The mass on the end of a pendulum is 0.04 kg and hangs from a string of length 1.2 m. The pendulum is raised to point Q. which is 0.10 m above its lowest position, and released so that it osillates between the points Pand Q as shown below. 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 in motion at its lowest position 0.01 m Note: Figure not orawn to scale.

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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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  1. he mass on the end of a pendulum is 0.04 kg and hangs from a string of length 1.2 m. The pendulum is raised to point Q, which is 0.10 m above its lowest position, and released so that it oscillates between the points P and Q as shown below.

On the figures below, draw free-body diagrams showing and labeling the forces acting on the bob in each of the situations described

a) When it is in motion at its lowest position

6. The mass on the end of a pendulum is 0.04 kg
and hangs from a string of length 1.2 m. The
pendulum is raised to point Q, which is 0.10 m
above its lowest position, and released so that it
oscillates between the points Pand Qas shown
below.
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 in motion at its lowest
position
0.01 m
Note: Figure not drawn to scale.
Transcribed Image Text:6. The mass on the end of a pendulum is 0.04 kg and hangs from a string of length 1.2 m. The pendulum is raised to point Q, which is 0.10 m above its lowest position, and released so that it oscillates between the points Pand Qas shown below. 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 in motion at its lowest position 0.01 m Note: Figure not drawn to scale.
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