Pendulum Behavior with different lengths. I member t (total time 25) T (Period) la 90 cm 47.88 s 1.9152 s lb 70 cm 42.32 s 1.6924 s 2a 60 cm 39.14 s 1.5656 s 2b 45 cm 34.13 s 1.3652 s 3a 20 cm 23.62 s 0.9448 s 3b 10 cm 7.05 s (10 times) 0.7050 s Large Angle Exporation &= total time for 10: t = Period: T = LARGE ANALYSIS 1. Include your graph of { vs 72 in your report. 2. From the straight line fit of your graph record the slope and intercept along with their uncertainties. (make sure to include the units): Slope = σ = slope Inter= 3. Your experimental value of g. 9 exp 4. Percent error in g. % error = σ slope Ο
Pendulum Behavior with different lengths. I member t (total time 25) T (Period) la 90 cm 47.88 s 1.9152 s lb 70 cm 42.32 s 1.6924 s 2a 60 cm 39.14 s 1.5656 s 2b 45 cm 34.13 s 1.3652 s 3a 20 cm 23.62 s 0.9448 s 3b 10 cm 7.05 s (10 times) 0.7050 s Large Angle Exporation &= total time for 10: t = Period: T = LARGE ANALYSIS 1. Include your graph of { vs 72 in your report. 2. From the straight line fit of your graph record the slope and intercept along with their uncertainties. (make sure to include the units): Slope = σ = slope Inter= 3. Your experimental value of g. 9 exp 4. Percent error in g. % error = σ slope Ο
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Transcribed Image Text:Pendulum Behavior with different lengths.
I
member
t (total time 25)
T (Period)
la
90 cm
47.88 s
1.9152 s
lb
70 cm
42.32 s
1.6924 s
2a
60 cm
39.14 s
1.5656 s
2b
45 cm
34.13 s
1.3652 s
3a
20 cm
23.62 s
0.9448 s
3b
10 cm
7.05 s (10 times)
0.7050 s
Large Angle Exporation
&=
total time for 10: t =
Period: T
=
LARGE
ANALYSIS
1. Include your graph of { vs 72 in your report.
2. From the straight line fit of your graph record the slope and intercept along with their
uncertainties. (make sure to include the units):
Slope =
σ
=
slope
Inter=
3. Your experimental value of g.
9 exp
4. Percent error in g.
% error =
σ
slope
Ο
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