a) For the fixed steel beam shown in Figure 1, use the double-integration method, i) determine the reactions and moment reactions at the supports A and B, ii) derive the full equation of the deflection curve for the fixed steel beam, iii) determine the maximum deflection dm of the beam AB. El is constant b) Use superposition method to verify your answer in a) ii) 320 mm 290 mm В L 100 Figure 1

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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a) For the fixed steel beam shown in Figure 1, use the double-integration method,
i) determine the reactions and moment reactions at the supports A and B,
ii) derive the full equation of the deflection curve for the fixed steel beam,
iii) determine the maximum deflection đm of the beam AB. EI is constant
b) Use superposition method to verify your answer in a) ii)
320 mm
k =
290 mm
A
В
L
160mm-
Figure 1
Transcribed Image Text:a) For the fixed steel beam shown in Figure 1, use the double-integration method, i) determine the reactions and moment reactions at the supports A and B, ii) derive the full equation of the deflection curve for the fixed steel beam, iii) determine the maximum deflection đm of the beam AB. EI is constant b) Use superposition method to verify your answer in a) ii) 320 mm k = 290 mm A В L 160mm- Figure 1
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