on 5 Let's consider a fixed supported beam subjected to a triangular distributed load as shown in the figure below. The equation of the bending moment(0 ≤ x ≤ 1m) is 100 N/m 1m 150 X-100 (N.m) 200 X-266.7 (N.m) + 400 x-533.3 (Nm) M(x) = -16.7 X 50 X-33.3 (Nm) M(x) = -83.3 X+250 X-166.7 (Nm) Finit wet wered ed out of D a question Select one: OM (x) = -50 X OM(x) = -16.7 X ⒸM (x)=-33.3 X

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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on 5
Let's consider a fixed supported beam subjected to a triangular distributed load as shown in the figure below. The equation of the bending moment(0 ≤ x ≤ 1m) is
100 N/m
1m
Select one:
ⒸM (x) = -50 X² + 150 X-100 (N.m)
OM(x) = -16.7 X 200 X-266.7 (N.m)
ⒸM (x)=-33.3 x² + 400 x-533.3 (Nm)
M(x) = -16.7 X 50 X-33.3 (Nm)
M(x) = -83.3 X + 250 X-166.7 (Nm)
Finit
wet
wered
sed out of
D
a question
Transcribed Image Text:on 5 Let's consider a fixed supported beam subjected to a triangular distributed load as shown in the figure below. The equation of the bending moment(0 ≤ x ≤ 1m) is 100 N/m 1m Select one: ⒸM (x) = -50 X² + 150 X-100 (N.m) OM(x) = -16.7 X 200 X-266.7 (N.m) ⒸM (x)=-33.3 x² + 400 x-533.3 (Nm) M(x) = -16.7 X 50 X-33.3 (Nm) M(x) = -83.3 X + 250 X-166.7 (Nm) Finit wet wered sed out of D a question
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