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New Thermodynamics: Reversibility, Entropy and Adiabatic Processes

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  • Kent W. Mayhew

Abstract

Accepted assertions concerning entropy and reversibility in both isentropic and adiabatic processes will be investigated and challenged. The ultimate conclusion being that accepted thermodynamics is an over-complication. Furthermore, the need for natural logarithmic functions will be explained. This functionality no longer depends upon entropy, whatever entropy’s true guise turns out to be. Moreover, it will be discussed how isothermal entropy change is embedded in circular logic.

Suggested Citation

  • Kent W. Mayhew, 2020. "New Thermodynamics: Reversibility, Entropy and Adiabatic Processes," European Journal of Applied Physics, European Open Science, vol. 2(2), March.
  • Handle: RePEc:epw:physic:v:2:y:2020:i:2:id:11007
    DOI: 10.24018/ejphysics.2020.2.2.7
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    References listed on IDEAS

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    1. Kent W. Mayhew, 2020. "New Thermodynamics: Understanding Temperature’s Limitations," European Journal of Applied Physics, European Open Science, vol. 2(2), March.
    2. Kent W. Mayhew, 2019. "New Thermodynamics: Global Warming and Man’s Activities," European Journal of Engineering and Technology Research, European Open Science, vol. 4(7), pages 58-62, July.
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    Cited by:

    1. Kent W. Mayhew, 2020. "New Thermodynamics: Inelastic Collisions, Blackbody Radiation, Entropy and Light," European Journal of Applied Physics, European Open Science, vol. 2(6), November.
    2. Kent W. Mayhew, 2020. "New Thermodynamics: Inelastic Collisions and Cosmology," European Journal of Applied Physics, European Open Science, vol. 2(6), November.

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