A tire is inflated to a gauge pressure of 2.00x10^5 Pa when the temperature is 20°C. Later in the day, the temperature rises to 38°C. Assuming the volume of the tire remains constant, what is the gauge pressure at the elevated temperature? [Hint: Remember that the ideal gas law uses absolute pressure.] What is the difference between absolute, gauge, atmospheric, and hydrostatic pressures?
A tire is inflated to a gauge pressure of 2.00x10^5 Pa when the temperature is 20°C. Later in the day, the temperature rises to 38°C. Assuming the volume of the tire remains constant, what is the gauge pressure at the elevated temperature? [Hint: Remember that the ideal gas law uses absolute pressure.] What is the difference between absolute, gauge, atmospheric, and hydrostatic pressures?
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter19: Temperature, Thermal Expansion And Gas Laws
Section: Chapter Questions
Problem 39PQ
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A tire is inflated to a gauge pressure of 2.00x10^5 Pa when the temperature is 20°C. Later in the day, the temperature rises to 38°C. Assuming the volume of the tire remains constant, what is the gauge pressure at the elevated temperature?
[Hint: Remember that the
What is the difference between absolute, gauge, atmospheric, and hydrostatic pressures?
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