A rigid tank whose volume is unknown is divided into two parts by a partition. One side of the tank contains an ideal gas at 917°C. The other side is evacuated and has a volume twice the size of the part containing the gas. The partition is now removed and the gas expands to fill the entire tank. Heat is now transferred to the gas until the pressure equals the initial pressure. Determine the final temperature of the gas. Ideal gas T°C V₁ Evacuated 2V₁ The final temperature is [ °C.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A rigid tank whose volume is unknown is divided into two parts by a partition. One side of the tank contains an ideal gas at 917°C. The
other side is evacuated and has a volume twice the size of the part containing the gas. The partition is now removed and the gas
expands to fill the entire tank. Heat is now transferred to the gas until the pressure equals the initial pressure. Determine the final
temperature of the gas.
Ideal gas.
TOC
V₁
Evacuated
2V₂
The final temperature is
Q
°C.
Transcribed Image Text:A rigid tank whose volume is unknown is divided into two parts by a partition. One side of the tank contains an ideal gas at 917°C. The other side is evacuated and has a volume twice the size of the part containing the gas. The partition is now removed and the gas expands to fill the entire tank. Heat is now transferred to the gas until the pressure equals the initial pressure. Determine the final temperature of the gas. Ideal gas. TOC V₁ Evacuated 2V₂ The final temperature is Q °C.
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