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(Solved): A beam is subjected to a uniformly distributed load W=35kN/m, a vertical load ...



A beam is subjected to a uniformly distributed load \( \mathrm{W}=35 \mathrm{kN} / \mathrm{m} \), a vertical load \( P=12 \mad) Where does the maximum moment occur under the uniformly distributed load (UDL) between B and C, measured FROM point B, ine) What is the value of this maximum moment under the UDL, in kNm?
Use - if the moment causes a hogging curvature (sad/nega???????

A beam is subjected to a uniformly distributed load , a vertical load applied at point , and another vertical load of applied at point , as shown in the figure below. a) Calculate the vertical reaction By, at support B, in . Use '-' if the reaction force is acting downwards, otherwise no sign is needed. Do NOT include any units. Do NOT round off any values until your final answer. Provide your answer to at least 2 decimal places. Answer: d) Where does the maximum moment occur under the uniformly distributed load (UDL) between B and C, measured FROM point B, in units of ? Hint: Use the value of the shear force in part c) to help you find this location. Do NOT round off any values until your final answer. Provide your answer to at least 2 decimal places. Answer: e) What is the value of this maximum moment under the UDL, in kNm? Use '-' if the moment causes a hogging curvature (sad/negative face) of the beam, otherwise no sign is needed (for a sagging (happy/positive face)) curvature. Do NOT include any units. Do NOT round off any values until your final answer. Provide your answer to at least 2 decimal places. Answer:


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SOLUTION:-4m1m3m35KN/m25KNDCEBA12KN1m12KN101.40KN38.60KN25 KNXXxShear force diagram1) S
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