he movers are trying to get a heavy crate (mass m) up a ramp into the loading dock of a uilding. One of the movers is pushing on the crate with a force of constant magnitude F₁ arallel with the surface of the ramp. The other mover is pulling a rope attached to the crate, xerting a force of constant magnitude F2, oriented at an angle above the surface of the amp. m F₁₂ 20 b

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter5: Newton's Laws Of Motion
Section: Chapter Questions
Problem 23PQ: The x and y coordinates of a 4.00-kg particle moving in the xy plane under the influence of a net...
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There is no friction between the crate and the surface of the ramp. The movers applied their
forces continuously (i.e., constant forces). Given this information, and the fact that the crate
started at rest at the bottom of the ramp, determine how fast the crate moves when it reaches
the top of the ramp.
Transcribed Image Text:There is no friction between the crate and the surface of the ramp. The movers applied their forces continuously (i.e., constant forces). Given this information, and the fact that the crate started at rest at the bottom of the ramp, determine how fast the crate moves when it reaches the top of the ramp.
The movers are trying to get a heavy crate (mass m) up a ramp into the loading dock of a
building. One of the movers is pushing on the crate with a force of constant magnitude F₁
parallel with the surface of the ramp. The other mover is pulling a rope attached to the crate,
exerting a force of constant magnitude F2, oriented at an angle above the surface of the
ramp.
F₁
m
d
F₂
20
h
+4
Transcribed Image Text:The movers are trying to get a heavy crate (mass m) up a ramp into the loading dock of a building. One of the movers is pushing on the crate with a force of constant magnitude F₁ parallel with the surface of the ramp. The other mover is pulling a rope attached to the crate, exerting a force of constant magnitude F2, oriented at an angle above the surface of the ramp. F₁ m d F₂ 20 h +4
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