2. An ideal gas is three moles and a temperature of 373 K. a. If the gas expands isothermally, how much effort does the gas do to reach four times its initial volume? b. How much effort should be put on the gas? If the gas undergoes an adiabatic compression process so that its absolute temperature increases to three times the original (R = 8.3 J mol-'K-'). c. How much work is done if the gas undergoes an isovolum process 3. One mole of gas has a temperature of 270C which expands adiabatically so that its volume is two times the original volume. Determine the work done by the system if y (gamma) = 1.4 and R = 8.3 J mol-'K-1. %3D
2. An ideal gas is three moles and a temperature of 373 K. a. If the gas expands isothermally, how much effort does the gas do to reach four times its initial volume? b. How much effort should be put on the gas? If the gas undergoes an adiabatic compression process so that its absolute temperature increases to three times the original (R = 8.3 J mol-'K-'). c. How much work is done if the gas undergoes an isovolum process 3. One mole of gas has a temperature of 270C which expands adiabatically so that its volume is two times the original volume. Determine the work done by the system if y (gamma) = 1.4 and R = 8.3 J mol-'K-1. %3D
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Help me number 2 please do it step by step.and make sure that I can understand the words and symbols do you use
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