You are not on earth. You have a ball on a string. You whirl it in a vertical circle (similar to the one seen in the 4th example of the Centripetal Force video). (a) Choose values for the following. None of them can be 0. The value of gravitational acceleration on this planet (on Earth it would be 9.81m/s2) The mass of the ball iii. The length of the string The tension in the string at the top of the circle. (b) Draw the Free Body Diagram of the ball at the top of the circle. (c) Label the origin and axes. (d) Calculate the velocity of the ball at the top of the circle. (e) Draw the Free Body Diagram of the ball at the bottom of the circle. (f) Label the origin and axes. (g) If you maintain the same velocity at the bottom as in the top, what is the tension at the bottom? FYI: m: 5 kg; r: 1.5 m; T1: 25 N
You are not on earth. You have a ball on a string. You whirl it in a vertical circle (similar to the one seen in the 4th example of the Centripetal Force video). (a) Choose values for the following. None of them can be 0. The value of gravitational acceleration on this planet (on Earth it would be 9.81m/s2) The mass of the ball iii. The length of the string The tension in the string at the top of the circle. (b) Draw the Free Body Diagram of the ball at the top of the circle. (c) Label the origin and axes. (d) Calculate the velocity of the ball at the top of the circle. (e) Draw the Free Body Diagram of the ball at the bottom of the circle. (f) Label the origin and axes. (g) If you maintain the same velocity at the bottom as in the top, what is the tension at the bottom? FYI: m: 5 kg; r: 1.5 m; T1: 25 N
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
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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. You are not on earth. You have a ball on a string. You whirl it in a vertical circle (similar to the
one seen in the 4th example of the
(a) Choose values for the following. None of them can be 0.
- The value of gravitational acceleration on this planet (on Earth it would be 9.81m/s2)
- The mass of the ball
iii. The length of the string
- The tension in the string at the top of the circle.
(b) Draw the Free Body Diagram of the ball at the top of the circle.
(c) Label the origin and axes.
(d) Calculate the velocity of the ball at the top of the circle.
(e) Draw the Free Body Diagram of the ball at the bottom of the circle.
(f) Label the origin and axes.
(g) If you maintain the same velocity at the bottom as in the top, what is the tension at the
bottom?
FYI: m: 5 kg; r: 1.5 m; T1: 25 N
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