n = 3.8 moles of an ideal gas are pumped into a chamber of volume V = 0.083 m³. The initial pressure of the gas is 1.01 × 10° Pa (about 1 atm). What is the initial temperature, in kelvin, of the gas? T= The pressure of the gas is increased ten times. Now what is the temperature, in kelvin, of the gas? T =
n = 3.8 moles of an ideal gas are pumped into a chamber of volume V = 0.083 m³. The initial pressure of the gas is 1.01 × 10° Pa (about 1 atm). What is the initial temperature, in kelvin, of the gas? T= The pressure of the gas is increased ten times. Now what is the temperature, in kelvin, of the gas? T =
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![n = 3.8 moles of an ideal gas are pumped into a chamber of volume V= (0.083 m³.
The initial pressure of the gas is 1.01 × 10° Pa (about 1 atm). What is the initial temperature, in kelvin, of the gas?
T =
The pressure of the gas is increased ten times. Now what is the temperature, in kelvin, of the gas?
T =](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc08bab33-dfc3-4475-87c9-eef4dfb69a19%2Fcec81ca5-2cea-4bd0-8a99-a0ca9705415f%2F9ixvsuz_processed.png&w=3840&q=75)
Transcribed Image Text:n = 3.8 moles of an ideal gas are pumped into a chamber of volume V= (0.083 m³.
The initial pressure of the gas is 1.01 × 10° Pa (about 1 atm). What is the initial temperature, in kelvin, of the gas?
T =
The pressure of the gas is increased ten times. Now what is the temperature, in kelvin, of the gas?
T =
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