Problem 3: Consider the configuration and the data in the Figure. A skater of mass M is on a semicircular halfpipe ramp of radius, R. It is known that, upon leaving the ramp, he/she reaches a maximum height H. a) Find the velocity of the skater at A (at the bottom of the ramp). Option A: Option B: Option C: Option D: b) Find the normal force on the skater at A. Option A: Option B: Option C: Option D: R Data: g 9.8 m/s², A R=4m, H 8 m, M = 50 kg H

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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Problem 3: Consider the configuration and the data in the Figure. A skater of mass M is on a semicircular
halfpipe ramp of radius, R. It is known that, upon leaving the ramp, he/she reaches a maximum height H.
a) Find the velocity of the skater at A (at the bottom of the ramp).
Option A: Option B:
Option C:
Option D:
b) Find the normal force on the skater at A.
Option A:
Option B:
Option C:
Option D:
R
Data: g 9.8 m/s²,
A
R=4m, H 8 m, M = 50 kg
H
Transcribed Image Text:Problem 3: Consider the configuration and the data in the Figure. A skater of mass M is on a semicircular halfpipe ramp of radius, R. It is known that, upon leaving the ramp, he/she reaches a maximum height H. a) Find the velocity of the skater at A (at the bottom of the ramp). Option A: Option B: Option C: Option D: b) Find the normal force on the skater at A. Option A: Option B: Option C: Option D: R Data: g 9.8 m/s², A R=4m, H 8 m, M = 50 kg H
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