cantilever beam has a steel cable of circular cross-section area at the end. What is the area of the cable’s cross section area if there is no observed deflection at point B? The modulus of elasticity of both beam and cable is 200GPa, and the beam is a steel section with I = 120 x 106 mm4 (Hint: recall axial deformations) USE THE DOUBLE INTEGRATION METHOD

Structural Analysis
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Chapter2: Loads On Structures
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The cantilever beam has a steel cable of circular cross-section area at the end. What is the area of the cable’s cross section area if there is no observed deflection at point B? The modulus of elasticity of both beam and cable is 200GPa, and the beam is a steel section with I = 120 x 106 mm4 (Hint: recall axial deformations) USE THE DOUBLE INTEGRATION METHOD.

3. The cantilever beam has a steel cable of circular cross-section area at the end. What
is the area of the cable's cross section area if there is no observed deflection at point
B? The modulus of elasticity of both beam and cable is 200GPA, and the beam is a
steel section with l= 120 x 10° mm“. (Hint: recall axial deformations)
A
A = ?
3 m
20 kN/m
В
C
6 m-
Transcribed Image Text:3. The cantilever beam has a steel cable of circular cross-section area at the end. What is the area of the cable's cross section area if there is no observed deflection at point B? The modulus of elasticity of both beam and cable is 200GPA, and the beam is a steel section with l= 120 x 10° mm“. (Hint: recall axial deformations) A A = ? 3 m 20 kN/m В C 6 m-
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