**64. A gas fills the right portion of a horizontal cylinder whose radius is 5.00 cm. The initial pressure of the gas - Unstrained spring Pin is 1.01 × 10$ Pa. A frictionless mov- able piston separates the gas from the left portion of the cylinder, which is evacuated and contains an ideal spring, as the drawing shows. The piston is initially held in place by a pin. The spring is initially unstrained, and the length of the gas-filled portion is 20.0 cm. When the pin is removed and the gas is allowed to expand, the length of the gas-filled chamber doubles. The initial and final temperatures are equal. Determine the spring constant of the spring.

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**64. A gas fills the right portion of a
horizontal cylinder whose radius is
5.00 cm. The initial pressure of the gas
- Unstrained
spring
Pin
is 1.01 × 10$ Pa. A frictionless mov-
able piston separates the gas from the
left portion of the cylinder, which is
evacuated and contains an ideal spring, as the drawing shows. The piston
is initially held in place by a pin. The spring is initially unstrained, and
the length of the gas-filled portion is 20.0 cm. When the pin is removed
and the gas is allowed to expand, the length of the gas-filled chamber
doubles. The initial and final temperatures are equal. Determine the
spring constant of the spring.
Transcribed Image Text:**64. A gas fills the right portion of a horizontal cylinder whose radius is 5.00 cm. The initial pressure of the gas - Unstrained spring Pin is 1.01 × 10$ Pa. A frictionless mov- able piston separates the gas from the left portion of the cylinder, which is evacuated and contains an ideal spring, as the drawing shows. The piston is initially held in place by a pin. The spring is initially unstrained, and the length of the gas-filled portion is 20.0 cm. When the pin is removed and the gas is allowed to expand, the length of the gas-filled chamber doubles. The initial and final temperatures are equal. Determine the spring constant of the spring.
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