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Student `I ,II , and III` perform an experiment for measuring the acceleration due to gravity `(g) ` usinf a simple pendulum. They use lengths of the pendulum and // or record time for different number of oscillations . The observations are shown in the following table . Least count for length ` = 0.1 cm`
`{:(underset(III)underset(II)underset(I)underset()underset()("Student"),underset(20.0)underset(64.0)underset(64.0)underset((cm))underset("Pendulam")("Length of "),underset(4)underset(4)underset(8)underset((n))underset("n Oscillation")("Number of"),underset(9.0)underset(16.0)underset(16.0)underset((s))underset("Period")("Time")):}`
Least count for time `= 0.1 s`.
If `E_(I), E_(II)` , and `E_(III)` are the percentage errors in `g` , i.,e., `((Delta g)/( g) xx 100)` for students I,II , and III, respectively , then
A. `E_(I)=0`
B. `E_(1)` is minimum
C. `E_(I)=E_(II)`
D. `E_(II)` is maximum

1 Answer

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Best answer
Correct Answer - B
`L.C=(0.5)/(100)mm=0.005mm`
Zero error `=2xx0.005mm=0.01mm`
So zero correction is `=-0.01mm`
`M.S.R=4mm`
`C.S.R=83xxL.C=0.415mm`
So diameter `=4mm0.415mm-0.01nm`
`=0.405mm`

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