For the following cantilever beam has a length b = 6m and is made of a circular cross sectional with a radius R = 1m. If the beam is subjected to the following 3 loads: 1- Compression normal force F = 100KN. (see perspective view) 2- A load P = 200KN at the end of the lever with a length a = 3m. (see perspective view) 3- A triangular distributed load that starts at zero and goes up to 9KN/m. (see side view) If the beam is made of material that has modules of elasticity E = 200GPA, shear modulus G = 77GPA, Poisson ration 0.3 = 0, and a yielding stress of 600MPа.
For the following cantilever beam has a length b = 6m and is made of a circular cross sectional with a radius R = 1m. If the beam is subjected to the following 3 loads: 1- Compression normal force F = 100KN. (see perspective view) 2- A load P = 200KN at the end of the lever with a length a = 3m. (see perspective view) 3- A triangular distributed load that starts at zero and goes up to 9KN/m. (see side view) If the beam is made of material that has modules of elasticity E = 200GPA, shear modulus G = 77GPA, Poisson ration 0.3 = 0, and a yielding stress of 600MPа.
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100%
![Side view
For the following cantilever beam has a length b = 6m
and is made of a circular cross sectional with a radius
R = 1m. If the beam is subjected to the following 3
%D
loads:
1- Compression normal force F = 100KN. (see
perspective view)
2- A load P = 200KN at the end of the lever with a
%3D
length a = 3m. (see perspective view)
3- A triangular distributed load that starts at zero
and goes up to 9KN/m. (see side view)
If the beam is made of material that has modules of
elasticity E = 200GPA, shear modulus G = 77GPA,
Poisson ration 0.3 = v, and a yielding stress of
600MPA.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa050c029-5d4c-436f-b475-abb660b33690%2F19f71461-b01d-4b1a-92b0-b5bafa7569e4%2Fmudc2k_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Side view
For the following cantilever beam has a length b = 6m
and is made of a circular cross sectional with a radius
R = 1m. If the beam is subjected to the following 3
%D
loads:
1- Compression normal force F = 100KN. (see
perspective view)
2- A load P = 200KN at the end of the lever with a
%3D
length a = 3m. (see perspective view)
3- A triangular distributed load that starts at zero
and goes up to 9KN/m. (see side view)
If the beam is made of material that has modules of
elasticity E = 200GPA, shear modulus G = 77GPA,
Poisson ration 0.3 = v, and a yielding stress of
600MPA.
![B
b
C.
a
N.A.
R.
D.
F
'P
Perspective view
9 kN/m
Side view
%3D
For the following cantilever beam has a length b = 6m
and is made of a circular cross sectional with a radius
R = 1m. If the beam is subjected to the following 3
%D
loads:
1- Compression normal force F = 100KN. (see
perspective view)
2- A load P = 200KN at the end of the lever with a
length a = 3m. (see perspective view)
3- A triangular distributed load that starts at zero
and goes up to 9KN/m. (see side view)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa050c029-5d4c-436f-b475-abb660b33690%2F19f71461-b01d-4b1a-92b0-b5bafa7569e4%2F06ii1n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:B
b
C.
a
N.A.
R.
D.
F
'P
Perspective view
9 kN/m
Side view
%3D
For the following cantilever beam has a length b = 6m
and is made of a circular cross sectional with a radius
R = 1m. If the beam is subjected to the following 3
%D
loads:
1- Compression normal force F = 100KN. (see
perspective view)
2- A load P = 200KN at the end of the lever with a
length a = 3m. (see perspective view)
3- A triangular distributed load that starts at zero
and goes up to 9KN/m. (see side view)
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