An infinite plate is moved over a second plate on a layer of liquid as shown in figue (4) .For small gap width d, we assume a linear velocity distrbution in the liquid .The liquid viscocity is 0.65 centipoise and its specific gravity is 0.88. Determine :- (a) The absolute viscosity of the liquid, in Ib.s /ft2 (b) The kinematic viscosity of the liquid, in m2/s (c) The shear stress on the upper plate, in Ib/ft2

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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An infinite plate is moved over a second plate on a layer of liquid as shown in figue (4) .For small gap
width d, we assume a linear velocity distrbution in the liquid .The liquid viscocity is 0.65 centipoise
and its specific gravity is 0.88. Determine :-
(a) The absolute viscosity of the liquid, in Ib.s /ft2
(b) The kinematic viscosity of the liquid, in m2/s
(c) The shear stress on the upper plate, in Ib/ft2
(d) The shear stress on the lower plate, in Pa.
(e) The direction of each shear stress calculated in parts ( c ) and (d)
li = 0.3 m/s
d = 0.3 mm
Figure (4)
Transcribed Image Text:An infinite plate is moved over a second plate on a layer of liquid as shown in figue (4) .For small gap width d, we assume a linear velocity distrbution in the liquid .The liquid viscocity is 0.65 centipoise and its specific gravity is 0.88. Determine :- (a) The absolute viscosity of the liquid, in Ib.s /ft2 (b) The kinematic viscosity of the liquid, in m2/s (c) The shear stress on the upper plate, in Ib/ft2 (d) The shear stress on the lower plate, in Pa. (e) The direction of each shear stress calculated in parts ( c ) and (d) li = 0.3 m/s d = 0.3 mm Figure (4)
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