Based on the table given Plot the following graphs a. elongation or displacement (x) vs. mass (m) b. square of the period (T2) vs. the mass (m) Discuss the significance of the graph line in a and b.   note: elongation 4 at table 2 is 0.266

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Based on the table given

Plot the following graphs
a. elongation or displacement (x) vs. mass (m)
b. square of the period (T2) vs. the mass (m)

Discuss the significance of the graph line in a and b.

 

note: elongation 4 at table 2 is 0.266

Part 2
Determination of Spring Constant from Simple Harmonic Motion
Period Period?,
Mass, Displacement
(m)
no. of
Total time
Spring
Trials
oscillation (Average),
•T (s)
T? (s)
m
constant,
(kg)
t (s)
K1
(kg/s²)
5.65
1
0.04
0.04
20
10.23
0.51
0.26
5.76
5.60
0.06
0.04
20
12.80
0.64
0.41
3
0.08
0.04
20
14.92
0.75
0.56
4
0.10
0.04
20
16.60
0.83
0.69
5.72
5
0.12
0.04
20
18.55
0.93
0.86
5.48
Part 3
Determination of the spring constant using Hooke's Law
Trials
Mass, m
Elongation, x
(m)
Spring constant K2
(kg/s²)
(kg)
1
0.190
0.00
2
0.02
0.195
1.01
3
0.04
0.236
1.70
4
0.06
0.26
2.21
2.58
5
0.08
0.304
% Difference (between K1, K2, use average value) =
73.41 %
Transcribed Image Text:Part 2 Determination of Spring Constant from Simple Harmonic Motion Period Period?, Mass, Displacement (m) no. of Total time Spring Trials oscillation (Average), •T (s) T? (s) m constant, (kg) t (s) K1 (kg/s²) 5.65 1 0.04 0.04 20 10.23 0.51 0.26 5.76 5.60 0.06 0.04 20 12.80 0.64 0.41 3 0.08 0.04 20 14.92 0.75 0.56 4 0.10 0.04 20 16.60 0.83 0.69 5.72 5 0.12 0.04 20 18.55 0.93 0.86 5.48 Part 3 Determination of the spring constant using Hooke's Law Trials Mass, m Elongation, x (m) Spring constant K2 (kg/s²) (kg) 1 0.190 0.00 2 0.02 0.195 1.01 3 0.04 0.236 1.70 4 0.06 0.26 2.21 2.58 5 0.08 0.304 % Difference (between K1, K2, use average value) = 73.41 %
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