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Arada [10]
3 years ago
5

The earth's acceleration due to gravity varies from

Physics
1 answer:
Trava [24]3 years ago
4 0

Answer:

A) 200.9s

B) 200.4s

Explanation:

Parameters given:

acceleration due to gravity, g at the equator = 9.780 m/s^{2}

acceleration due to gravity, g at the poles = 9.832  m/s^{2}

length of pendulum, l = 1m

number of oscillations = 100

The period of an oscillation is the time taken for a pendulum to complete one oscillation, and it is given as:

T = 2\pi \sqrt{\frac{l}{g} }

where l = length of pendulum

g = acceleration due to gravity

A) At the equator, when g = 9.780 m/s^{2}, the period for one oscillation will be:

T = 2\pi \sqrt{\frac{1}{9.78} }

T = 2\pi * 0.3198\\\\T = 2.009s

Hence, it will take 2.009s to complete one oscillation. To find the time for 100 oscillations

T_{100} = 100 * 2.009\\\\T_{100} = 200.9s

It will take 200.9s for the pendulum to complete 100 oscillations at the equator.

B) At the North pole, when g = 9.832 m/s^{2}, the period for one oscillation will be:

T = 2\pi \sqrt{ \frac{1}{9.832}}

T = 2\pi * 0.3189\\\\T = 2.004s

Hence, it will take 2.004s to complete one oscillation. To find the time for 100 oscillations:

T_{100} = 100 * 2.004\\\\T_{100} = 200.4s

It will take 200.4s for the pendulum to complete 100 oscillations at the North pole.

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2 years ago
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alukav5142 [94]

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3 years ago
Automobile A starts from O and accelerates at the constant rate of 0.75 m/s2. A short time later it is passed by bus B which is
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Answer:

they meet from point o at distance 50.46 m and time taken is 11.6 seconds

Explanation:

given data

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solution

we consider here distance = x , when they meet after o point

and time = t for meet point z

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so

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and

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