A hand trolley is used to move a crate weighing 150 Ib down the ramp as shown below. The center of gravity of the crate and its content is located at G. For static equilibrium, determine the total resultant normal force on both wheels at A (Ignore friction) and the magnitude of the force required at the grip B. 1.5 ft 2 ft P1 ft 1.75 ft a 60° 30°% „1.5 ft 0.5 ft A

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter4: Coplanar Equilibrium Analysis
Section: Chapter Questions
Problem 4.126P: The center of gravity of the nonhomogeneous bar AB is located at G. Find the angle at which the bar...
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A hand trolley is used to move a crate weighing 150 Ib down the ramp as
shown below. The center of gravity of the crate and its content is located at G.
For static equilibrium, determine the total resultant normal force on both wheels
at A (Ignore friction) and the magnitude of the force required at the grip B.
1.5 ft
2 ft
P1 ft
1.75 ft
a 60°
30°%
„1.5 ft
0.5 ft
A
Transcribed Image Text:A hand trolley is used to move a crate weighing 150 Ib down the ramp as shown below. The center of gravity of the crate and its content is located at G. For static equilibrium, determine the total resultant normal force on both wheels at A (Ignore friction) and the magnitude of the force required at the grip B. 1.5 ft 2 ft P1 ft 1.75 ft a 60° 30°% „1.5 ft 0.5 ft A
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