1) In the table below; Shear stress, dyn/cm? dV/dx1, m/cm.s dV/dx2, m/cm.s 0,60 0,81 1,07 8,39 0,6 0,81 1,07 8,39 0,30 0,67 2,02 5,7 Values for a fluid flowing in a circular pipe are given in the table. a) by writing Newton's law of viscosity, b) Determine the flow behavior of the fluids, show on the graph that they obey the Newtonian or non- Newtonian flow behavior. Calculate the dynamic viscosity values on the graph. c) If the viscosity of the liquid is 0.121 g/cm3, calculate the kinematic viscosity.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
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1) In the table below;
Shear stress,
dyn/cm?
0,60
0,81
1,07
8,39
dV/dx1, m/cm.s
0,6
0,81
1,07
8,39
dV/dx2, m/cm.s
0,30
0,67
2,02
5,7
Values for a fluid flowing in a circular pipe are given in the table.
a) by writing Newton's law of viscosity,
b) Determine the flow behavior of the fluids, show on the graph that they obey the Newtonian or non-
Newtonian flow behavior. Calculate the dynamic viscosity values on the graph.
c) If the viscosity of the liquid is 0.121 g/cm3, calculate the kinematic viscosity.
Transcribed Image Text:1) In the table below; Shear stress, dyn/cm? 0,60 0,81 1,07 8,39 dV/dx1, m/cm.s 0,6 0,81 1,07 8,39 dV/dx2, m/cm.s 0,30 0,67 2,02 5,7 Values for a fluid flowing in a circular pipe are given in the table. a) by writing Newton's law of viscosity, b) Determine the flow behavior of the fluids, show on the graph that they obey the Newtonian or non- Newtonian flow behavior. Calculate the dynamic viscosity values on the graph. c) If the viscosity of the liquid is 0.121 g/cm3, calculate the kinematic viscosity.
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