An insulated rigid tank is divided into two equal parts by a partition. Initially, one part contains4.5 kgof argon gas at300kPaand.70∘C, and the other side is evacuated. The partition is now removed, and the gas fills the entire tank. Assuming the surroundings to be at25∘C, determine the exergy destroyed during this process. The gas constant of argon isR=0.2081 kJ/kgK. The exergy destroyed during this process

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An insulated rigid tank is divided into two equal parts by a partition. Initially, one part contains4.5 kgof argon gas at300kPaand.70∘C, and the other side is evacuated. The partition is now removed, and the gas fills the entire tank. Assuming the surroundings to be at25∘C, determine the exergy destroyed during this process. The gas constant of argon isR=0.2081 kJ/kgK. The exergy destroyed during this process is k. 

An insulated rigid tank is divided into two equal parts by a partition. Initially, one part contains 4.5 kg of argon gas at 300 kPa and
70°C, and the other side is evacuated. The partition is now removed, and the gas fills the entire tank. Assuming the surroundings to be
at 25°C, determine the exergy destroyed during this process. The gas constant of argon is R=0.2081 kJ/kg k
The exergy destroyed during this process is
JkJ.
Transcribed Image Text:An insulated rigid tank is divided into two equal parts by a partition. Initially, one part contains 4.5 kg of argon gas at 300 kPa and 70°C, and the other side is evacuated. The partition is now removed, and the gas fills the entire tank. Assuming the surroundings to be at 25°C, determine the exergy destroyed during this process. The gas constant of argon is R=0.2081 kJ/kg k The exergy destroyed during this process is JkJ.
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