5. You are driving in a car and you are sitting on a scale. You are travelling at constant speed of 20 m/s when you suddenly enter a dip with a radius of curvature of 100 meters. As you drive through this dip you and your car are executing Uniform Circular Motion You know that when you are standing on the scale on flat, non-accelerating ground that it says you are 660 Newtons. 100 m

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Please show all work and calculations with a proper free body diagram
5.
You are driving in a car and you are sitting on a scale. You are travelling at constant speed of 20
m/s when you suddenly enter a dip with a radius of curvature of 100 meters. As you drive
through this dip you and your car are executing Uniform Circular Motion
You know that when you are standing on the scale on flat, non-accelerating ground that it says
you are 660 Newtons.
100 m
When you are in the very bottom of the dip (still traveling at 20 m/s), what does the scale you are
sitting on read?
Tips: Draw a free body diagram for your body when your car is at the bottom of the circular dip.
If you are undergoing that special kind of motion, what should your forces sum to? That should
help you find what you are looking for.
étv
MacBook Pro
Transcribed Image Text:5. You are driving in a car and you are sitting on a scale. You are travelling at constant speed of 20 m/s when you suddenly enter a dip with a radius of curvature of 100 meters. As you drive through this dip you and your car are executing Uniform Circular Motion You know that when you are standing on the scale on flat, non-accelerating ground that it says you are 660 Newtons. 100 m When you are in the very bottom of the dip (still traveling at 20 m/s), what does the scale you are sitting on read? Tips: Draw a free body diagram for your body when your car is at the bottom of the circular dip. If you are undergoing that special kind of motion, what should your forces sum to? That should help you find what you are looking for. étv MacBook Pro
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