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Daniel Szumski
Daniel Szumski

The Reversible Thermodynamic Processes and its Place in Physics

Reversible processes do exist in nature. Light in a vacuum is a reversible process. It produces no entropy. It is perpetual until it is disturbed/absorbed. Because it is a process, it has more than one state: [Its displacement current creates light's magnetic vector which in turn creates the electrical vector, which creates the magnetic vector...] , it produces a work product: [the transport of electromagnetic energy in space/time].


The covalent bond is another. It produces no entropy. It too is perpetual untill disturbed. It has two states: the energy association with one then the other atom. It produces a work product: the union of two atoms.


I want you to know that the reversible process only exists in wave mechanics, and cannot have any mass particles within the process. Mass always has Heisenberg Uncertainty...which is entropy...and it is not permitted in a reversible process. I also want you to note…


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Μελίνα Σκούρτη
Μελίνα Σκούρτη

hi guuuurls

how should i implement a burner for heat recovery in this ammonia cacking system for to get h2
how should i implement a burner for heat recovery in this ammonia cacking system for to get h2

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Mikhail Granovskiy
Mikhail Granovskiy

Power from low-temperature waste heat


The working principle of adsorption-desorption heat pumps with cyclic switching between adsorption and desorption is adapted in the proposed heat engine to generate electrical power from low-temperature heat.

Please, see attachment or web link: https://www.lidsen.com/journals/jept/jept-05-04-034

Mikhail

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Thermodynamics Forum
October 5, 2025 · updated the description of the group.

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