Container A contains an ideal gas at a pressure of 5 x 10° Pa and at a temperature of 300 K. It is connected by a thin tube to container B which is four times the volume of A, and contains the same ideal gas at a pressure of 1 x 105 Pa at a temperature of 400 K. The connecting valve is opened, and equilibrium is achieved at a common pressure while the temperature of each container is kept constant at its initial value. What is the final pressure in the system?
Container A contains an ideal gas at a pressure of 5 x 10° Pa and at a temperature of 300 K. It is connected by a thin tube to container B which is four times the volume of A, and contains the same ideal gas at a pressure of 1 x 105 Pa at a temperature of 400 K. The connecting valve is opened, and equilibrium is achieved at a common pressure while the temperature of each container is kept constant at its initial value. What is the final pressure in the system?
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![Container A contains an ideal gas at a pressure of 5 × 10° Pa and at a temperature of 300 K. It is
connected by a thin tube to container B which is four times the volume of A, and contains the same
ideal gas at a pressure of 1 x 105 Pa at a temperature of 400 K. The connecting valve is opened,
and equilibrium is achieved at a common pressure while the temperature of each container is kept
constant at its initial value. What is the final pressure in the system?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4d409dbe-0069-4bdd-acc1-9391e01545d6%2Fed3339e5-5fc4-482a-a379-c0f5dbf3d80e%2Frlwwocb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Container A contains an ideal gas at a pressure of 5 × 10° Pa and at a temperature of 300 K. It is
connected by a thin tube to container B which is four times the volume of A, and contains the same
ideal gas at a pressure of 1 x 105 Pa at a temperature of 400 K. The connecting valve is opened,
and equilibrium is achieved at a common pressure while the temperature of each container is kept
constant at its initial value. What is the final pressure in the system?
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