A square block has 320 mm bottom sides dimensions, weighing W is 1.4 kN on an edge slides down an incline angle 0 is 20° on a film of oil 6 mm thickness, as shown below. Assuming a linear velocity profile in the oil. The viscosity of the oil is 0.009 Pa.s. W y Determine the force acting on the block, F. What is the velocity of the block, V?

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A square block has 320 mm bottom sides dimensions, weighing W is 1.4 kN
on an edge slides down an incline angle 0 is 20° on a film of oil 6 mm
thickness, as shown below. Assuming a linear velocity profile in the oil. The
viscosity of the oil is 0.009 Pa.s.
W
y
Determine the force acting on the block, F.
What is the velocity of the block, V?
Transcribed Image Text:A square block has 320 mm bottom sides dimensions, weighing W is 1.4 kN on an edge slides down an incline angle 0 is 20° on a film of oil 6 mm thickness, as shown below. Assuming a linear velocity profile in the oil. The viscosity of the oil is 0.009 Pa.s. W y Determine the force acting on the block, F. What is the velocity of the block, V?
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