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  2. File:Isobaric-process.svg - Wikipedia

    en.wikipedia.org/wiki/File:Isobaric-process.svg

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  3. Isobaric process - Wikipedia

    en.wikipedia.org/wiki/Isobaric_process

    In thermodynamics, an isobaric process is a type of thermodynamic process in which the pressure of the system stays constant: ΔP = 0. The heat transferred to the system does work, but also changes the internal energy (U) of the system. This article uses the physics sign convention for work, where positive work is work done by the system.

  4. Thermodynamic diagrams - Wikipedia

    en.wikipedia.org/wiki/Thermodynamic_diagrams

    This Process Path is a straight horizontal line from state one to state two on a P-V diagram. Figure 2. It is often valuable to calculate the work done in a process. The work done in a process is the area beneath the process path on a P-V diagram. Figure 2 If the process is isobaric, then the work done on the piston

  5. File:P-v diagram of a simple cycle.svg - Wikipedia

    en.wikipedia.org/wiki/File:P-v_diagram_of_a...

    English: A cyclic thermodynamic process described on a pressure-volume diagram. A and C are constant-pressure (isobar) evolutions, B and D are constant-volume (isochoric) evolutions. A and C are constant-pressure (isobar) evolutions, B and D are constant-volume (isochoric) evolutions.

  6. Pressure–volume diagram - Wikipedia

    en.wikipedia.org/wiki/Pressure–volume_diagram

    A PV diagram plots the change in pressure P with respect to volume V for some process or processes. Typically in thermodynamics, the set of processes forms a cycle, so that upon completion of the cycle there has been no net change in state of the system; i.e. the device returns to the starting pressure and volume.

  7. File:Example of Isobaric Process.png - Wikipedia

    en.wikipedia.org/wiki/File:Example_of_Isobaric...

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  8. File:Isobaric Process Exaple 2.png - Wikipedia

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  9. Thermodynamic process - Wikipedia

    en.wikipedia.org/wiki/Thermodynamic_process

    The PV diagram is a particularly useful visualization of a quasi-static process, because the area under the curve of a process is the amount of work done by the system during that process. Thus work is considered to be a process variable , as its exact value depends on the particular path taken between the start and end points of the process.