Determine the reactions at node 1 using finite element method. You must use one beam element only that has 2 nodes and each node has 2 degrees of freedom (transverse displacement and rotation). Given that I = 8.33 x 10° m , A = 0.01 m´, a = L/5, b= 2L/3, E = 240 GPa, L = 3 m, F = 10 kN and M = 5 kN.m, 2 9. - L
Determine the reactions at node 1 using finite element method. You must use one beam element only that has 2 nodes and each node has 2 degrees of freedom (transverse displacement and rotation). Given that I = 8.33 x 10° m , A = 0.01 m´, a = L/5, b= 2L/3, E = 240 GPa, L = 3 m, F = 10 kN and M = 5 kN.m, 2 9. - L
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![Determine the reactions at node 1 using finite element method. You must use one beam element
only that has 2 nodes and each node has 2 degrees of freedom (transverse displacement and
rotation).
Given that I = 8.33 x 10° m", A = 0.01 m, a = L/5, b= 2L/3, E = 240 GPa, L = 3 m,
F = 10 kN and M = 5 KN.m,
2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2699e82a-55ed-406c-8c58-e73e338c5ed7%2F11204800-072f-4b7a-8b92-96fca62fca9d%2Ft7mzi3h_processed.png&w=3840&q=75)
Transcribed Image Text:Determine the reactions at node 1 using finite element method. You must use one beam element
only that has 2 nodes and each node has 2 degrees of freedom (transverse displacement and
rotation).
Given that I = 8.33 x 10° m", A = 0.01 m, a = L/5, b= 2L/3, E = 240 GPa, L = 3 m,
F = 10 kN and M = 5 KN.m,
2
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