QUESTION 3 The beam in Figure 3 is roller supported at A and B, pinned at D and hinged at of the hinge is given in the figure, where a is the last two digits of your matrix num for matrix number 201234, a/100 = 0.34; for matrix number 201204, a/100 = 0.0 200 GPa, and I as 11250 cm*. a) Draw the deflected shape of the beam.

Structural Analysis
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Chapter2: Loads On Structures
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QUESTION 3
The beam in Figure 3 is roller supported at A and B, pinned at D and hinged at c. The location
of the hinge is given in the figure, where a is the last two digits of your matrix number (Example:
for matrix number 201234, a/100 = 0.34; for matrix number 201204, a/100 = 0.04). Given E as
200 GPa, and I as 11250 cm*.
a) Draw the deflected shape of the beam.
b) Using conjugate beam method, determine the deflection at point C. Indicate the direction
of the deflection.
100 kN
C
2 m
3 m
a/100*L
L = 6 m
Figure 3
Transcribed Image Text:QUESTION 3 The beam in Figure 3 is roller supported at A and B, pinned at D and hinged at c. The location of the hinge is given in the figure, where a is the last two digits of your matrix number (Example: for matrix number 201234, a/100 = 0.34; for matrix number 201204, a/100 = 0.04). Given E as 200 GPa, and I as 11250 cm*. a) Draw the deflected shape of the beam. b) Using conjugate beam method, determine the deflection at point C. Indicate the direction of the deflection. 100 kN C 2 m 3 m a/100*L L = 6 m Figure 3
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