3.1 FC5
windows-1252
Jun 11 2002 09:45:52
Copyright (c) 2002 Vernier Software & Technology and its licensors
D:\Copy of My Documents\ES-MS Curricula\gr8ps\Red Student Lab Guide\Gravitys Pull\acceleration-due-to-gravity_TAK.ga3
Thu Jan 24 09:30:02 2002Jessica Fink575816838
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3
5
Thu, Jan 24, 2002 9:30:02 AM
Sat Dec 23 18:41:59 2006
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0 0 10.6133 6.58667
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101
0
0xcccc 0xcccc 0xffff
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0.25
0x8484 0x7070 0xffff
105
3 118 121 122
3.52856 0.25 10.3538 6.33668
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0 0
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0xffff 0xffff 0xffff
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Accelleration of a Falling Object Due to Gravity
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2 103 104 103 120
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0x8080 0x8080 0x8080
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1.30378
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13.0397
118
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4.41523 2.31 6.71857 3.27667
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0.886673 2.06
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104
103
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120
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121
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6.18859 4.43 8.33192 4.87666
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2.66003 4.18
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0xffff 0xffff 0xffff
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104
103
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4.79192 0.91333 5.89442 1.3225
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1.26335 0.663331
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Source: Experimenting with Time, by Robert Gardner. Project 21, pp. 136-137.
1. What is the acceleration of the object?
[Analyze/Linear Fit (Slope)]
2. How far did the object fall during the time shown on the graph?
[Analyze/Integral]
3. What do you think the object's velocity would be after 1.2 seconds?
[Analyze/Examine; Analyze/Interpolate]
0
1
102
1 106
Data Set
Thu, Jan 24, 2002 9:30:02 AM
1
0
0
103
2 105 106
Time
t
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1
1
1
s
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1
0
1
1
0
1
1
0
0
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
104
2 105 106
Velocity
v
0x9999 0x0 0x0
0
1
1
1
m/s
0
1
0
3
1
0
1
1
0
0
0
1
2
2.9
3.9
4.9
5.9
6.8
7.8
8.8
9.8
119
0
&&^% CurveFitFunctions %^&&
Sun Aug 06 19:48:28 2006
0
0
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120
1 105
mx+b
Linear
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0
3
1
1
1
mx+b
0
1
2 9.76364 0.00909091
2 0 0
2 1 1
0
m(Slope)
b(Y-Intercept)
7
0