The beam below is subjected to a uniformly distributed load of 2 KN/m from a A to C, and a uniformly varying load (2kN/m to 5 kN/m) is applied at Cto F. Two uniformly distributed loads support the beam on the location shown below. U, 9-2 1 1 (a) 1 (m 2 (m) 1 (m) D E 5. Determine the magnitude of W, in kN/m. 6. Determine the magnitude of W, in kN/m. 7. Determine the maximum moment. B. Determine the location of zero shear.

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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The beam below is subjected to a uniformly distributed load of 2 kN/m
from a A to C, and a uniformly varying load (2kN/m to 5 kN/m) is applied at C to F.
Two uniformly distributed loads support the beam on the location shown below.
U,
9-2
w,
1 (m)
1 (
2 (m)
1 (m)
D
5. Determine the magnitude of W; in kN/m.
6. Determine the magnitude of W, in kN/m.
7, Determine the maximum moment.
B. Determine the location of zero shear.
Transcribed Image Text:The beam below is subjected to a uniformly distributed load of 2 kN/m from a A to C, and a uniformly varying load (2kN/m to 5 kN/m) is applied at C to F. Two uniformly distributed loads support the beam on the location shown below. U, 9-2 w, 1 (m) 1 ( 2 (m) 1 (m) D 5. Determine the magnitude of W; in kN/m. 6. Determine the magnitude of W, in kN/m. 7, Determine the maximum moment. B. Determine the location of zero shear.
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