1). Determine the magnitude of the resultant internal normal force in the beam at cross-section through point D. 2). Determine the magnitude of the resultant internal shear force in the beam at cross-section through point D. 3). Determine the magnitude of the resultant internal bending moment in the beam at cross-section through point D.
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1). Determine the magnitude of the resultant internal normal force in the beam at cross-section through point D.
2). Determine the magnitude of the resultant internal shear force in the beam at cross-section through point D.
3). Determine the magnitude of the resultant internal bending moment in the beam at cross-section through point D.
4). Determine the magnitude of the resultant internal normal force in the beam at cross-section through point E.
5). Determine the magnitude of the resultant internal shear force in the beam at cross-section through point E.
6). Determine the magnitude of the resultant internal bending moment in the beam at cross-section through point E.
![Consider the beam in the figure below. Take w = 6 kip/ft
and P = 22 kip. Point E is just to the left of the 22-kip
load. (Figure 1)
Figure
W
D
-5 ft-5 ft-
B
-8 ft-
P
<
1 of 1
>](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff222bb2d-83f7-4b81-9492-f9e367abe508%2F8ad6d5f8-6abf-46ab-977f-53b1ab42e772%2F34udxvb_processed.png&w=3840&q=75)
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