5. If 100 cu ft of atmposheric air at zero Farenheit temperature are compressed to a volume of 1 cu ft at a temperature of 200 deg F, what will be the pressure of the air in psi? *

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Chapter1: Units, Trigonometry. And Vectors
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5. If 100 cu ft of atmposheric air at zero
Farenheit temperature are compressed to a
volume of 1 cu ft at a temperature of 200
deg F, what will be the pressure of the air in
psi? *
6. Four hundred cubic centimeters of a gas
at 740 mmHg absoulte and 18 deg C
undergoes a process until the pressure
becomes 760 mmHg absolute and the
temperature 0 deg C. What is the final
volume of the gas? *
Transcribed Image Text:ul Globe 4:30 PM @38% Done A forms.office.com AA C 5. If 100 cu ft of atmposheric air at zero Farenheit temperature are compressed to a volume of 1 cu ft at a temperature of 200 deg F, what will be the pressure of the air in psi? * 6. Four hundred cubic centimeters of a gas at 740 mmHg absoulte and 18 deg C undergoes a process until the pressure becomes 760 mmHg absolute and the temperature 0 deg C. What is the final volume of the gas? *
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4. In a steaday low apparatus, 135 KJ or work
is done by each kg of fluid. The specific
volume of the fluid, pressure, and speed at
the inlet are 0.37 cu m/kg, 600 kPa, and 16
m/s. The inlet is 32 m above the floor, and
the discharge pipe is at floor level. The
discharge conditions are 0.62 cu m/kg, 100
kPa, and 270 m/s. The total heat loss
between the inlet and discharge is 9kJ/kg of
fluid. In flowing through this apparatus, does
the specific internal energy increase or
decrease, and by how much? *
Transcribed Image Text:all Globe ? 4:30 PM © 38% Done A forms.office.com AA 4. In a steaday low apparatus, 135 KJ or work is done by each kg of fluid. The specific volume of the fluid, pressure, and speed at the inlet are 0.37 cu m/kg, 600 kPa, and 16 m/s. The inlet is 32 m above the floor, and the discharge pipe is at floor level. The discharge conditions are 0.62 cu m/kg, 100 kPa, and 270 m/s. The total heat loss between the inlet and discharge is 9kJ/kg of fluid. In flowing through this apparatus, does the specific internal energy increase or decrease, and by how much? *
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