The compression ratio of an air-standard Otto cycle is 9.5. Prior to the isentropic compression process, the air is at 100 kPa, 290 K, and 600 cm^3. The temperature at the end of the isentropic expansion process is 900 K. Assume the specific heat is constant with Cv = 0.718 kJ/kgK and k = 1.4. In the question that follows, select the answer that is closest to the true value. What is the pressure at the end of the isentropic expansion process in units of kPa?

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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The compression ratio of an air-standard Otto cycle is 9.5. Prior to the isentropic compression process, the air is at
100 kPa, 290 K, and 600 cm^3. The temperature at the end of the isentropic expansion process is 900 K. Assume the
specific heat is constant with Cv = 0.718 kJ/kgK and k = 1.4.
In the question that follows, select the answer that is closest to the true value.
What is the pressure at the end of the isentropic expansion process in units of kPa?
Transcribed Image Text:The compression ratio of an air-standard Otto cycle is 9.5. Prior to the isentropic compression process, the air is at 100 kPa, 290 K, and 600 cm^3. The temperature at the end of the isentropic expansion process is 900 K. Assume the specific heat is constant with Cv = 0.718 kJ/kgK and k = 1.4. In the question that follows, select the answer that is closest to the true value. What is the pressure at the end of the isentropic expansion process in units of kPa?
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