2.40 moles of nitrogen gas at 252 K are kept in a container. (a) If the temperature of the gas is increased to 500 K at constant volume, how much heat was transferred to the gas? The molar specific heat capacity of nitrogen at constant volume is 20.8 J/mol. ­­­­­_________J (b) What is the change in internal energy of the gas due to this change in temperature at constant volume? _________J (c) Suppose the temperature of the gas is increased from 252 K to 500 K at constant pressure, how much heat is transferred to the gas? The molar specific heat capacity of nitrogen at constant pressure is 29.1 J/mol. _________J

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Chapter10: Thermal Physics
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Problem 44P: A sealed cubical container 20.0 cm on a side contains a gas with three times Avogadros number of...
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2.40 moles of nitrogen gas at 252 K are kept in a container.

(a) If the temperature of the gas is increased to 500 K at constant volume, how much heat was transferred to the gas? The molar specific heat capacity of nitrogen at constant volume is 20.8 J/mol.

­­­­­_________J

(b) What is the change in internal energy of the gas due to this change in temperature at constant volume?

_________J

(c) Suppose the temperature of the gas is increased from 252 K to 500 K at constant pressure, how much heat is transferred to the gas? The molar specific heat capacity of nitrogen at constant pressure is 29.1 J/mol.

_________J

(d) How much work is done on the gas as its temperature increases at constant pressure?

_________J

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