lid bar consisting of two segments AB and BC, as shown in Figure 2(a), is fixed at C. Segment AB has a diameter of 20 mm and it is made of an ninum for which the allowable shear stress is 25 MPa. Segment BC has a diameter of 30 mm and it is made of a brass for which the allowable ar stress is 50 MPa. The lengths of Segments AB and BC are 0.4 m and 0.5 m, respectively. Determine the largest torque that can be applied at A: (3 marks) Calculate the angle of twist at A when the largest torque is applied. Use G-27 GPa for aluminum and G-40 GPa for brass. (3 marks) Figure 2(a) the same bar is subjected to a load P-5000 N applied at A along the vertical direction, as shown in Figure 2(b) ) Determine the magnitude of the maximum shear stress induced by the load P in Segment AB and specify the location of the maximum shear stress. (2 marks)

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
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Question 3
A solid bar consisting of two segments AB and BC, as shown in Figure 2(a), is fixed at C. Segment AB has a diameter of 20 mm and it is made of an
aluminum for which the allowable shear stress is 25 MPa. Segment BC has a diameter of 30 mm and it is made of a brass for which the allowable
shear stress is 50 MPa. The lengths of Segments AB and BC are 0.4 m and 0.5 m., respectively.
1) Determine the largest torque that can be applied at A: (3 marks)
2) Calculate the angle of twist at A when the largest torque is applied. Use G=27 GPa for aluminum and G=40 GPa for brass. (3 marks)
Figure 2(a)
If the same bar is subjected to a load P-5000 N applied at A along the vertical direction, as shown in Figure 2(b)
3) Deterimine the magnitude of the maximum shear stress induced by the load P in Segment AB and specify the location of the maximum shear
stress. (2 marks)
Transcribed Image Text:Question 3 A solid bar consisting of two segments AB and BC, as shown in Figure 2(a), is fixed at C. Segment AB has a diameter of 20 mm and it is made of an aluminum for which the allowable shear stress is 25 MPa. Segment BC has a diameter of 30 mm and it is made of a brass for which the allowable shear stress is 50 MPa. The lengths of Segments AB and BC are 0.4 m and 0.5 m., respectively. 1) Determine the largest torque that can be applied at A: (3 marks) 2) Calculate the angle of twist at A when the largest torque is applied. Use G=27 GPa for aluminum and G=40 GPa for brass. (3 marks) Figure 2(a) If the same bar is subjected to a load P-5000 N applied at A along the vertical direction, as shown in Figure 2(b) 3) Deterimine the magnitude of the maximum shear stress induced by the load P in Segment AB and specify the location of the maximum shear stress. (2 marks)
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