The beam, which is made of a W250x28 profile (1=39.9x106 m4) has a constant distributed load w = 1 kN/m, length L₁ = 6 m, elastic modulus E₁ =200 GPa, and is supported by the fixed wall at B and the rod connected at L₁/2. If the rod has a cross sectional area of 104 m², lenght L2 = 3 m and the material has a modulus of elasticity E2-70 GPa, determine the force in the rod. T L2 W C Lu L1/2 B

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter11: Columns
Section: Chapter Questions
Problem 11.5.10P: Solve the preceding problem (W 250 × 44.8) if the resultant force P equals 110 kN and E = 200 GPa.
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Hi, can you please help me with this mechanics of materials problem? We have recently been studying deflection and superposition. 

The beam, which is made of a W250x28 profile
(1=39.9x106 m4) has a constant distributed
load w = 1 kN/m, length L₁ = 6 m, elastic
modulus E₁ =200 GPa, and is supported by the
fixed wall at B and the rod connected at L₁/2. If
the rod has a cross sectional area of 104 m²,
lenght L2 = 3 m and the material has a modulus
of elasticity E2-70 GPa, determine the force in
the rod.
T
L2
W
C
Lu
L1/2
B
Transcribed Image Text:The beam, which is made of a W250x28 profile (1=39.9x106 m4) has a constant distributed load w = 1 kN/m, length L₁ = 6 m, elastic modulus E₁ =200 GPa, and is supported by the fixed wall at B and the rod connected at L₁/2. If the rod has a cross sectional area of 104 m², lenght L2 = 3 m and the material has a modulus of elasticity E2-70 GPa, determine the force in the rod. T L2 W C Lu L1/2 B
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