When a pendulum is taken to the moon, its time period increases. This is because the acceleration due to gravity on the moon is weaker than on Earth. As a result, the pendulum swings slower, leading to a longer time ...
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When the length of a pendulum is quadrupled, its time of swing increases proportionally. Therefore, the correct answer is option [D]: it becomes four times. This relationship is described by the formula T = 2π√(L/g), where T is the time ...
If the length of a simple pendulum is increased by 4%, its time period will increase by approximately 2%. This relationship arises because the time period of a pendulum is directly proportional to the square root of its length. Therefore, ...
Pendulum clocks become slow in summer because the length of the pendulum increases due to thermal expansion, causing the time taken for one oscillation to increase. This change in length affects the clock’s timing mechanism, resulting in slower timekeeping during ...
The time period of a pendulum depends on its length. The longer the length of the pendulum, the longer the time it takes to complete one oscillation. Mass, temperature, and time do not affect the time period of a pendulum.