A cantilever beam with circular cross-section of radius 100 mm is subjected to a uniformly distributed load over the entire span. It is given that the deflected shape of the beam has a maximum curvature of 1.018592 x 10-6 mm-¹ and a maximum shear force of 1 kN. Find the intensity of loading on the beam and its span. E = 2 x 105 MPa.
A cantilever beam with circular cross-section of radius 100 mm is subjected to a uniformly distributed load over the entire span. It is given that the deflected shape of the beam has a maximum curvature of 1.018592 x 10-6 mm-¹ and a maximum shear force of 1 kN. Find the intensity of loading on the beam and its span. E = 2 x 105 MPa.
Chapter2: Loads On Structures
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![A cantilever beam with circular cross-section of radius 100 mm is subjected to a uniformly distributed
load over the entire span. It is given that the deflected shape of the beam has a maximum curvature
of 1.018592 x 10-6 mm-¹ and a maximum shear force of 1 kN. Find the intensity of loading on the
beam and its span. E = 2 x 105 MPa.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6983a2dd-902b-4b33-8d9a-3d690bb7bb8f%2Faf85600f-c782-4f58-a095-378396ec60be%2Fcyhp0h_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A cantilever beam with circular cross-section of radius 100 mm is subjected to a uniformly distributed
load over the entire span. It is given that the deflected shape of the beam has a maximum curvature
of 1.018592 x 10-6 mm-¹ and a maximum shear force of 1 kN. Find the intensity of loading on the
beam and its span. E = 2 x 105 MPa.
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