Given: Otto Cycle with the following data: compression ratio = 9 intake air is at 100 KPa and 20°C maximum cylinder volume = 500 cm³ Temperature at the end of adiabatic compression = 800 K Cp 1.01 kJ/kgK, Cv=0.718 kJ/kg, k = 1.4, R = 287.1 J/kgK Using the cold air standard, the mass of air intake in kg is nearly equal to

Elements Of Electromagnetics
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Give: Otto cycle Compression ratio = 9 Intake air is at 100kpa and 20°C Maximum cylinder volume = 500 cm^3 Temperature at the end of the adiabatic compression = 800 K CP = 1.01kJ/kgk, Cv = 0.718 kJ/kg, k = 1.4, R = 287.1 J/kgk
Given: Otto Cycle with the following data:
compression ratio = 9
intake air is at 100 KPa and 20°C
maximum cylinder volume = 500 cm³
Temperature at the end of adiabatic
compression = 800 K
Cp 1.01 kJ/kgK, Cv=0.718 kJ/kg, k = 1.4, R =
287.1 J/kgK
Using the cold air standard, the mass of air intake in
kg is nearly equal to
Transcribed Image Text:Given: Otto Cycle with the following data: compression ratio = 9 intake air is at 100 KPa and 20°C maximum cylinder volume = 500 cm³ Temperature at the end of adiabatic compression = 800 K Cp 1.01 kJ/kgK, Cv=0.718 kJ/kg, k = 1.4, R = 287.1 J/kgK Using the cold air standard, the mass of air intake in kg is nearly equal to
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