The copper pipe has an outer diameter of 40 mm and an inner diameter of 37 mm. If it is tightly secured to the wall at A and 3 torques are applied to it as shown, determine the absolute maximum shear stress developed in the pipe. Given the shear modulus G = 37 GPa for copper and the segmental lengths of the pipe, calculate the angle of twist of point D with respect to point A| A B Length: AB = 0.6 m ´30 N-m D 20 N-m BC = 0.6 m CD = 1.2 m 80 N-m

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The copper pipe has an outer diameter of 40 mm and an inner diameter of 37 mm. If it is tightly
secured to the wall at A and 3 torques are applied to it as shown, determine the absolute
maximum shear stress developed in the pipe. Given the shear modulus G = 37 GPa for copper
and the segmental lengths of the pipe, calculate the angle of twist of point D with respect to point
A|
B
Length:
AB = 0.6 m
´ 30 N-m
20 N-m
BC = 0.6 m
CD = 1.2 m
80 N-m
Transcribed Image Text:The copper pipe has an outer diameter of 40 mm and an inner diameter of 37 mm. If it is tightly secured to the wall at A and 3 torques are applied to it as shown, determine the absolute maximum shear stress developed in the pipe. Given the shear modulus G = 37 GPa for copper and the segmental lengths of the pipe, calculate the angle of twist of point D with respect to point A| B Length: AB = 0.6 m ´ 30 N-m 20 N-m BC = 0.6 m CD = 1.2 m 80 N-m
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