For an inlet valve, the mass flow rate through the valve is 0.44 kg/s. The flow coefficient is 0.62 and the cylinder pressure is 105 kPa. Assume intake system pressure and temperature are 180 kPa and 527 K, the specific heat ratio is 1.3 and R =287 J / kg.K. The area of the valve is (SI unit): Select one: a. 2.30*10-3 O b. 3.45*10-2 O c. 1.43*10-3 O d. 1.75*10-3 O e. 0.85*10-2

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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For an inlet valve, the mass flow rate through the valve is 0.44 kg/s. The flow coefficient is 0.62 and the cylinder pressure is 105 kPa. Assume intake system pressure and temperature are 180 kPa and 527 K, the specific heat ratio is 1.3 and R =287 J / kg.K. The area of the valve is (SI unit): Select one: a. 2.30*10-3 O b. 3.45*10-2 O c. 1.43*10-3 O d. 1.75*10-3 O e. 0.85*10-2
For an inlet valve, the mass flow rate
through the valve is 0.44 kg/s. The
flow coefficient is 0.62 and the
cylinder pressure is 105 kPa. Assume
intake system pressure and
temperature are 180 kPa and 527 K,
the specific heat ratio is 1.3 and R
=287 J/ kg.K. The area of the valve is
(SI unit):
Select one:
O a. 2.30*10-3
O b. 3.45*10-2
c. 1.43*10-3
O d. 1.75*10-3
e. 0.85*10-2
Transcribed Image Text:For an inlet valve, the mass flow rate through the valve is 0.44 kg/s. The flow coefficient is 0.62 and the cylinder pressure is 105 kPa. Assume intake system pressure and temperature are 180 kPa and 527 K, the specific heat ratio is 1.3 and R =287 J/ kg.K. The area of the valve is (SI unit): Select one: O a. 2.30*10-3 O b. 3.45*10-2 c. 1.43*10-3 O d. 1.75*10-3 e. 0.85*10-2
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