Show that the frequency of small oscillations about the equilibrium position (using isentropic relations) is: P,A 27 L where L is the height of the cylinder and Wis the weight on the piston. Compare this result with the frequency of a simple pendulum. Justify the use of the isentropic relations
Show that the frequency of small oscillations about the equilibrium position (using isentropic relations) is: P,A 27 L where L is the height of the cylinder and Wis the weight on the piston. Compare this result with the frequency of a simple pendulum. Justify the use of the isentropic relations
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![d. Show that the frequency of small oscillations about the equilibrium position (using isentropic
relations) is:
1 ( 18
n =
27 L
(P,A
W
where L is the height of the cylinder and W is the weight on the piston. Compare this result with
the frequency of a simple pendulum. Justify the use of the isentropic relations](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdfc8f086-97d6-4dc6-a76b-e7acac5661af%2F4ddecce8-b72c-49bd-aab6-9faab1a22e9b%2Fs10eo4f_processed.jpeg&w=3840&q=75)
Transcribed Image Text:d. Show that the frequency of small oscillations about the equilibrium position (using isentropic
relations) is:
1 ( 18
n =
27 L
(P,A
W
where L is the height of the cylinder and W is the weight on the piston. Compare this result with
the frequency of a simple pendulum. Justify the use of the isentropic relations
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