Using the moment area method, find the deflection under the P applied load. A is a pin, C is a roller. E = 200 GPa and I = 216 x 106 mm4, El constant. P = 80 KN, a = 4.5m, 1.5mUsing the moment area method, find the deflection under the P applied load. A is a pin, C is a roller. E = 200GPa and I = 216 x 10 mm, El constant. = Using the moment area method, find the deflection under the P applied load. A is a pin, C is a roller. E=200 GPa and l= 216 x 105 mm², El constant.

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Using the moment area method, find the deflection under the P applied load.
A is a pin, C is a roller. E = 200 GPa and I = 216 x 106 mm4, El constant. P
= 80 KN, a = 4.5m, 1.5mUsing the moment area method, find the
deflection under the P applied load. A is a pin, C is a roller. E = 200GPa and
I = 216 x 10 mm, El constant.
=
Using the moment area method, find the deflection under the P applied load. A is a pin, C is a
roller.
E=200 GPa and l= 216 x 105 mm², El constant.
Transcribed Image Text:Using the moment area method, find the deflection under the P applied load. A is a pin, C is a roller. E = 200 GPa and I = 216 x 106 mm4, El constant. P = 80 KN, a = 4.5m, 1.5mUsing the moment area method, find the deflection under the P applied load. A is a pin, C is a roller. E = 200GPa and I = 216 x 10 mm, El constant. = Using the moment area method, find the deflection under the P applied load. A is a pin, C is a roller. E=200 GPa and l= 216 x 105 mm², El constant.
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