The ideal gas law relates the pressure P, volume V, absolute temperature T (Kelvin), and amount of gas n. nRT P = The law is v where R is the gas constant. An engineer must design a large natural gas storage tank to be expandable to maintain the pressure constant at 2.2 atmospheres. In December when the temperature is -15°C, the volume of gas in the tank is 28,500 ft. What will the volume of the same quantity of gas be in July when the temperature is 31°C? (Hint: Use the fact that n, R, and P are constant in this problem. Note also that Kelvin °C +273.2)

Physical Chemistry
2nd Edition
ISBN:9781133958437
Author:Ball, David W. (david Warren), BAER, Tomas
Publisher:Ball, David W. (david Warren), BAER, Tomas
Chapter1: Gases And The Zeroth Law Of Thermodynamics
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Problem 1.18E: Scottish physicist W. J. M. Rankine proposed an absolute temperature scale based on the Fahrenheit...
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The ideal gas law relates the pressure P, volume V, absolute temperature T (Kelvin), and amount of gas n.
nRT
where R is the gas constant.
P =
The law is
An engineer must design a large natural gas storage tank to be expandable to maintain the pressure constant at
2.2 atmospheres. In December when the temperature is -15°C, the volume of gas in the tank is 28,500 ft. What
will the volume of the same quantity of gas be in July when the temperature is 31°C?
(Hint: Use the fact that n, R, and P are constant in this problem. Note also that Kelvin = °C +273.2)
Transcribed Image Text:The ideal gas law relates the pressure P, volume V, absolute temperature T (Kelvin), and amount of gas n. nRT where R is the gas constant. P = The law is An engineer must design a large natural gas storage tank to be expandable to maintain the pressure constant at 2.2 atmospheres. In December when the temperature is -15°C, the volume of gas in the tank is 28,500 ft. What will the volume of the same quantity of gas be in July when the temperature is 31°C? (Hint: Use the fact that n, R, and P are constant in this problem. Note also that Kelvin = °C +273.2)
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