The composite shaft, consisting of aluminum, copper, and steel sections, is subjected to the loading shown. Determine the displacement of end A with respect to end D. The cross-sectional area and modulus of elasticity for each section are shown in the figure. Neglect the size of the collars at B and C. 16 kN 9 KN 16 KN 450 mm-300 mm- Section AB is Aluminum with Young's modulus of 70 GPa and an area of 63 mm². Section BC is Copper with Young's modulus of 126 GPa and an area of 87 mm². Section CD is Steel with Young's modulus of 200 GPa and an area of 39 mm². The displacement of end A with respect to end D is. Note: Please enter your answer with three significant digits after the decimal point mm 8 KN 8 KN 400 mm- 7kN
The composite shaft, consisting of aluminum, copper, and steel sections, is subjected to the loading shown. Determine the displacement of end A with respect to end D. The cross-sectional area and modulus of elasticity for each section are shown in the figure. Neglect the size of the collars at B and C. 16 kN 9 KN 16 KN 450 mm-300 mm- Section AB is Aluminum with Young's modulus of 70 GPa and an area of 63 mm². Section BC is Copper with Young's modulus of 126 GPa and an area of 87 mm². Section CD is Steel with Young's modulus of 200 GPa and an area of 39 mm². The displacement of end A with respect to end D is. Note: Please enter your answer with three significant digits after the decimal point mm 8 KN 8 KN 400 mm- 7kN
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Question
![The composite shaft, consisting of aluminum, copper, and steel sections, is subjected to the loading shown. Determine the displacement of end A with respect to end
D. The cross-sectional area and modulus of elasticity for each section are shown in the figure. Neglect the size of the collars at B and C
16 kN
8 KN
9 KN
450 mm-
16 KN C
300 mm-
Section AB is Aluminum with Young's modulus of 70 GPa and an area of 63 mm².
Section BC is Copper with Young's modulus of 126 GPa and an area of 87 mm².
Section CD is Steel with Young's modulus of 200 GPa and an area of 39 mm.
The displacement of end A with respect to end Dis
Note: Please enter your answer with three significant digits after the decimal point.
.mm
8 KN
400 mm-
7 KN](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4e6aa4f7-903f-4462-aeb4-2fcea37c7507%2F0e91bef9-f076-4590-a600-aab9f084cc6e%2Fsugnnfv_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The composite shaft, consisting of aluminum, copper, and steel sections, is subjected to the loading shown. Determine the displacement of end A with respect to end
D. The cross-sectional area and modulus of elasticity for each section are shown in the figure. Neglect the size of the collars at B and C
16 kN
8 KN
9 KN
450 mm-
16 KN C
300 mm-
Section AB is Aluminum with Young's modulus of 70 GPa and an area of 63 mm².
Section BC is Copper with Young's modulus of 126 GPa and an area of 87 mm².
Section CD is Steel with Young's modulus of 200 GPa and an area of 39 mm.
The displacement of end A with respect to end Dis
Note: Please enter your answer with three significant digits after the decimal point.
.mm
8 KN
400 mm-
7 KN
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