The diagram below shows a mass that is oscillating on the end of a string at three different times t₁, t2, and t3 during a single cycle. At t, it is at maximum displacement in the negative direction. In the following questions we will disre- gard the centripetal acceleration of the bob due to its circular motion about the point O. a. Draw the velocity and acceleration vectors next to the pendulum bob at times t₁, t2, and t3 to show the direction and relative magnitude of those vector quantities at those positions. The vectors at time t₁ have already been drawn. Note: The centripetal acceleration that arises from the circular motion about O is neglected. Draw the forces acting on the bob at each of those instants. La LV At which instant t₁, t2, or t3 does the bob have the greatest velocity? What is the acceleration at that position? Explain. b. C. Figure 11-3
The diagram below shows a mass that is oscillating on the end of a string at three different times t₁, t2, and t3 during a single cycle. At t, it is at maximum displacement in the negative direction. In the following questions we will disre- gard the centripetal acceleration of the bob due to its circular motion about the point O. a. Draw the velocity and acceleration vectors next to the pendulum bob at times t₁, t2, and t3 to show the direction and relative magnitude of those vector quantities at those positions. The vectors at time t₁ have already been drawn. Note: The centripetal acceleration that arises from the circular motion about O is neglected. Draw the forces acting on the bob at each of those instants. La LV At which instant t₁, t2, or t3 does the bob have the greatest velocity? What is the acceleration at that position? Explain. b. C. Figure 11-3
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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Question
![The diagram below shows a mass that is oscillating on the end of a string at
three different times t₁, t2, and t3 during a single cycle. At t, it is at maximum
displacement in the negative direction. In the following questions we will disre-
gard the centripetal acceleration of the bob due to its circular motion about the
point O.
a.
Draw the velocity and acceleration
vectors next to the pendulum bob
at times t₁, t2, and t3 to show the
direction and relative magnitude
of those vector quantities at those
positions. The vectors at time t₁
have already been drawn. Note: The
centripetal acceleration that arises
from the circular motion about O is
neglected.
Draw the forces acting on the bob
at each of those instants.
11 a
V
At which instant t₁, t2, or t3 does
the bob have the greatest velocity?
What is the acceleration at that
position? Explain.
b.
C.
Figure 11-3](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1a15759c-8b82-438f-9d6a-36f728df4f17%2Fe12c4743-fc28-4b29-9087-d33f4f675ade%2F3wlkcva_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The diagram below shows a mass that is oscillating on the end of a string at
three different times t₁, t2, and t3 during a single cycle. At t, it is at maximum
displacement in the negative direction. In the following questions we will disre-
gard the centripetal acceleration of the bob due to its circular motion about the
point O.
a.
Draw the velocity and acceleration
vectors next to the pendulum bob
at times t₁, t2, and t3 to show the
direction and relative magnitude
of those vector quantities at those
positions. The vectors at time t₁
have already been drawn. Note: The
centripetal acceleration that arises
from the circular motion about O is
neglected.
Draw the forces acting on the bob
at each of those instants.
11 a
V
At which instant t₁, t2, or t3 does
the bob have the greatest velocity?
What is the acceleration at that
position? Explain.
b.
C.
Figure 11-3
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