A Pendulum Clock Is Taken 1Km at Margaret Metz blog

A Pendulum Clock Is Taken 1Km. The time period depends on the length of the pendulum and also to a slight degree on the amplitude, the width of the pendulum's swing. Bob of pendulum is given negative. A pendulum clock is taken 1km inside the earth from mean sea level. Reason:value of acceleration due to gravity is less at heights. Use the formula for acceleration due to gravity at depth d below the surface of earth. If a pendulum clock, keeps correct time at sea level is taken to a place 16 km below sea level, the clock will approximately Assertion :if a pendulum clock is taken to a mountain top, it gains time. Subtract the expression for period of pendulum inside 1 km. To solve the problem, we need to determine how the time period of a pendulum clock changes when it is taken 1 km inside the earth.

A pendulum clock is taken 1km inside the earth from mean sea level
from www.toppr.com

A pendulum clock is taken 1km inside the earth from mean sea level. If a pendulum clock, keeps correct time at sea level is taken to a place 16 km below sea level, the clock will approximately The time period depends on the length of the pendulum and also to a slight degree on the amplitude, the width of the pendulum's swing. Subtract the expression for period of pendulum inside 1 km. Reason:value of acceleration due to gravity is less at heights. Assertion :if a pendulum clock is taken to a mountain top, it gains time. To solve the problem, we need to determine how the time period of a pendulum clock changes when it is taken 1 km inside the earth. Use the formula for acceleration due to gravity at depth d below the surface of earth. Bob of pendulum is given negative.

A pendulum clock is taken 1km inside the earth from mean sea level

A Pendulum Clock Is Taken 1Km The time period depends on the length of the pendulum and also to a slight degree on the amplitude, the width of the pendulum's swing. Reason:value of acceleration due to gravity is less at heights. If a pendulum clock, keeps correct time at sea level is taken to a place 16 km below sea level, the clock will approximately The time period depends on the length of the pendulum and also to a slight degree on the amplitude, the width of the pendulum's swing. Subtract the expression for period of pendulum inside 1 km. To solve the problem, we need to determine how the time period of a pendulum clock changes when it is taken 1 km inside the earth. Use the formula for acceleration due to gravity at depth d below the surface of earth. A pendulum clock is taken 1km inside the earth from mean sea level. Bob of pendulum is given negative. Assertion :if a pendulum clock is taken to a mountain top, it gains time.

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