The free end of a cantilever is supported by a 10 mm diametre steel wire. Determine the force in wire and maximum bending moment in the beam when the cantilever is subjected to a uniformly distributed load of intensity 40 kN/m over its entire length (Figure 11.25). Given, flexural rigidity of beam 1 x 1013 Nmm2, Young's Modulus of the steel wire = 2 x 105 N/mm². //////// حکمہ mtih -40 kN/m -4 m steel wire 30°

Structural Analysis
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Chapter2: Loads On Structures
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11.4 The free end of a cantilever is supported by a 10 mm diametre steel wire. Determine the force
in wire and maximum bending moment in the beam when the cantilever is subjected to a uniformly
distributed load of intensity 40 kN/m over its entire length (Figure 11.25). Given, flexural rigidity
of beam = 1 x 1013 Nmm², Young's Modulus of the steel wire = 2 x 105 N/mm².
p
40 kN/m
-4 m-
steel wire
30°
Transcribed Image Text:11.4 The free end of a cantilever is supported by a 10 mm diametre steel wire. Determine the force in wire and maximum bending moment in the beam when the cantilever is subjected to a uniformly distributed load of intensity 40 kN/m over its entire length (Figure 11.25). Given, flexural rigidity of beam = 1 x 1013 Nmm², Young's Modulus of the steel wire = 2 x 105 N/mm². p 40 kN/m -4 m- steel wire 30°
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