JESTION 1 Starting from rest, a bicycle wheel with a radius of 38 cm completes 130 revolutions in 15 seconds while undergoing a constant angular acceleration. Determine; a. The wheel's angular displacement in radians The wheel's angular acceleration in rads/s² b. c. The wheel's angular velocity at t = 20 seconds in rads/s d. The total distance traveled by the bicycle at t = 15 seconds, in meters The wheel's linear acceleration in m/s² e. 1. 2. 3. 4. 5. 6. 7. 8. 9. 11. 6.450 816.8 15. 128.6 3.450 473.0 5.836 7.260 168.4 10. 5.630 310.4 1228 12. 928.2 13. 12.73 2.759 145.2
JESTION 1 Starting from rest, a bicycle wheel with a radius of 38 cm completes 130 revolutions in 15 seconds while undergoing a constant angular acceleration. Determine; a. The wheel's angular displacement in radians The wheel's angular acceleration in rads/s² b. c. The wheel's angular velocity at t = 20 seconds in rads/s d. The total distance traveled by the bicycle at t = 15 seconds, in meters The wheel's linear acceleration in m/s² e. 1. 2. 3. 4. 5. 6. 7. 8. 9. 11. 6.450 816.8 15. 128.6 3.450 473.0 5.836 7.260 168.4 10. 5.630 310.4 1228 12. 928.2 13. 12.73 2.759 145.2
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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Before diving into angular position, one should understand the basics of position and its importance along with usage in day-to-day life. When one talks of position, it’s always relative with respect to some other object. For example, position of earth with respect to sun, position of school with respect to house, etc. Angular position is the rotational analogue of linear position.
Question
I need help with this question part a,b,c, d,e .

Transcribed Image Text:**Question 1**
Starting from rest, a bicycle wheel with a radius of 38 cm completes 130 revolutions in 15 seconds while undergoing a constant angular acceleration. Determine:
a. The wheel's angular displacement in radians
b. The wheel's angular acceleration in rad/s²
c. The wheel's angular velocity at t = 20 seconds in rad/s
d. The total distance traveled by the bicycle at t = 15 seconds, in meters
e. The wheel's linear acceleration in m/s²
Options:
1. 6.450
2. 816.8
3. 128.6
4. 3.450
5. 473.0
6. 5.386
7. 7.260
8. 168.4
9. 310.4
10. 5.630
11. 1228
12. 923.2
13. 12.73
14. 2.759
15. 145.2
**Explanation of the Options:**
The options provided are numerical values that may correspond to the answers for each sub-question (a through e). The calculation of each response requires applying physics equations to find angular displacement, angular acceleration, angular velocity, total distance, and linear acceleration, respectively.
There are no graphs or diagrams in the image.
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