The A beam shown in the figure is subjected to concentrated loads at point c and D. span AB has a moment of Inertia which is one half of the moment of Inertia of the span BE. Assuming constant value of E throughout the span. 100 KN 100 KN B с 9.) Compute the moment at A b.) Compute the moment at E c) Compute the moment at c -Com + Com- F ·6m -21 -am-

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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Solve using three moment method.

The
A beam shown in the figure is subjected to concentrated loads at point c and D.
span
AB has a moment of Inertia which is one half of the moment of
Inertia of the span BE. Assuming constant value of E throughout the span.
100 KN
100KN
A
E
BE
с
9.) Compute the moment at A
b.) Compute the moment at E
c.) Compute the moment at c
F
·am.
Com-
Com.
-21-
・6M
Transcribed Image Text:The A beam shown in the figure is subjected to concentrated loads at point c and D. span AB has a moment of Inertia which is one half of the moment of Inertia of the span BE. Assuming constant value of E throughout the span. 100 KN 100KN A E BE с 9.) Compute the moment at A b.) Compute the moment at E c.) Compute the moment at c F ·am. Com- Com. -21- ・6M
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