A simple pendulum consists of a bob of mass 0.085 kg attached to a string of length 1.5 m. The pendulum is raised to point Q, which is 0.08 m above its lowest position, and released so that it oscillates with small amplitude e between the points Pand Q as shown below. 0.08 m Note: Figure not drawn to scale. a. On the figures below, draw free-body diagrams showing and labeling the forces acting on the bob in each of the situations described. i. When it is at point P i. When it is in motion at its lowest position b. Calculate the speed u of the bob at its lowest position. c. Calculate the tension in the string when the bob is passing through its lowest position.

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Chapter1: Units, Trigonometry. And Vectors
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A simple pendulum consists of a bob of mass 0.085 kg
attached to a string of length 1.5 m. The pendulum is
raised to point Q, which is 0.08 m above its lowest
position, and released so that it oscillates with small
amplitude e between the points Pand Qas shown below.
0.08 m
Note: Figure not drawn to scale.
a. On the figures below, draw free-body diagrams
showing and labeling the forces acting on the bob
in each of the situations described.
i. When it is at point P
ii. When it is in motion at its lowest position
b. Calculate the speed u of the bob at its lowest
position.
c. Calculate the tension in the string when the bob is
passing through its lowest position.
d. Describe one modification that could be made to
double the period of oscillation.
...
A apclassroom.collegeboard.org
Transcribed Image Text:1:47 ull 5Gº 1 of 4 > Save & Exit X Question 1 My Response A simple pendulum consists of a bob of mass 0.085 kg attached to a string of length 1.5 m. The pendulum is raised to point Q, which is 0.08 m above its lowest position, and released so that it oscillates with small amplitude e between the points Pand Qas shown below. 0.08 m Note: Figure not drawn to scale. a. On the figures below, draw free-body diagrams showing and labeling the forces acting on the bob in each of the situations described. i. When it is at point P ii. When it is in motion at its lowest position b. Calculate the speed u of the bob at its lowest position. c. Calculate the tension in the string when the bob is passing through its lowest position. d. Describe one modification that could be made to double the period of oscillation. ... A apclassroom.collegeboard.org
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