Consider the adiabatic compression of 5 kmol of air from 105 Pa to 3x105 Pa. Init temperature is 25 °C. Calculate the required work, the change internal energy, the initial volume and ti finite volume. Air is assumed to behave as an ideal ga Hint: Use adiabatic relation for an ideal gas between temperatures, presures and volumes and/or the equation of state, t first law of thermodynamics and the equipartition theorem.

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Chapter1: Units, Trigonometry. And Vectors
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Consider the adiabatic compression of 5
kmol of air from 105 Pa to 3x105 Pa. Initial
temperature is 25 °C.
Calculate the required work, the change in
internal energy, the initial volume and the
finite volume.
Air is assumed to behave as an ideal gas.
Hint:
Use adiabatic relation for an ideal gas
between temperatures, presures and
volumes and/or the equation of state, the
first law of thermodynamics and the
equipartition theorem.
Transcribed Image Text:Consider the adiabatic compression of 5 kmol of air from 105 Pa to 3x105 Pa. Initial temperature is 25 °C. Calculate the required work, the change in internal energy, the initial volume and the finite volume. Air is assumed to behave as an ideal gas. Hint: Use adiabatic relation for an ideal gas between temperatures, presures and volumes and/or the equation of state, the first law of thermodynamics and the equipartition theorem.
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