2. Consider following beam: Given: F(Ay) = 645 N 600 N 1000 N B కా D -7.5 m- 1m a) Determine magnitude and location of equivalent concentrated force between points D and B using integration. b) Determine internal reaction at point K, located 3.5 m to the left of B by cutting the member from the right. (use following convention: a. Draw the free body diagram, where distributed force is replaced by the concentrated force. b. Solve for V(x=3.5) and M(x=3.5)
2. Consider following beam: Given: F(Ay) = 645 N 600 N 1000 N B కా D -7.5 m- 1m a) Determine magnitude and location of equivalent concentrated force between points D and B using integration. b) Determine internal reaction at point K, located 3.5 m to the left of B by cutting the member from the right. (use following convention: a. Draw the free body diagram, where distributed force is replaced by the concentrated force. b. Solve for V(x=3.5) and M(x=3.5)
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Solve this early as soon possible I upvote your solution. Solve all subparts
![2. Consider following beam:
Given: F(Ay) = 645 N
600 N
1000 N
B
కా
D
-7.5 m-
1m
a) Determine magnitude and location of equivalent concentrated force between points D and B
using integration.
b) Determine internal reaction at point K, located 3.5 m to the left of B by cutting the member
from the right. (use following convention:
a. Draw the free body diagram, where distributed force is replaced by the concentrated
force.
b. Solve for V(x=3.5) and M(x=3.5)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F833e7f67-125a-45aa-bc97-4ff857a42ca5%2F46350265-64e1-49bb-848e-e5e12626fd23%2F64tb2k.png&w=3840&q=75)
Transcribed Image Text:2. Consider following beam:
Given: F(Ay) = 645 N
600 N
1000 N
B
కా
D
-7.5 m-
1m
a) Determine magnitude and location of equivalent concentrated force between points D and B
using integration.
b) Determine internal reaction at point K, located 3.5 m to the left of B by cutting the member
from the right. (use following convention:
a. Draw the free body diagram, where distributed force is replaced by the concentrated
force.
b. Solve for V(x=3.5) and M(x=3.5)
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