Q2. One end of a string is secured to the ceiling of a classroom, and the other end of the string is attached to a sphere of mass 0.20 kg so that a pendulum is established. The sphere is raised at an angle of 15° above the sphere's equilibrium position and then released from rest so that the pendulum oscillates, as shown in the figure. Location 1 is shown in the figure. A graph of the pendulum's horizontal position as a function of time is shown in the graph. +y 0.2 -0.2 2 3 Time (s) (a) The dot below represents the sphere at location 2. Draw a free-body diagram Location 2 that shows and labels the forces (not components) exerted on the sphere at the location 2. Draw the relative lengths of all vectors to reflect the relative magnitudes of all forces

College Physics
11th Edition
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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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Q2.
One end of a string is secured to the ceiling of a classroom, and the other
end of the string is attached to a sphere of mass 0.20 kg so that a pendulum is
established. The sphere is raised at an angle of 15° above the sphere's equilibrium
position and then released from rest so that the pendulum oscillates, as shown in
the figure. Location 1 is shown in the figure. A graph of the pendulum's horizontal
position as a function of time is shown in the graph.
+y
0.2
-0.2
2
3
Time (s)
(a) The dot below represents the sphere
at location 2. Draw a free-body diagram
Location 2
that shows and labels the forces (not
components) exerted on the sphere at
the location 2. Draw the relative
lengths of all vectors to reflect the
relative magnitudes of all forces
Transcribed Image Text:Q2. One end of a string is secured to the ceiling of a classroom, and the other end of the string is attached to a sphere of mass 0.20 kg so that a pendulum is established. The sphere is raised at an angle of 15° above the sphere's equilibrium position and then released from rest so that the pendulum oscillates, as shown in the figure. Location 1 is shown in the figure. A graph of the pendulum's horizontal position as a function of time is shown in the graph. +y 0.2 -0.2 2 3 Time (s) (a) The dot below represents the sphere at location 2. Draw a free-body diagram Location 2 that shows and labels the forces (not components) exerted on the sphere at the location 2. Draw the relative lengths of all vectors to reflect the relative magnitudes of all forces
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