Question: The force distribution w(x) exerted on a simply supported beam is shown below: 100e* w(x) =- N/m (x² +2)1.8 B 3 m In a 2-dimensional beam problem, shear force (V(x)) and bending moment (M(x)) distribution occur along the beam. Using bisection method, find the location along the beam where the maximum bending occur. Select your starting points as x=0.5 and x=2.5 and continue your iterations until approximate error (E,) satisfy the tolerance (ɛ,) of 1x10³ For calculations of involved integrals, use 4-point Gauss Quadrature technique.

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Chapter5: Analysis Of Convection Heat Transfer
Section: Chapter Questions
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Question: The force distribution w(x) exerted on a simply supported beam is shown below:
y1
100e*
w(x) =-
(x² +2)!.8
N/m
В
3 m
In a 2-dimensional beam problem, shear force (V(x)) and bending moment (M(x)) distribution
occur along the beam. Using bisection method, find the location along the beam where the
maximum bending occur. Select your starting points as x=0.5 and x=2.5 and continue your
iterations until approximate error (E„) satisfy the tolerance (ɛ,) of lx10³, For calculations of
involved integrals, use 4-point Gauss Quadrature technique.
Transcribed Image Text:Question: The force distribution w(x) exerted on a simply supported beam is shown below: y1 100e* w(x) =- (x² +2)!.8 N/m В 3 m In a 2-dimensional beam problem, shear force (V(x)) and bending moment (M(x)) distribution occur along the beam. Using bisection method, find the location along the beam where the maximum bending occur. Select your starting points as x=0.5 and x=2.5 and continue your iterations until approximate error (E„) satisfy the tolerance (ɛ,) of lx10³, For calculations of involved integrals, use 4-point Gauss Quadrature technique.
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