Water enters at section 1 at 10 m/s with sp gr of 0.998 and alcohol enterssections 2 at 6 m/s with sp gr of 0.8. Pipes 1 and 2 are of diameter 4 cmand 3 cm. Compute the exit velocity and density of the mixture. Assumeideal mixing of incompressible fluids. CHOICES: A. 9.48 m/s, 914 kg/m3 B. 8.71 m/s, 959 kg/m3 C. 8.5 m/s, 942 kg/m3 D. 9 m/s, 923 kg/m3
Water enters at section 1 at 10 m/s with sp gr of 0.998 and alcohol enterssections 2 at 6 m/s with sp gr of 0.8. Pipes 1 and 2 are of diameter 4 cmand 3 cm. Compute the exit velocity and density of the mixture. Assumeideal mixing of incompressible fluids. CHOICES: A. 9.48 m/s, 914 kg/m3 B. 8.71 m/s, 959 kg/m3 C. 8.5 m/s, 942 kg/m3 D. 9 m/s, 923 kg/m3
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Water enters at section 1 at 10 m/s with sp gr of 0.998 and alcohol enterssections 2 at 6 m/s with sp gr of 0.8. Pipes 1 and 2 are of diameter 4 cmand 3 cm. Compute the exit velocity and density of the mixture. Assumeideal mixing of incompressible fluids.
CHOICES:
A. 9.48 m/s, 914 kg/m3
B. 8.71 m/s, 959 kg/m3
C. 8.5 m/s, 942 kg/m3
D. 9 m/s, 923 kg/m3
![(1)
(3)
Ideal mixing
(2)
V Ps](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5354bb6e-6ee9-4ebd-ac39-a0c92b811861%2Ff316ae8b-895f-41dc-91bb-0700f656c2f5%2Ffbh0lof_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(1)
(3)
Ideal mixing
(2)
V Ps
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