A pendulum at sea level (g = 9.8 m/s² ) has a period of 0.9500 s. You move to a new city, and the pendulum now has a period of 0.9504 s. Using the equations for this pendulum's period and for the acceleration of gravity from uniform circular motion, • find the value of g for the new city, and • find the altitude of the new city.

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A pendulum at sea level (g = 9.8 m/s? ) has a period of 0.9500 s. You move to a new city, and the
pendulum now has a period of 0.9504 s. Using the equations for this pendulum's period and for
the acceleration of gravity from uniform circular motion,
• find the value of g for the new city, and
• find the altitude of the new city.
Transcribed Image Text:A pendulum at sea level (g = 9.8 m/s? ) has a period of 0.9500 s. You move to a new city, and the pendulum now has a period of 0.9504 s. Using the equations for this pendulum's period and for the acceleration of gravity from uniform circular motion, • find the value of g for the new city, and • find the altitude of the new city.
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