The ideal gas law relates temperature T, pressure P, and volume V of an ideal gas: P V = 8.314T. Note that in the equation, we assume there is 1 mole of gas so that the units of the constant 8.314 are Joules per degree Kelvin. (a) Write an equation relating the rates of change of temperature, pressure, and volume with respect to time. (b) If an ideal gas is held at a constant volume 3.8 cubic meters and is being heated at a rate of 10 degrees K per minute, how quickly is the pressure increasing? Include units in your answer. Note that the constant has units as described above and that 1 Joule per cubic meter is equivalent to 1 Pascal (units of pressure).

College Algebra
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ISBN:9781938168383
Author:Jay Abramson
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Chapter6: Exponential And Logarithmic Functions
Section6.1: Exponential Functions
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The ideal gas law relates temperature T, pressure P, and volume V of an ideal gas: P V = 8.314T. Note that in the equation, we assume there is 1 mole of gas so that the units of the constant 8.314 are Joules per degree Kelvin.

(a) Write an equation relating the rates of change of temperature, pressure, and volume with respect to time.

(b) If an ideal gas is held at a constant volume 3.8 cubic meters and is being heated at a rate of 10 degrees K per minute, how quickly is the pressure increasing? Include units in your answer. Note that the constant has units as described above and that 1 Joule per cubic meter is equivalent to 1 Pascal (units of pressure).

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