I Review Driving in your car with a constant speed of v = 22 m/s, you encounter a bump in the road that has a circular cross-section, as indicated in the figure (Figure 1). Part A For the steps and strategies involved in solving a similar problem, you may view the following Quick Example 6-17 video: If the radius of curvature of the bump is 52 m, find the apparent weight of a 63-kg person in your car as you pass over the top of the bump. SOLUTION We use Newton's second lew Express your answer in newtons. IF, -ma, N-mg- ma, ? Wa = N Submit Request Answer Figure 1 of 1 Provide Feedback Next

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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15 real 2

22 m/s, you
Review
Driving in your car with a constant speed of v =
encounter a bump in the road that has a circular cross-section,
as indicated in the figure (Figure 1).
Part A
For the steps and strategies involved in solving a similar
problem, you may view the following Quick Example 6-17 video:
If the radius of curvature of the bump is 52 m, find the apparent weight of a 63-kg person in
your car as you pass over the top of the bump.
SOLUTION
We use Newton's second law:
Express your answer in newtons.
ER, = may
N- mg-
HV ΑΣφ
Wa =
N
Submit
Request Answer
Figure
1 of 1
Provide Feedback
Next >
P Pearson
Transcribed Image Text:22 m/s, you Review Driving in your car with a constant speed of v = encounter a bump in the road that has a circular cross-section, as indicated in the figure (Figure 1). Part A For the steps and strategies involved in solving a similar problem, you may view the following Quick Example 6-17 video: If the radius of curvature of the bump is 52 m, find the apparent weight of a 63-kg person in your car as you pass over the top of the bump. SOLUTION We use Newton's second law: Express your answer in newtons. ER, = may N- mg- HV ΑΣφ Wa = N Submit Request Answer Figure 1 of 1 Provide Feedback Next > P Pearson
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