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The concept of reversible processes is something like motion without friction in mechanics.
Many of the results of thermodynamics are derived from the properties of reversible processes.
For reversible processes the system is in equilibrium with its environment, while for irreversible processes it is not.
To reach the equality for a cycle generally requires quasistatic reversible processes.
C can be divided into irreversible and reversible processes so that (A_{ch,C} = A_{ch,irr} + A_{ch, rev}).
The oxidation of W by water vapor and the reduction of WO3 by H2 are reversible processes.
Similar(9)
CO2 absorption by aqueous amines is a reversible process, and the degree of reversibility is amine-dependent.
It is a reversible process too.
Desensitization is a reversible process, although it can take hours or days for receptors to recover after down-regulation.
Therefore, it can be stated that with dQ′ = dQ in the case of maximum work corresponding to a reversible process.
Sorptive preservation is, however, a reversible process.
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