For the propped cantilever beam in the figure, show that the moment at the fixed end, MB = Mo/2 and the rotation at A, OA = MOL/4EI. (one way to solve this problem is to use MB as unknown, find OA, then find fBB and then use compatibility equation at BOA +fB MB = 0) Mo Co A Mo L EI ܣܝܝܝܚܥ
For the propped cantilever beam in the figure, show that the moment at the fixed end, MB = Mo/2 and the rotation at A, OA = MOL/4EI. (one way to solve this problem is to use MB as unknown, find OA, then find fBB and then use compatibility equation at BOA +fB MB = 0) Mo Co A Mo L EI ܣܝܝܝܚܥ
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![For the propped cantilever beam in the figure, show that the moment at the fixed end,
MB = Mo/2 and the rotation at A, OA = MOL/4EI. (one way to solve this problem is to use MB
as unknown, find OA, then find fBB and then use compatibility equation at B OA + fB MB = 0)
Mo
A
Mo
Co
L
EI
Obtain B
obtain fs
ܐ ܝܝܝܥܠ
B
&
B
Primary structure
(stable, determinate)
1 k-1
22 Apply I unit
mament at 8
to obtain fe](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fca36b3f2-884c-470c-99d3-dd12a6ca50ab%2F10abcc6a-b0fa-40c5-a928-45794a973aaa%2Fsurv5i_processed.jpeg&w=3840&q=75)
Transcribed Image Text:For the propped cantilever beam in the figure, show that the moment at the fixed end,
MB = Mo/2 and the rotation at A, OA = MOL/4EI. (one way to solve this problem is to use MB
as unknown, find OA, then find fBB and then use compatibility equation at B OA + fB MB = 0)
Mo
A
Mo
Co
L
EI
Obtain B
obtain fs
ܐ ܝܝܝܥܠ
B
&
B
Primary structure
(stable, determinate)
1 k-1
22 Apply I unit
mament at 8
to obtain fe
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