The kinematic viscosity of the oil filled between two concentric vertical 150 mm long cylinders is 1.5 stokes. The outer diameter of the inner cylinder is 0.2 m, and the gap between the two cylinders is 1.2 mm. The inner cylinder is rotated at 200 rpm. Determine the shear stress acting in between the cylinders if specific gravity of the oil is 0.85 and also find the force required to rotates the inner cylinder
The kinematic viscosity of the oil filled between two concentric vertical 150 mm long cylinders is 1.5 stokes. The outer diameter of the inner cylinder is 0.2 m, and the gap between the two cylinders is 1.2 mm. The inner cylinder is rotated at 200 rpm. Determine the shear stress acting in between the cylinders if specific gravity of the oil is 0.85 and also find the force required to rotates the inner cylinder
Chapter2: Loads On Structures
Section: Chapter Questions
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3) The kinematic viscosity of the oil filled between two concentric vertical 150 mm long cylinders is 1.5 stokes. The outer diameter of the inner cylinder is 0.2 m, and the gap between the two cylinders is 1.2 mm. The inner cylinder is rotated at 200 rpm. Determine the shear stress acting in between the cylinders if specific gravity of the oil is 0.85 and also find the force required to rotates the inner cylinder.
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