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  2. Thermodynamic system - Wikipedia

    en.wikipedia.org/wiki/Thermodynamic_system

    The physical condition of a thermodynamic system at a given time is described by its state, which can be specified by the values of a set of thermodynamic state variables. A thermodynamic system is in thermodynamic equilibrium when there are no macroscopically apparent flows of matter or energy within it or between it and other systems. [1]

  3. Thermodynamics - Wikipedia

    en.wikipedia.org/wiki/Thermodynamics

    Most systems found in nature are not in thermodynamic equilibrium because they are not in stationary states, and are continuously and discontinuously subject to flux of matter and energy to and from other systems. The thermodynamic study of non-equilibrium systems requires more general concepts than are dealt with by equilibrium thermodynamics ...

  4. Laws of thermodynamics - Wikipedia

    en.wikipedia.org/wiki/Laws_of_thermodynamics

    In a closed system (i.e. there is no transfer of matter into or out of the system), the first law states that the change in internal energy of the system (ΔU system) is equal to the difference between the heat supplied to the system (Q) and the work (W) done by the system on its surroundings.

  5. Isolated system - Wikipedia

    en.wikipedia.org/wiki/Isolated_system

    An isolated system obeys the conservation law that its total energy–mass stays constant. Most often, in thermodynamics, mass and energy are treated as separately conserved. Because of the requirement of enclosure, and the near ubiquity of gravity, strictly and ideally isolated systems do not actually occur in experiments or in nature.

  6. Thermodynamic state - Wikipedia

    en.wikipedia.org/wiki/Thermodynamic_state

    A thermodynamic system is a macroscopic object, the microscopic details of which are not explicitly considered in its thermodynamic description. The number of state variables required to specify the thermodynamic state depends on the system, and is not always known in advance of experiment; it is usually found from experimental evidence.

  7. Biological thermodynamics - Wikipedia

    en.wikipedia.org/wiki/Biological_thermodynamics

    Biological thermodynamics (Thermodynamics of biological systems) is a science that explains the nature and general laws of thermodynamic processes occurring in living organisms as nonequilibrium thermodynamic systems that convert the energy of the Sun and food into other types of energy. The nonequilibrium thermodynamic state of living ...

  8. Phase transition - Wikipedia

    en.wikipedia.org/wiki/Phase_transition

    The most famous example is the Kosterlitz–Thouless transition in the two-dimensional XY model. Many quantum phase transitions, e.g., in two-dimensional electron gases, belong to this class. The liquid–glass transition is observed in many polymers and other liquids that can be supercooled far below the melting point of the crystalline phase ...

  9. Phase (matter) - Wikipedia

    en.wikipedia.org/wiki/Phase_(matter)

    (See state of matter § Glass.) More precisely, a phase is a region of space (a thermodynamic system), throughout which all physical properties of a material are essentially uniform. [1] [2]: 86 [3]: 3 Examples of physical properties include density, index of refraction, magnetization and chemical composition.