Period, T (time Time T^2 | (s^2) Length of Number of Time For N Pendalum, L oscillations N oscillations (s) for 1 (m) oscillations) (s) 0.2 20 17.71 0.88 0.774 0.3 20 21.86 1.09 1.188 0.4 20 25.58 1.27 1.613 0.5 20 28.48 1.42 2.016 0.6 20 31.19 1.55 2.402 0.7 20 33.29 1.66 2.755 0.8 20 35.44 1.77 3.133 0.9 20 37.8 1.89 3.572

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Length of
Number of
Time For N
Period, T (time Time T^2
Pendalum, L
oscillations N
ocillations (s) for 1
(s^2)
(m)
oscillations)
(s)
0.2
20
17.71
0.88
0.774
0.3
20
21.86
1.09
1.188
0.4
20
25.58
1.27
1.613
0.5
20
28.48
1.42
2.016
0.6
20
31.19
1.55
2.402
0.7
20
33.29
1.66
2.755
0.8
20
35.44
1.77
3.133
0.9
20
37.8
1.89
3.572
Transcribed Image Text:Length of Number of Time For N Period, T (time Time T^2 Pendalum, L oscillations N ocillations (s) for 1 (s^2) (m) oscillations) (s) 0.2 20 17.71 0.88 0.774 0.3 20 21.86 1.09 1.188 0.4 20 25.58 1.27 1.613 0.5 20 28.48 1.42 2.016 0.6 20 31.19 1.55 2.402 0.7 20 33.29 1.66 2.755 0.8 20 35.44 1.77 3.133 0.9 20 37.8 1.89 3.572
7. On graph paper, plot a graph of T2 versus L and use the slope to determine a value for acceleration due
to gravity.
8. Determine the percentage difference between your experimentally determined value and the accepted
value for g.
9. Write a detailed report as per guidelines.
4
Transcribed Image Text:7. On graph paper, plot a graph of T2 versus L and use the slope to determine a value for acceleration due to gravity. 8. Determine the percentage difference between your experimentally determined value and the accepted value for g. 9. Write a detailed report as per guidelines. 4
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