A hydraulically powered lift supports the two boxes shown. Each box weighs 160 lb with center of gravity in the middle of each box. Neglect the weight of individual members. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. G H F -2 2 ft 2 ft- E DIT 2 ft B C A 4 ft 3ft 2ft Determine the force in the hydraulic actuator BE required to keep the lift in equilibrium. (Round the final answer to four decimal places. Include a minus sign if necessary.) The force in the hydraulic actuator BE required to keep the lift in equilibrium is lb.

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A hydraulically powered lift supports the two boxes shown. Each box weighs 160 lb with center of gravity in the middle of
each box. Neglect the weight of individual members.
NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part.
G
H
F
-2
2 ft 2 ft-
E
DIT
2 ft
B
C
A
4 ft
3ft 2ft
Determine the force in the hydraulic actuator BE required to keep the lift in equilibrium. (Round the final answer to four decimal places.
Include a minus sign if necessary.)
The force in the hydraulic actuator BE required to keep the lift in equilibrium is
lb.
Transcribed Image Text:A hydraulically powered lift supports the two boxes shown. Each box weighs 160 lb with center of gravity in the middle of each box. Neglect the weight of individual members. NOTE: This is a multi-part question. Once an answer is submitted, you will be unable to return to this part. G H F -2 2 ft 2 ft- E DIT 2 ft B C A 4 ft 3ft 2ft Determine the force in the hydraulic actuator BE required to keep the lift in equilibrium. (Round the final answer to four decimal places. Include a minus sign if necessary.) The force in the hydraulic actuator BE required to keep the lift in equilibrium is lb.
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