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A cart weighing 40 pounds is placed on a ramp incline 15 degrees to the horizon. The cart is held in place by a rope inclined 60 degrees to the horizontal. find the force that the rope must exert on the cart to keep it from rolling down the ramp.

1 Answer

3 votes

Answer:
14.64\ N

Step-by-step explanation:

Given

Inclination of ramp is
\theta=15^(\circ)

Rope is inclined
\phi=60^(\circ) to the horizontal

Weight of cart
W=40\ lb

from the diagram, rope is at angle of
45^(\circ) w.r.t ramp

Sine component of weight pulls down the cart Cosine component of force applied through rope held it at the position


\Rightarrow 40\sin 15^(\circ)=F\cos 45^(\circ)\\\\\Rightarrow F=40\cdot (\sin 15^(\circ))/(\cos 45^(\circ))\\\\\Rightarrow F=40* 0.366\\\Rightarrow F=14.64\ N

A cart weighing 40 pounds is placed on a ramp incline 15 degrees to the horizon. The-example-1
User Luckybug
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