A solid shaft of diameter 100 mm, length 1000 mm is subjected to a twisting moment T. The maximum shear stress developed in the shaft is 60 N/m². A hole of 50 mm diameter is now drilled throughout the length of the shaft. To develop a maximum shear stress of 60 N/m² in the hollow shaft, the torque T must be reduced by
A solid shaft of diameter 100 mm, length 1000 mm is subjected to a twisting moment T. The maximum shear stress developed in the shaft is 60 N/m². A hole of 50 mm diameter is now drilled throughout the length of the shaft. To develop a maximum shear stress of 60 N/m² in the hollow shaft, the torque T must be reduced by
Chapter2: Loads On Structures
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![A solid shaft of diameter 100 mm, length 1000 mm is subjected to a twisting
moment T. The maximum shear stress developed in the shaft is 60 N/m². A hole
of 50 mm diameter is now drilled throughout the length of the shaft. To develop
a maximum shear stress of 60 N/m² in the hollow shaft, the torque T must be
reduced by](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Faaa3e115-d4df-41c9-8ce7-9cbb8dcd09fa%2Fc3f2f325-bba7-4dda-8061-6fe82215168f%2Fs18fjoq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A solid shaft of diameter 100 mm, length 1000 mm is subjected to a twisting
moment T. The maximum shear stress developed in the shaft is 60 N/m². A hole
of 50 mm diameter is now drilled throughout the length of the shaft. To develop
a maximum shear stress of 60 N/m² in the hollow shaft, the torque T must be
reduced by
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