A spring-loaded piston-cylinder device contains of m=1kg carbon dioxide. Initially, the spring has no force on the piston and P₁ = 500kPa, T₁=150K, V₁ = 0.1m³. Heat is transferred to the gas, causing the piston to rise and to compress the spring. At the 1 state 2, T₁₂=900K, V₁=0.3m³. The gas is an ideal gas. 2 (11) Calculate the heat transferred into the system Q in _in kJ?

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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A spring-loaded piston-cylinder device contains of m=1kg carbon dioxide. Initially, the spring has no force on the piston and
P₁ = 500kPa, T₁ = 150K, V₁ = 0.1m³. Heat is transferred to the gas, causing the piston to rise and to compress the spring. At the
state 2, T₁₂=900K, V₂=0.3m³. The gas is an ideal gas.
(11) Calculate the heat transferred into the system in
P1, V1, T1
P2, V2, T2
in kJ?
Transcribed Image Text:A spring-loaded piston-cylinder device contains of m=1kg carbon dioxide. Initially, the spring has no force on the piston and P₁ = 500kPa, T₁ = 150K, V₁ = 0.1m³. Heat is transferred to the gas, causing the piston to rise and to compress the spring. At the state 2, T₁₂=900K, V₂=0.3m³. The gas is an ideal gas. (11) Calculate the heat transferred into the system in P1, V1, T1 P2, V2, T2 in kJ?
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