Determine with the finite element method the magnitude of the reaction force at node 3 of the following bar-spring system. Consider k = 2x10^6 N/m, L = 2 m, E = 70 GPa, A = 0.001 m^2, P = 20 kN =___ N F3x k 2 Jurš P -8 625.32 N O-18 918.90 N -10 081.07 N -12 523.86 N -16 425.89 N EA L 3

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter1: Tension, Compression, And Shear
Section: Chapter Questions
Problem 1.8.4P: The inclined ladder AB supports a house painter (85 kg) at C and the weight iq = 40 K/m} of the...
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Determine with the finite element
method the magnitude of the
reaction force at node 3 of the
following bar-spring system.
Consider
k = 2x10^6 N/m, L = 2 m, E = 70 GPa,
A = 0.001 m^2, P = 20 kN
F3x
O
k
=
--- /
2 P
-8 625.32 N
-18 918.90 N
O-10 081.07 N
-12 523.86 N
-16 425.89 N
EA
L
3
Transcribed Image Text:Determine with the finite element method the magnitude of the reaction force at node 3 of the following bar-spring system. Consider k = 2x10^6 N/m, L = 2 m, E = 70 GPa, A = 0.001 m^2, P = 20 kN F3x O k = --- / 2 P -8 625.32 N -18 918.90 N O-10 081.07 N -12 523.86 N -16 425.89 N EA L 3
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