Situation 1: Given the beam loaded as shown: 25 kN/m D. B C -3 m+ -10 m- 4 im- El = constant E-200 GPa 1-500(10) mm² Determine the location of the maximum deflection (from point A) and the value of this maximum deflection (in mm) on the simply supported beam. Use double integration E 200 GPa, I 500x10 mm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Determine the location of maximum deflection (from point A) and the value of this maximum deflection (in mm) on the simply supported beam. USE DOUBLE INTEGRATION METHOD.

E=200 GPa

I= 500x10^6 mm^4

Situation 1: Given the beam loaded as shown:
25 kN/m
D.
B
C
-3 m+
-10 m-
4 im-
El = constant
E-200 GPa
1500(10) mm²
Determine the location of the maximum deflection (from point A) and the value of this
maximum deflection (in mm) on the simply supported beam. Use double integration E 200 GPa, I
500x10 mm.
Transcribed Image Text:Situation 1: Given the beam loaded as shown: 25 kN/m D. B C -3 m+ -10 m- 4 im- El = constant E-200 GPa 1500(10) mm² Determine the location of the maximum deflection (from point A) and the value of this maximum deflection (in mm) on the simply supported beam. Use double integration E 200 GPa, I 500x10 mm.
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