(3) [2] Ideal gas (1 mol) expanded adiabatically from the initial equilibrium with temperature, volume, and pressure of (T₁, V₁, P₁) to the final equilibrium with (T2, V2, P2). Show that the work done to the environment, using the heat capacity ratio y, is W = P1V1 γ γ
(3) [2] Ideal gas (1 mol) expanded adiabatically from the initial equilibrium with temperature, volume, and pressure of (T₁, V₁, P₁) to the final equilibrium with (T2, V2, P2). Show that the work done to the environment, using the heat capacity ratio y, is W = P1V1 γ γ
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![(3) [2] Ideal gas (1 mol) expanded adiabatically from the initial equilibrium with temperature,
volume, and pressure of (T₁, V₁, P₁) to the final equilibrium with (T2, V2, P2). Show that the work
done to the environment, using the heat capacity ratio y, is
W =
P1V1
γ
γ](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc158a850-76a9-4504-97b9-8593e0926539%2F7a4d5034-3882-41af-a2bf-ee542c8e591e%2F4n16m2d_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(3) [2] Ideal gas (1 mol) expanded adiabatically from the initial equilibrium with temperature,
volume, and pressure of (T₁, V₁, P₁) to the final equilibrium with (T2, V2, P2). Show that the work
done to the environment, using the heat capacity ratio y, is
W =
P1V1
γ
γ
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