Mass Hanger A group of students must study the oscillatory motion of a pendulum. One end of a light string is attached to the ceiling, and the other end of the string is attached to a mass hanger so that small disks of various masses may be stacked on the hanger, as shown in the figure. Students are provided with data in which an experiment was conducted to determine the relationship between the length of the pendulum and the period of oscillation. The data include a pendulum of length 0.5 m, for which it took 81 s for the pendulum bob to oscillate 10 times. However, the experiment was conducted at a location that is not near Earth's surface. The gravitational field strength where the experiment was conducted is most nearly A 0.003 N/kg B 0.024 N/kg 0.30 N/kg 2.40 N/kg

College Physics
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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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Multiple Choice Question 11

Mass
Hanger
A group of students must study the oscillatory motion of a pendulum. One end of a light string is attached to the
ceiling, and the other end of the string is attached to a mass hanger so that small disks of various masses may
be stacked on the hanger, as shown in the figure.
Students are provided with data in which an experiment was conducted to determine the relationship between
the length of the pendulum and the period of oscillation. The data include a pendulum of length 0.5 m, for
which it took 81 s for the pendulum bob to oscillate 10 times. However, the experiment was conducted at a
location that is not near Earth's surface. The gravitational field strength where the experiment was conducted is
most nearly
0.003 N/kg
0.024 N/kg
0.30 N/kg
D
2.40 N/kg
Transcribed Image Text:Mass Hanger A group of students must study the oscillatory motion of a pendulum. One end of a light string is attached to the ceiling, and the other end of the string is attached to a mass hanger so that small disks of various masses may be stacked on the hanger, as shown in the figure. Students are provided with data in which an experiment was conducted to determine the relationship between the length of the pendulum and the period of oscillation. The data include a pendulum of length 0.5 m, for which it took 81 s for the pendulum bob to oscillate 10 times. However, the experiment was conducted at a location that is not near Earth's surface. The gravitational field strength where the experiment was conducted is most nearly 0.003 N/kg 0.024 N/kg 0.30 N/kg D 2.40 N/kg
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