2.701 times the characteristic energy E_c to offset radiative losses and sustain the Planck distribution.
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On the Mathematics of Information-Thermodynamics
The asdf method equates the conditional Shannon entropy of residual mappings between decorrelated microstates to the exact thermodynamic entropy from the canonical partition function for the ideal gas and 1D harmonic oscillator.
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Demon with dementia - the deterioration of information transcription
Abstracts DNA transcription as an autonomous Maxwell demon on two bitstreams and analyzes steady-state work extraction, transcription fidelity, and mutual information under constant and time-varying rates.
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Temperature as a Dynamically Maintained Steady State: Photonic Mechanisms, Maintenance Cost, and the Limits of the Infinite-Reservoir Idealization
Temperature requires continuous photon energy input averaging 2.701 times the characteristic energy E_c to offset radiative losses and sustain the Planck distribution.