1.32. (a) Rewrite the ideal gas law as volume being a function of pressure and temperature. (b) What is the expression for the total derivative dV as a function of pressure and temperature? (c) At a pressure of 1.08 atm and 350 K for one mole of ideal gas, what is the predicted change in volume if the pressure changes by 0.10 atm (that is, dp = 0.10 atm) and the temperature change is 10.0 K?

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter9: Liquids, Solids, And Materials
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Problem 45QRT: At the critical point for carbon dioxide, the substance is very far from being an ideal gas. Prove...
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1.32. (a) Rewrite the ideal gas law as volume being a function of
pressure and temperature. (b) What is the expression for the total
derivative dV as a function of pressure and temperature? (c) At a
pressure of 1.08 atm and 350 K for one mole of ideal gas, what is
the predicted change in volume if the pressure changes by 0.10
atm (that is, dp = 0.10 atm) and the temperature change is 10.0 K?
Transcribed Image Text:1.32. (a) Rewrite the ideal gas law as volume being a function of pressure and temperature. (b) What is the expression for the total derivative dV as a function of pressure and temperature? (c) At a pressure of 1.08 atm and 350 K for one mole of ideal gas, what is the predicted change in volume if the pressure changes by 0.10 atm (that is, dp = 0.10 atm) and the temperature change is 10.0 K?
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