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13 January, 22:41

Consider a system consisting of a cylinder with a movable piston containing 106 gas molecules at 298 K at a volume of 1 L. Consider the following descriptions of this system: Initial system, as stated in the problem statement. Starting from the initial system, the volume of the container is changed to 2 L and the temperature to 395 K. Starting from the initial system, a combination reaction occurs at constant volume and temperature. Starting from the initial system, the gas reacts completely to produce 107 gas molecules at 395 K in a volume of 2 L. Starting from the initial system, the temperature is changed to 395 K at constant volume. Arrange the descriptions in order of increasing number of microstates in the resulting system. Rank from most to fewest microstates. To rank items as equivalent, overlap them

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  1. 13 January, 22:50
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    D > B > E > A > C

    Explanation:

    Consider a system consisting of a cylinder with a movable piston containing 10^6 gas molecules at 298 K at a volume of 1 L.

    Consider the following descriptions of this system:

    A.) Initial system

    B.) Starting from the initial system, the volume of the container is changed to 2 L and the temperature to 395 K.

    C.) Starting from the initial system, a combination reaction occurs at constant volume and temperature.

    D.) Starting from the initial system, the gas reacts completely to produce 10^7 gas molecules at 395 K in a volume of 2 L.

    E.) Starting from the initial system, the temperature is changed to 395 K at constant volume.

    Rank from most to fewest microstates. To rank items as equivalent, overlap them

    Microstates = number of different arrangements of molecular position and kinetic energy possible.

    Increasing the temperature, volume of molecules will increase the entropy ( = more microstates)

    In option D we have the most microstates (increasing of molecules, temperature and volume)

    Followed by B (increasing by temeprature and volume)

    Followed by E (increasing temperature)

    Followed by A = the initial system

    Followed by C = combination reaction

    D > B > E > A > C
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