(6) The tension force in cable AB is T = 40 kN acting on the crane as shown. Use vector cross product to compute the moment vector of the tension about point C. Note that point B is located at the center of the container top, and the distance between O and C is OC=45 m. Ans: M = 745 +548ĵ+718k kN·m 20 m 3 m 45 m B 13 m 5 m 9 m 8 m 12 m 16 m

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
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(6) The tension force in cable AB is T = 40 kN
acting on the crane as shown. Use vector cross
product to compute the moment vector of the
tension about point C. Note that point B is
located at the center of the container top, and
the distance between O and C is OC=45 m.
Ans: M = 745 +548ĵ+718k kN·m
20 m
3 m
45 m
B
13 m
5 m
9 m
8 m
12 m
16 m
Transcribed Image Text:(6) The tension force in cable AB is T = 40 kN acting on the crane as shown. Use vector cross product to compute the moment vector of the tension about point C. Note that point B is located at the center of the container top, and the distance between O and C is OC=45 m. Ans: M = 745 +548ĵ+718k kN·m 20 m 3 m 45 m B 13 m 5 m 9 m 8 m 12 m 16 m
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