Q1. The beam supports a uniform dead load of 500 N/m and a single live concentrated force of 3000 N. Determine (a) the maximum positive moment at C, and (b) the maximum positive shear at C. Assume the support at A is a roller and B is a pin. RA X 1 m. - (4-x) = 1 - 4 = 4 1kN 3 m B RB = 814

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Subject is structural analysis Please show each steps to the question and make it easy for me to understand. Explain the diagram
Q1. The beam supports a uniform dead load of 500 N/m and a single live concentrated force of 3000 N.
Determine
(a) the maximum positive moment at C, and
(b) the maximum positive shear at C. Assume the support at A is a roller and B is a pin.
RA
X
1 m.
- (4-x) = 1 - /
=
4
1kN
3 m
B
RB =
814
Transcribed Image Text:Q1. The beam supports a uniform dead load of 500 N/m and a single live concentrated force of 3000 N. Determine (a) the maximum positive moment at C, and (b) the maximum positive shear at C. Assume the support at A is a roller and B is a pin. RA X 1 m. - (4-x) = 1 - / = 4 1kN 3 m B RB = 814
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Could you explain how to get the reaction A and reaction at B it is in the given datat but assume it wasn't provided how would I solve for it. I am really confused so could you explain in detail. Also could you explain how you drew the ILD for the shear force and moment at C. What is ILD? Also where did 1/2 and 4 in the Mcmax equation. 

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