Part B. The crane is now subjected to high winds. The 35m long crane boom AC is anchored to the ground at point D. If the force on the cable DC at C is 50,000 N, determine the moment of that force about the line joining point A to E if AB = 15m and E is hanging 25m directly below B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Calculate the Load vector at C
TCD =
Ni +
Nj +
Nk
Calculate the vector defining the axis AE
AAE =
i +
j +
k
Calculate the Moment arm OC
rc/o =
mi +
mj +
mk
Calculate the Moment MAE
MAE =
N.m
Part C. For the problem in Part B, replace the force at point C with a force couple at
the Origin O.
F =
Ni +
Nj +
Nk
M =
N.mi +
N.mj +
N.mk
Transcribed Image Text:Calculate the Load vector at C TCD = Ni + Nj + Nk Calculate the vector defining the axis AE AAE = i + j + k Calculate the Moment arm OC rc/o = mi + mj + mk Calculate the Moment MAE MAE = N.m Part C. For the problem in Part B, replace the force at point C with a force couple at the Origin O. F = Ni + Nj + Nk M = N.mi + N.mj + N.mk
Part B. The crane is now subjected to high winds. The 35m long crane boom AC is
anchored to the ground at point D. If the force on the cable DC at C is 50,000 N,
determine the moment of that force about the line joining point A to E if AB = 15m
and E is hanging 25m directly below B.
Crane boom
A
B.
C
35°
45m
E
32m
20m
5m
Transcribed Image Text:Part B. The crane is now subjected to high winds. The 35m long crane boom AC is anchored to the ground at point D. If the force on the cable DC at C is 50,000 N, determine the moment of that force about the line joining point A to E if AB = 15m and E is hanging 25m directly below B. Crane boom A B. C 35° 45m E 32m 20m 5m
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