An oil having a sp.gr. of 0.80 has a kinematic viscosity of 2 x 10-5 m²/s flows in a 100 mm diameter pipe at a rate of 0.001 m³/s. v=& O Compute the Reynolds number. a) 758.6 c) 597.1 - b) 636.5 d) 448.6 2 Compute the velocity at the center. a) 0.3651 m/s c) 0.2546 m/s b) 0.5634 m/s d) 0.4785 m/s 3 Compute the velocity at a distances 20 mm from the center. a) 0415 m/s c) 0214 m/s

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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An oil having a sp.gr. of 0.80 has a
kinematic viscosity of 2 x 10-5 m²/s flows
in a 100 mm diameter pipe at a rate of
0.001 m³/s.
v=%
2
Compute the Reynolds number. 0-
a) 758.6
b) 636.5
c) 597.1
d) 448.6
Compute the velocity at the center. V
a) 0.3651 m/s c) 0.2546 m/s
b) 0.5634 m/s d) 0.4785 m/s
3 Compute the velocity at a distance
20 mm from the center.
a) 0.415 m/s
b) 0.569 m/s
c) 0.214 m/s
d) 0.312 m/s
Transcribed Image Text:An oil having a sp.gr. of 0.80 has a kinematic viscosity of 2 x 10-5 m²/s flows in a 100 mm diameter pipe at a rate of 0.001 m³/s. v=% 2 Compute the Reynolds number. 0- a) 758.6 b) 636.5 c) 597.1 d) 448.6 Compute the velocity at the center. V a) 0.3651 m/s c) 0.2546 m/s b) 0.5634 m/s d) 0.4785 m/s 3 Compute the velocity at a distance 20 mm from the center. a) 0.415 m/s b) 0.569 m/s c) 0.214 m/s d) 0.312 m/s
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