A cylindrical flask of cross-sectional area A is fitted with an airtight piston that is free to slide up and down. Contained withinthe flask is an ideal gas. Initially the pressure applied by the piston is 140 kPa and the height of the piston above the base of theflask is 22 cm. When additional mass is added to the piston, thepressure increases to 180 kPa. Assuming the system is always atthe temperature 290 K, find the new height of the piston.
A cylindrical flask of cross-sectional area A is fitted with an airtight piston that is free to slide up and down. Contained withinthe flask is an ideal gas. Initially the pressure applied by the piston is 140 kPa and the height of the piston above the base of theflask is 22 cm. When additional mass is added to the piston, thepressure increases to 180 kPa. Assuming the system is always atthe temperature 290 K, find the new height of the piston.
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter16: Temperature And The Kinetic Theory Of Gases
Section: Chapter Questions
Problem 73P
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A cylindrical flask of cross-sectional area A is fitted with an airtight piston that is free to slide up and down. Contained within
the flask is an ideal gas. Initially the pressure applied by the piston is 140 kPa and the height of the piston above the base of the
flask is 22 cm. When additional mass is added to the piston, the
pressure increases to 180 kPa. Assuming the system is always at
the temperature 290 K, find the new height of the piston.
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