2. (13.24) In an internal combustion engine, air at atmospheric pressure and a temperature of about 20°C is compressed in the cylinder by a piston to of its original volume (compression ratio = 9.0). Estimate the temperature of the compressed air, assuming the pressure reaches 40 atm. 3. (13.29) What is the pressure inside a 38.0-L container holding 105.0 kg of argon gas at 21.6°C? 4. (13.49) If the pressure in a gas is tripled while its volume is held constant, by what factor does Urms change?

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Chapter19: Temperature
Section: Chapter Questions
Problem 19.9OQ: Two cylinders A and B at the same temperature contain the same quantity of the same kind of gas....
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2. (13.24) In an internal combustion engine, air at atmospheric pressure and a
temperature of about 20°C is compressed in the cylinder by a piston to of its original
volume (compression ratio = 9.0). Estimate the temperature of the compressed air,
assuming the pressure reaches 40 atm.
3. (13.29) What is the pressure inside a 38.0-L container holding 105.0 kg of argon gas at
21.6°C?
4. (13.49) If the pressure in a gas is tripled while its volume is held constant, by what factor
does Vrms change?
Transcribed Image Text:2. (13.24) In an internal combustion engine, air at atmospheric pressure and a temperature of about 20°C is compressed in the cylinder by a piston to of its original volume (compression ratio = 9.0). Estimate the temperature of the compressed air, assuming the pressure reaches 40 atm. 3. (13.29) What is the pressure inside a 38.0-L container holding 105.0 kg of argon gas at 21.6°C? 4. (13.49) If the pressure in a gas is tripled while its volume is held constant, by what factor does Vrms change?
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