KnowraIrreversible processLinked fromLinked fromThe 15 pages that link to Irreversible process, each with the reason it gives.All 15Broader topic 3Related 3Compared with 9Second law of thermodynamicsBroader topic: Entropy production distinguishes real processes from ideal reversible limits.Adiabatic processCompared with: Adiabatic specifies heat exchange, whereas irreversibility describes whether a process can be reversed.Carnot cycleCompared with: Friction and finite temperature differences make real engine cycles irreversible and less efficient.Reversible processCompared with: It is the direct thermodynamic opposite of a reversible process and includes nearly all natural processes.State functionCompared with: Its real path may differ from a reversible calculation used to find a state-function change.Entropy productionBroader topic: Its dissipative features are the physical sources of entropy production.Thermodynamic processBroader topic: Real processes generate entropy and proceed irreversibly.Thermodynamic efficiencyRelated: Irreversibility destroys exergy and makes real devices less efficient than ideal limits.Quasistatic processCompared with: Friction and finite temperature differences make a process irreversible even when it proceeds slowly.Equilibrium thermodynamicsCompared with: Irreversibility concerns process direction and dissipation, beyond equilibrium-state relations.Clausius theoremCompared with: Its cycles produce a strictly negative cyclic integral.Isentropic processCompared with: Irreversibility generates entropy, so an adiabatic irreversible process is not isentropic.Nicholas Georgescu-RoegenRelated: His central economic claim was that production cannot restore its inputs to their original useful state.History of thermodynamicsCompared with: Its one-way character drove the search for a physical account of entropy increase.Ilya PrigogineRelated: Prigogine developed ways to describe entropy production in irreversible processes.