A beam weighing 50 kg is attached to a pin at C and supported by a steel cable OA with Young's modulus, E- 200 x 10° N/m2 as shown in Figure Q2. An inclined force of 5000 N is applied to end of the beam at point D with 40 angle measured from the x-Axis. 5000 N 2.5 m mg 5 m 3 m Figure Q2 Loadings on beam a) Draw a free-body diagram of the beam b) Calculate the tension of steel cable OA c) Determine the reaction forces of Fex and Fo d) Determine the elongation of steel cable OA
A beam weighing 50 kg is attached to a pin at C and supported by a steel cable OA with Young's modulus, E- 200 x 10° N/m2 as shown in Figure Q2. An inclined force of 5000 N is applied to end of the beam at point D with 40 angle measured from the x-Axis. 5000 N 2.5 m mg 5 m 3 m Figure Q2 Loadings on beam a) Draw a free-body diagram of the beam b) Calculate the tension of steel cable OA c) Determine the reaction forces of Fex and Fo d) Determine the elongation of steel cable OA
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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