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Engineering · Mechanical Engineering
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2. The beam shown is subjected to a concentrated load of 6 kN as shown in fig. 2. 6 kN 2 Ху Fig. 2. Beam subjected to loading as uidicated. Assuming El to be the same throughout the beam, and that the maximum deflection occurs in the left section of the beam (at D, as shown in fig. 2), a. Determine the bending moment M and transverse shear force V at distance x1 and x2 from A, as indicated in fig. 2. Find the equations for deflection y for AB and BC by direct integration of the governing equation b. using relevant boundary conditions. Hint: You will need four boundary conditions in dx EI all. For boundary conditions at point B, note that the deflection and its slope must come out to be the same using either equation. Determine the location D where ymax occurs. Find ymax in terms of El. Check your answer by comparing with the value computed from tables, c. d. 2.90 kN.m

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