A distributed load is applied to a beam with q1 = 4 [N/m] and q2 = 16 [N/m]. The geometry is given by w1 7.2 [m] and w2 3.5 [m]. Note that the support at A is a pin and the support at B is a roller. - Part 1. Find the magnitude of the reaction force at point A in the y-direction. Part 2. Find the magnitude of the reaction force at point B in the y direction. y 91 - W₁ 33 3% [N] 33 3% W₂ 100% ♡ 100% 92 x Submi Subm

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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Pravinbhai 

A distributed load is applied to a beam with
q1 = 4 [N/m] and q2 = 16 [N/m]. The
geometry is given by w1
7.2 [m] and w2
3.5 [m]. Note that the support at A is a pin and
the support at B is a roller.
=
=
Part 1. Find the magnitude of the reaction force at point
A in the y-direction.
Part 2. Find the magnitude of the reaction force at point
B in the y direction.
y
A
91
W₁
33 3% 100%
[N]
[N]
33 3%
100%
W2
92
X
Submit
Submit
Transcribed Image Text:A distributed load is applied to a beam with q1 = 4 [N/m] and q2 = 16 [N/m]. The geometry is given by w1 7.2 [m] and w2 3.5 [m]. Note that the support at A is a pin and the support at B is a roller. = = Part 1. Find the magnitude of the reaction force at point A in the y-direction. Part 2. Find the magnitude of the reaction force at point B in the y direction. y A 91 W₁ 33 3% 100% [N] [N] 33 3% 100% W2 92 X Submit Submit
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