A particle is moving clock wise in a circle of radius R= 10 m in uniform circular motion with a period of 60 min as shown below. a) Find the particle's displacement in unit vector notation as it moves from position 1 to position 3 and draw it on the figure. 3 b) In SI units, find the particle's speed and the magnitude of its acceleration. c) Find the particle's velocity in unit vector notation at position 2 and draw it on the figure. d) When an elevator is ascending and decelerating, its acceleration vector points.

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section3.5: Tangential And Radial Acceleration
Problem 3.5QQ: A particle moves along a path, and its speed increases with time. (i) In which of the following...
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A particle is moving clock wise in a circle of radius R = 10 m in uniform circular motion with
a period of 60 min as shown below.
a) Find the particle's displacement in unit vector notation as it moves from position 1 to
position 3 and draw it on the figure.
3
R
2
b) In SI units, find the particle's speed and the magnitude of its acceleration.
c) Find the particle's velocity in unit vector notation at position 2 and draw it on the figure.
d) When an elevator is ascending and decelerating, its acceleration vector points
Transcribed Image Text:A particle is moving clock wise in a circle of radius R = 10 m in uniform circular motion with a period of 60 min as shown below. a) Find the particle's displacement in unit vector notation as it moves from position 1 to position 3 and draw it on the figure. 3 R 2 b) In SI units, find the particle's speed and the magnitude of its acceleration. c) Find the particle's velocity in unit vector notation at position 2 and draw it on the figure. d) When an elevator is ascending and decelerating, its acceleration vector points
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