A beam is shown with a distributed loading force 3 kN. Determine an equation for the shear force and bending moment as a function of the distance from its mounting point at B. Plot the functions from 0 ≤ ≤ 3 and determine the magnitude of the maximum value in that interval. Ţ V(x) = A 1 -1 -2- -3 -4 -5 -6- Mmax -8 -9 Vmax M(x) Clear All Draw: Polygon 3kN Clear All Draw: L KN. 2 MIN. WARNSTOLATING HANTERINWW WWW MA MO KN B [[[[ N
A beam is shown with a distributed loading force 3 kN. Determine an equation for the shear force and bending moment as a function of the distance from its mounting point at B. Plot the functions from 0 ≤ ≤ 3 and determine the magnitude of the maximum value in that interval. Ţ V(x) = A 1 -1 -2- -3 -4 -5 -6- Mmax -8 -9 Vmax M(x) Clear All Draw: Polygon 3kN Clear All Draw: L KN. 2 MIN. WARNSTOLATING HANTERINWW WWW MA MO KN B [[[[ N
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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A beam is shown with a distributed loading force 3 kN. Determine an equation for the shear force and bending moment as a function of the distance □ from its mounting point at B. Plot the functions from 0 < <3 and determine the magnitude of the maximum value in that interval. 3kN T A B [ V(x) L 3 KN.
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