A student of mass M = 62 kg takes a ride in a loop-the-loop at an amusement park. The radius of the loop-the-loop is R = 36 m. The normal force of the seat on student at the top of the loop-the-loop is N₁ = 333 N. (A) Find the speed of the student at the top of the loop-the-loop. Click here to see an example related to this problem (B) Determine the normal force on student by the seat of the ride at the bottom of the loop-the-loop. Assume that the speed of the cart is a constant (i.e. the same speed at the top and bottom of the loop).

College Physics
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ISBN:9781305952300
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Chapter1: Units, Trigonometry. And Vectors
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A student of mass M = 62 kg takes a ride in a loop-the-loop at an amusement park. The radius of the loop-the-loop is R = 36 m.
The normal force of the seat on student at the top of the loop-the-loop is N₁ = 333 N.
(A) Find the speed of the student at the top of the loop-the-loop.
Click here to see an example related to this problem
(B) Determine the normal force on student by the seat of the ride at the bottom of the loop-the-loop.
Assume that the speed of the cart is a constant (i.e. the same speed at the top and bottom of the loop).
Transcribed Image Text:A student of mass M = 62 kg takes a ride in a loop-the-loop at an amusement park. The radius of the loop-the-loop is R = 36 m. The normal force of the seat on student at the top of the loop-the-loop is N₁ = 333 N. (A) Find the speed of the student at the top of the loop-the-loop. Click here to see an example related to this problem (B) Determine the normal force on student by the seat of the ride at the bottom of the loop-the-loop. Assume that the speed of the cart is a constant (i.e. the same speed at the top and bottom of the loop).
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