In a system, 90 kJ of heat is supplied from state 1 to state 2 by constant volume process. The internal energy at state 1 is 100 kJ. The system rejects 105 kJ of heat from state 2 to state 3 by constant pressure process and 40 kJ of work is done on it. The system is brought back from state 3 to state 1 by a reversible adiabatic process. Calculate the adiabatic work and the values of internal energy at state 2 and state 3

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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In a system, 90 kJ of heat is supplied from state 1 to state 2 by
constant volume process. The internal energy at state 1 is 100 kJ.
The system rejects 105 kJ of heat from state 2 to state 3 by
constant pressure process and 40 kJ of work is done on it. The
system is brought back from state 3 to state 1 by a reversible
adiabatic process. Calculate the adiabatic work and the values of
internal energy at state 2 and state 3
Transcribed Image Text:Q2 In a system, 90 kJ of heat is supplied from state 1 to state 2 by constant volume process. The internal energy at state 1 is 100 kJ. The system rejects 105 kJ of heat from state 2 to state 3 by constant pressure process and 40 kJ of work is done on it. The system is brought back from state 3 to state 1 by a reversible adiabatic process. Calculate the adiabatic work and the values of internal energy at state 2 and state 3
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