Oxygen and methane, having mass densities of 1.35 kg/m and 0.678 kg/m, respectively, are mixed at a certain pressure and temperature. The velocity of the gases into the mixture is 5 m/s. The density of the gas leaving the mixer is 2.2 kg/m°. Determine the exit velocity of the gas mixture. 5. CH4 A = 1 cm² A = 3 cm2 A = 3 cm2 02 A. 2.686 m/s B. 2.564 m/s C. 1.923 m/s D. 3.582 m/s

Sustainable Energy
2nd Edition
ISBN:9781337551663
Author:DUNLAP, Richard A.
Publisher:DUNLAP, Richard A.
Chapter18: Energy Storage
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Please answer, hydraulics.
Oxygen and methane, having mass densities of 1.35 kg/m³ and 0.678 kg/m³, respectively, are mixed at a certain
pressure and temperature. The velocity of the gases into the mixture is 5 m/s. The density of the gas leaving the
mixer is 2.2 kg/m°. Determine the exit velocity of the gas mixture.
CH4
A = 1 cm²
A = 3 cm²
A = 3 cm2
02
A. 2.686 m/s
B. 2.564 m/s
C. 1.923 m/s
D. 3.582 m/s
5.
Transcribed Image Text:Oxygen and methane, having mass densities of 1.35 kg/m³ and 0.678 kg/m³, respectively, are mixed at a certain pressure and temperature. The velocity of the gases into the mixture is 5 m/s. The density of the gas leaving the mixer is 2.2 kg/m°. Determine the exit velocity of the gas mixture. CH4 A = 1 cm² A = 3 cm² A = 3 cm2 02 A. 2.686 m/s B. 2.564 m/s C. 1.923 m/s D. 3.582 m/s 5.
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