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Prove the Adiabatic Relation
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YouTubePhysics mee
Prove the Adiabatic Relation
Prove the Adiabatic Relation
103.7K viewsFeb 14, 2018
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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, 15°C, and 600 cm³. The temperature at the end of the isentropic expansionprocess is 850 K. Using specific heat values at room temperature, determine:a. the highest temperature and pressure in the cycleb. the amount of heat transferred in KJc. the thermal efficiency of the engine
The compression ratio of an air-standard Otto cycle is 9.5. Prior t…
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