Required information A person rides a Ferris wheel that turns with constant angular velocity. Her weight is 483.0 ride her apparent weight is 1.500 N different from her true weight. What is her apparent weight at the top of the ride?

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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### Problem Statement

**Required Information:**

A person rides a Ferris wheel that turns with constant angular velocity. Her weight is 483.0 N. At the top of the ride, her apparent weight is 15.0 N different from her true weight.

**Question:**

What is her apparent weight at the top of the ride?

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### Explanation

This problem involves calculating the apparent weight of a person at the top of a Ferris wheel. It involves concepts of circular motion and apparent weight changes due to centripetal force. The actual weight is given, and the difference in weight at the top needs to be understood in terms of the forces involved. The solution requires understanding of physics concepts such as gravitational force and centripetal acceleration.
Transcribed Image Text:### Problem Statement **Required Information:** A person rides a Ferris wheel that turns with constant angular velocity. Her weight is 483.0 N. At the top of the ride, her apparent weight is 15.0 N different from her true weight. **Question:** What is her apparent weight at the top of the ride? --- ### Explanation This problem involves calculating the apparent weight of a person at the top of a Ferris wheel. It involves concepts of circular motion and apparent weight changes due to centripetal force. The actual weight is given, and the difference in weight at the top needs to be understood in terms of the forces involved. The solution requires understanding of physics concepts such as gravitational force and centripetal acceleration.
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