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exercise 3 week 9

*The author of this computation has been verified*
R Software Module: Ian.Holliday/rwasp_One Factor ANOVA.wasp (opens new window with default values)
Title produced by software: Chi Square Measure of Association- Free Statistics Software (Calculator)
Date of computation: Mon, 14 Dec 2009 17:00:35 +0100
 
Cite this page as follows:
Statistical Computations at FreeStatistics.org, Office for Research Development and Education, URL http://www.freestatistics.org/blog/date/2009/Dec/14/t1260806485eigq4z7q9gt5epy.htm/, Retrieved Mon, 14 Dec 2009 17:01:28 +0100
 
BibTeX entries for LaTeX users:
@Manual{KEY,
    author = {{YOUR NAME}},
    publisher = {Office for Research Development and Education},
    title = {Statistical Computations at FreeStatistics.org, URL http://www.freestatistics.org/blog/date/2009/Dec/14/t1260806485eigq4z7q9gt5epy.htm/},
    year = {2009},
}
@Manual{R,
    title = {R: A Language and Environment for Statistical Computing},
    author = {{R Development Core Team}},
    organization = {R Foundation for Statistical Computing},
    address = {Vienna, Austria},
    year = {2009},
    note = {{ISBN} 3-900051-07-0},
    url = {http://www.R-project.org},
}
 
Original text written by user:
 
IsPrivate?
No (this computation is public)
 
User-defined keywords:
 
Dataseries X:
» Textbox « » Textfile « » CSV «
3 68 3 80 3 90 3 87 3 91 4 96 4 79 4 107 4 86 4 94 4 88 5 91 5 95 5 75 5 86 5 97 5 100 5 75 5 106 5 90 5 108 5 115 6 84 6 96 6 86 6 77 6 77 6 87 6 97 6 101 6 87 6 87 6 91 6 94 6 105 6 86 6 111 6 103 6 101 6 88 7 88 7 102 7 85 7 73 7 70 7 72 7 90 7 78 7 85 7 75 7 90 7 95 7 80 7 80 7 86 7 86 7 88 7 82 7 98 7 94 7 92 7 100 7 94 7 95 7 92 7 78 7 88 7 96 7 111 8 81 8 101 8 70 8 97 8 102 8 90 8 75 8 86 8 95 8 101 8 95 8 90 8 97 8 77 8 97 8 95 8 68 8 98 8 86 8 103 8 85 8 115 8 98 8 98 8 92 8 85 8 75 8 90 8 97 8 84 8 95 8 95 8 107 8 111 8 87 8 102 8 90 8 101 8 115 8 107 8 111 9 87 9 79 9 97 9 68 9 78 9 92 9 97 9 86 9 95 9 112 9 77 9 96 9 97 9 97 9 70 9 88 9 101 9 97 9 90 9 97 9 68 9 98 9 96 9 95 9 91 9 106 9 88 9 92 9 109 9 109 9 115 9 91 10 90 10 94 10 95 10 100 10 94 10 92 10 79 10 87 10 101
 
Output produced by software:

Enter (or paste) a matrix (table) containing all data (time) series. Every column represents a different variable and must be delimited by a space or Tab. Every row represents a period in time (or category) and must be delimited by hard returns. The easiest way to enter data is to copy and paste a block of spreadsheet cells. Please, do not use commas or spaces to seperate groups of digits!


Summary of computational transaction
Raw Inputview raw input (R code)
Raw Outputview raw output of R engine
Computing time10 seconds
R Server'George Udny Yule' @ 72.249.76.132
R Framework
error message
The field 'Names of X columns' contains a hard return which cannot be interpreted.
Please, resubmit your request without hard returns in the 'Names of X columns'.


ANOVA Model
MWARM30 ~ WISCRY7V
means7.3330.5240.333-0.333-1.333-0.333-0.667-2.3331.667-0.0831.6670.167-0.0830.667-0.333-0.333-0.733-0.0830.3330.333-1.6670.667-0.333-0.3330.167-0.667-0.476-0.333-0.033-0.933100.576-0.3330.750.667


ANOVA Statistics
DfSum SqMean SqF valuePr(>F)
WISCRY7V 3563.7321.8210.5770.968
Residuals115362.9573.156


Tukey Honest Significant Difference Comparisons
difflwruprp adj
101-1000.524-4.3085.3551
102-1000.333-5.3836.051
103-100-0.333-6.7256.0581
105-100-1.333-9.4186.7511
106-100-0.333-6.7256.0581
107-100-0.667-6.3835.051
108-100-2.333-10.4185.7511
109-1001.667-4.7258.0581
111-100-0.083-5.4315.2641
112-1001.667-6.4189.7511
115-1000.167-5.1815.5141
68-100-0.083-5.4315.2641
70-1000.667-5.056.3831
72-100-0.333-8.4187.7511
73-100-0.333-8.4187.7511
75-100-0.733-5.8474.381
77-100-0.083-5.4315.2641
78-1000.333-5.3836.051
79-1000.333-5.3836.051
80-100-1.667-7.3834.051
81-1000.667-7.4188.7511
82-100-0.333-8.4187.7511
84-100-0.333-6.7256.0581
85-1000.167-5.1815.5141
86-100-0.667-5.3344.0011
87-100-0.476-5.3084.3551
88-100-0.333-5.1654.4981
90-100-0.033-4.6424.5761
91-100-0.933-6.0474.181
92-1001-3.9515.9511
94-1000-4.9514.9511
95-1000.576-3.9855.1361
96-100-0.333-5.4474.781
97-1000.75-3.7695.2691
98-1000.667-4.4475.781
102-101-0.19-5.0224.6411
103-101-0.857-6.4714.7571
105-101-1.857-9.3425.6281
106-101-0.857-6.4714.7571
107-101-1.19-6.0223.6411
108-101-2.857-10.3424.6281
109-1011.143-4.4716.7571
111-101-0.607-4.9963.7811
112-1011.143-6.3428.6281
115-101-0.357-4.7464.0311
68-101-0.607-4.9963.7811
70-1010.143-4.6894.9741
72-101-0.857-8.3426.6281
73-101-0.857-8.3426.6281
75-101-1.257-5.3572.8431
77-101-0.607-4.9963.7811
78-101-0.19-5.0224.6411
79-101-0.19-5.0224.6411
80-101-2.19-7.0222.6410.998
81-1010.143-7.3427.6281
82-101-0.857-8.3426.6281
84-101-0.857-6.4714.7571
85-101-0.357-4.7464.0311
86-101-1.19-4.7192.3381
87-101-1-4.7422.7421
88-101-0.857-4.62.8851
90-101-0.557-4.0082.8931
91-101-1.457-5.5572.6431
92-1010.476-3.4194.3711
94-101-0.524-4.4193.3711
95-1010.052-3.3333.4371
96-101-0.857-4.9573.2431
97-1010.226-3.1043.5561
98-1010.143-3.9574.2431
103-102-0.667-7.0585.7251
105-102-1.667-9.7516.4181
106-102-0.667-7.0585.7251
107-102-1-6.7174.7171
108-102-2.667-10.7515.4181
109-1021.333-5.0587.7251
111-102-0.417-5.7644.9311
112-1021.333-6.7519.4181
115-102-0.167-5.5145.1811
68-102-0.417-5.7644.9311
70-1020.333-5.3836.051
72-102-0.667-8.7517.4181
73-102-0.667-8.7517.4181
75-102-1.067-6.184.0471
77-102-0.417-5.7644.9311
78-1020-5.7175.7171
79-1020-5.7175.7171
80-102-2-7.7173.7171
81-1020.333-7.7518.4181
82-102-0.667-8.7517.4181
84-102-0.667-7.0585.7251
85-102-0.167-5.5145.1811
86-102-1-5.6683.6681
87-102-0.81-5.6414.0221
88-102-0.667-5.4984.1651
90-102-0.367-4.9764.2421
91-102-1.267-6.383.8471
92-1020.667-4.2845.6171
94-102-0.333-5.2844.6171
95-1020.242-4.3184.8031
96-102-0.667-5.784.4471
97-1020.417-4.1034.9361
98-1020.333-4.785.4471
105-103-1-9.5757.5751
106-1030-7.0027.0021
107-103-0.333-6.7256.0581
108-103-2-10.5756.5751
109-1032-5.0029.0021
111-1030.25-5.8136.3131
112-1032-6.57510.5751
115-1030.5-5.5636.5631
68-1030.25-5.8136.3131
70-1031-5.3917.3911
72-1030-8.5758.5751
73-1030-8.5758.5751
75-103-0.4-6.2585.4581
77-1030.25-5.8136.3131
78-1030.667-5.7257.0581
79-1030.667-5.7257.0581
80-103-1.333-7.7255.0581
81-1031-7.5759.5751
82-1030-8.5758.5751
84-1030-7.0027.0021
85-1030.5-5.5636.5631
86-103-0.333-5.8075.141
87-103-0.143-5.7575.4711
88-1030-5.6145.6141
90-1030.3-5.1235.7231
91-103-0.6-6.4585.2581
92-1031.333-4.3837.051
94-1030.333-5.3836.051
95-1030.909-4.4736.2911
96-1030-5.8585.8581
97-1031.083-4.2646.4311
98-1031-4.8586.8581
106-1051-7.5759.5751
107-1050.667-7.4188.7511
108-105-1-10.9028.9021
109-1053-5.57511.5751
111-1051.25-6.5789.0781
112-1053-6.90212.9021
115-1051.5-6.3289.3281
68-1051.25-6.5789.0781
70-1052-6.08510.0851
72-1051-8.90210.9021
73-1051-8.90210.9021
75-1050.6-7.078.271
77-1051.25-6.5789.0781
78-1051.667-6.4189.7511
79-1051.667-6.4189.7511
80-105-0.333-8.4187.7511
81-1052-7.90211.9021
82-1051-8.90210.9021
84-1051-7.5759.5751
85-1051.5-6.3289.3281
86-1050.667-6.7148.0471
87-1050.857-6.6288.3421
88-1051-6.4858.4851
90-1051.3-6.0438.6431
91-1050.4-7.278.071
92-1052.333-5.2299.8961
94-1051.333-6.2298.8961
95-1051.909-5.4049.2221
96-1051-6.678.671
97-1052.083-5.2049.3711
98-1052-5.679.671
107-106-0.333-6.7256.0581
108-106-2-10.5756.5751
109-1062-5.0029.0021
111-1060.25-5.8136.3131
112-1062-6.57510.5751
115-1060.5-5.5636.5631
68-1060.25-5.8136.3131
70-1061-5.3917.3911
72-1060-8.5758.5751
73-1060-8.5758.5751
75-106-0.4-6.2585.4581
77-1060.25-5.8136.3131
78-1060.667-5.7257.0581
79-1060.667-5.7257.0581
80-106-1.333-7.7255.0581
81-1061-7.5759.5751
82-1060-8.5758.5751
84-1060-7.0027.0021
85-1060.5-5.5636.5631
86-106-0.333-5.8075.141
87-106-0.143-5.7575.4711
88-1060-5.6145.6141
90-1060.3-5.1235.7231
91-106-0.6-6.4585.2581
92-1061.333-4.3837.051
94-1060.333-5.3836.051
95-1060.909-4.4736.2911
96-1060-5.8585.8581
97-1061.083-4.2646.4311
98-1061-4.8586.8581
108-107-1.667-9.7516.4181
109-1072.333-4.0588.7251
111-1070.583-4.7645.9311
112-1072.333-5.75110.4181
115-1070.833-4.5146.1811
68-1070.583-4.7645.9311
70-1071.333-4.3837.051
72-1070.333-7.7518.4181
73-1070.333-7.7518.4181
75-107-0.067-5.185.0471
77-1070.583-4.7645.9311
78-1071-4.7176.7171
79-1071-4.7176.7171
80-107-1-6.7174.7171
81-1071.333-6.7519.4181
82-1070.333-7.7518.4181
84-1070.333-6.0586.7251
85-1070.833-4.5146.1811
86-1070-4.6684.6681
87-1070.19-4.6415.0221
88-1070.333-4.4985.1651
90-1070.633-3.9765.2421
91-107-0.267-5.384.8471
92-1071.667-3.2846.6171
94-1070.667-4.2845.6171
95-1071.242-3.3185.8031
96-1070.333-4.785.4471
97-1071.417-3.1035.9361
98-1071.333-3.786.4471
109-1084-4.57512.5750.997
111-1082.25-5.57810.0781
112-1084-5.90213.9021
115-1082.5-5.32810.3281
68-1082.25-5.57810.0781
70-1083-5.08511.0851
72-1082-7.90211.9021
73-1082-7.90211.9021
75-1081.6-6.079.271
77-1082.25-5.57810.0781
78-1082.667-5.41810.7511
79-1082.667-5.41810.7511
80-1080.667-7.4188.7511
81-1083-6.90212.9021
82-1082-7.90211.9021
84-1082-6.57510.5751
85-1082.5-5.32810.3281
86-1081.667-5.7149.0471
87-1081.857-5.6289.3421
88-1082-5.4859.4851
90-1082.3-5.0439.6431
91-1081.4-6.279.071
92-1083.333-4.22910.8960.999
94-1082.333-5.2299.8961
95-1082.909-4.40410.2221
96-1082-5.679.671
97-1083.083-4.20410.3710.999
98-1083-4.6710.671
111-109-1.75-7.8134.3131
112-1090-8.5758.5751
115-109-1.5-7.5634.5631
68-109-1.75-7.8134.3131
70-109-1-7.3915.3911
72-109-2-10.5756.5751
73-109-2-10.5756.5751
75-109-2.4-8.2583.4581
77-109-1.75-7.8134.3131
78-109-1.333-7.7255.0581
79-109-1.333-7.7255.0581
80-109-3.333-9.7253.0580.983
81-109-1-9.5757.5751
82-109-2-10.5756.5751
84-109-2-9.0025.0021
85-109-1.5-7.5634.5631
86-109-2.333-7.8073.140.999
87-109-2.143-7.7573.4711
88-109-2-7.6143.6141
90-109-1.7-7.1233.7231
91-109-2.6-8.4583.2580.999
92-109-0.667-6.3835.051
94-109-1.667-7.3834.051
95-109-1.091-6.4734.2911
96-109-2-7.8583.8581
97-109-0.917-6.2644.4311
98-109-1-6.8584.8581
112-1111.75-6.0789.5781
115-1110.25-4.7015.2011
68-1110-4.9514.9511
70-1110.75-4.5986.0981
72-111-0.25-8.0787.5781
73-111-0.25-8.0787.5781
75-111-0.65-5.3474.0471
77-1110-4.9514.9511
78-1110.417-4.9315.7641
79-1110.417-4.9315.7641
80-111-1.583-6.9313.7641
81-1110.75-7.0788.5781
82-111-0.25-8.0787.5781
84-111-0.25-6.3135.8131
85-1110.25-4.7015.2011
86-111-0.583-4.7913.6241
87-111-0.393-4.7813.9961
88-111-0.25-4.6384.1381
90-1110.05-4.0924.1921
91-111-0.85-5.5473.8471
92-1111.083-3.4365.6031
94-1110.083-4.4364.6031
95-1110.659-3.4294.7471
96-111-0.25-4.9474.4471
97-1110.833-3.2094.8761
98-1110.75-3.9475.4471
115-112-1.5-9.3286.3281
68-112-1.75-9.5786.0781
70-112-1-9.0857.0851
72-112-2-11.9027.9021
73-112-2-11.9027.9021
75-112-2.4-10.075.271
77-112-1.75-9.5786.0781
78-112-1.333-9.4186.7511
79-112-1.333-9.4186.7511
80-112-3.333-11.4184.7511
81-112-1-10.9028.9021
82-112-2-11.9027.9021
84-112-2-10.5756.5751
85-112-1.5-9.3286.3281
86-112-2.333-9.7145.0471
87-112-2.143-9.6285.3421
88-112-2-9.4855.4851
90-112-1.7-9.0435.6431
91-112-2.6-10.275.071
92-112-0.667-8.2296.8961
94-112-1.667-9.2295.8961
95-112-1.091-8.4046.2221
96-112-2-9.675.671
97-112-0.917-8.2046.3711
98-112-1-8.676.671
68-115-0.25-5.2014.7011
70-1150.5-4.8485.8481
72-115-0.5-8.3287.3281
73-115-0.5-8.3287.3281
75-115-0.9-5.5973.7971
77-115-0.25-5.2014.7011
78-1150.167-5.1815.5141
79-1150.167-5.1815.5141
80-115-1.833-7.1813.5141
81-1150.5-7.3288.3281
82-115-0.5-8.3287.3281
84-115-0.5-6.5635.5631
85-1150-4.9514.9511
86-115-0.833-5.0413.3741
87-115-0.643-5.0313.7461
88-115-0.5-4.8883.8881
90-115-0.2-4.3423.9421
91-115-1.1-5.7973.5971
92-1150.833-3.6865.3531
94-115-0.167-4.6864.3531
95-1150.409-3.6794.4971
96-115-0.5-5.1974.1971
97-1150.583-3.4594.6261
98-1150.5-4.1975.1971
70-680.75-4.5986.0981
72-68-0.25-8.0787.5781
73-68-0.25-8.0787.5781
75-68-0.65-5.3474.0471
77-680-4.9514.9511
78-680.417-4.9315.7641
79-680.417-4.9315.7641
80-68-1.583-6.9313.7641
81-680.75-7.0788.5781
82-68-0.25-8.0787.5781
84-68-0.25-6.3135.8131
85-680.25-4.7015.2011
86-68-0.583-4.7913.6241
87-68-0.393-4.7813.9961
88-68-0.25-4.6384.1381
90-680.05-4.0924.1921
91-68-0.85-5.5473.8471
92-681.083-3.4365.6031
94-680.083-4.4364.6031
95-680.659-3.4294.7471
96-68-0.25-4.9474.4471
97-680.833-3.2094.8761
98-680.75-3.9475.4471
72-70-1-9.0857.0851
73-70-1-9.0857.0851
75-70-1.4-6.5133.7131
77-70-0.75-6.0984.5981
78-70-0.333-6.055.3831
79-70-0.333-6.055.3831
80-70-2.333-8.053.3831
81-700-8.0858.0851
82-70-1-9.0857.0851
84-70-1-7.3915.3911
85-70-0.5-5.8484.8481
86-70-1.333-6.0013.3341
87-70-1.143-5.9743.6891
88-70-1-5.8323.8321
90-70-0.7-5.3093.9091
91-70-1.6-6.7133.5131
92-700.333-4.6175.2841
94-70-0.667-5.6174.2841
95-70-0.091-4.6514.4691
96-70-1-6.1134.1131
97-700.083-4.4364.6031
98-700-5.1135.1131
73-720-9.9029.9021
75-72-0.4-8.077.271
77-720.25-7.5788.0781
78-720.667-7.4188.7511
79-720.667-7.4188.7511
80-72-1.333-9.4186.7511
81-721-8.90210.9021
82-720-9.9029.9021
84-720-8.5758.5751
85-720.5-7.3288.3281
86-72-0.333-7.7147.0471
87-72-0.143-7.6287.3421
88-720-7.4857.4851
90-720.3-7.0437.6431
91-72-0.6-8.277.071
92-721.333-6.2298.8961
94-720.333-7.2297.8961
95-720.909-6.4048.2221
96-720-7.677.671
97-721.083-6.2048.3711
98-721-6.678.671
75-73-0.4-8.077.271
77-730.25-7.5788.0781
78-730.667-7.4188.7511
79-730.667-7.4188.7511
80-73-1.333-9.4186.7511
81-731-8.90210.9021
82-730-9.9029.9021
84-730-8.5758.5751
85-730.5-7.3288.3281
86-73-0.333-7.7147.0471
87-73-0.143-7.6287.3421
88-730-7.4857.4851
90-730.3-7.0437.6431
91-73-0.6-8.277.071
92-731.333-6.2298.8961
94-730.333-7.2297.8961
95-730.909-6.4048.2221
96-730-7.677.671
97-731.083-6.2048.3711
98-731-6.678.671
77-750.65-4.0475.3471
78-751.067-4.0476.181
79-751.067-4.0476.181
80-75-0.933-6.0474.181
81-751.4-6.279.071
82-750.4-7.278.071
84-750.4-5.4586.2581
85-750.9-3.7975.5971
86-750.067-3.8393.9721
87-750.257-3.8434.3571
88-750.4-3.74.51
90-750.7-3.1354.5351
91-75-0.2-4.6284.2281
92-751.733-2.5065.9731
94-750.733-3.5064.9731
95-751.309-2.4675.0851
96-750.4-4.0284.8281
97-751.483-2.2445.211
98-751.4-3.0285.8281
78-770.417-4.9315.7641
79-770.417-4.9315.7641
80-77-1.583-6.9313.7641
81-770.75-7.0788.5781
82-77-0.25-8.0787.5781
84-77-0.25-6.3135.8131
85-770.25-4.7015.2011
86-77-0.583-4.7913.6241
87-77-0.393-4.7813.9961
88-77-0.25-4.6384.1381
90-770.05-4.0924.1921
91-77-0.85-5.5473.8471
92-771.083-3.4365.6031
94-770.083-4.4364.6031
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96-77-0.25-4.9474.4471
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98-770.75-3.9475.4471
79-780-5.7175.7171
80-78-2-7.7173.7171
81-780.333-7.7518.4181
82-78-0.667-8.7517.4181
84-78-0.667-7.0585.7251
85-78-0.167-5.5145.1811
86-78-1-5.6683.6681
87-78-0.81-5.6414.0221
88-78-0.667-5.4984.1651
90-78-0.367-4.9764.2421
91-78-1.267-6.383.8471
92-780.667-4.2845.6171
94-78-0.333-5.2844.6171
95-780.242-4.3184.8031
96-78-0.667-5.784.4471
97-780.417-4.1034.9361
98-780.333-4.785.4471
80-79-2-7.7173.7171
81-790.333-7.7518.4181
82-79-0.667-8.7517.4181
84-79-0.667-7.0585.7251
85-79-0.167-5.5145.1811
86-79-1-5.6683.6681
87-79-0.81-5.6414.0221
88-79-0.667-5.4984.1651
90-79-0.367-4.9764.2421
91-79-1.267-6.383.8471
92-790.667-4.2845.6171
94-79-0.333-5.2844.6171
95-790.242-4.3184.8031
96-79-0.667-5.784.4471
97-790.417-4.1034.9361
98-790.333-4.785.4471
81-802.333-5.75110.4181
82-801.333-6.7519.4181
84-801.333-5.0587.7251
85-801.833-3.5147.1811
86-801-3.6685.6681
87-801.19-3.6416.0221
88-801.333-3.4986.1651
90-801.633-2.9766.2421
91-800.733-4.385.8471
92-802.667-2.2847.6170.973
94-801.667-3.2846.6171
95-802.242-2.3186.8030.993
96-801.333-3.786.4471
97-802.417-2.1036.9360.976
98-802.333-2.787.4470.998
82-81-1-10.9028.9021
84-81-1-9.5757.5751
85-81-0.5-8.3287.3281
86-81-1.333-8.7146.0471
87-81-1.143-8.6286.3421
88-81-1-8.4856.4851
90-81-0.7-8.0436.6431
91-81-1.6-9.276.071
92-810.333-7.2297.8961
94-81-0.667-8.2296.8961
95-81-0.091-7.4047.2221
96-81-1-8.676.671
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98-810-7.677.671
84-820-8.5758.5751
85-820.5-7.3288.3281
86-82-0.333-7.7147.0471
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88-820-7.4857.4851
90-820.3-7.0437.6431
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92-821.333-6.2298.8961
94-820.333-7.2297.8961
95-820.909-6.4048.2221
96-820-7.677.671
97-821.083-6.2048.3711
98-821-6.678.671
85-840.5-5.5636.5631
86-84-0.333-5.8075.141
87-84-0.143-5.7575.4711
88-840-5.6145.6141
90-840.3-5.1235.7231
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94-840.333-5.3836.051
95-840.909-4.4736.2911
96-840-5.8585.8581
97-841.083-4.2646.4311
98-841-4.8586.8581
86-85-0.833-5.0413.3741
87-85-0.643-5.0313.7461
88-85-0.5-4.8883.8881
90-85-0.2-4.3423.9421
91-85-1.1-5.7973.5971
92-850.833-3.6865.3531
94-85-0.167-4.6864.3531
95-850.409-3.6794.4971
96-85-0.5-5.1974.1971
97-850.583-3.4594.6261
98-850.5-4.1975.1971
87-860.19-3.3383.7191
88-860.333-3.1953.8621
90-860.633-2.5843.851
91-86-0.267-4.1723.6391
92-861.667-2.0235.3570.998
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95-861.242-1.9054.3891
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97-861.417-1.6714.5040.998
98-861.333-2.5725.2391
88-870.143-3.63.8851
90-870.443-3.0083.8931
91-87-0.457-4.5573.6431
92-871.476-2.4195.3711
94-870.476-3.4194.3711
95-871.052-2.3334.4371
96-870.143-3.9574.2431
97-871.226-2.1044.5561
98-871.143-2.9575.2431
90-880.3-3.153.751
91-88-0.6-4.73.51
92-881.333-2.5625.2291
94-880.333-3.5624.2291
95-880.909-2.4764.2941
96-880-4.14.11
97-881.083-2.2474.4131
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91-90-0.9-4.7352.9351
92-901.033-2.5824.6491
94-900.033-3.5823.6491
95-900.609-2.453.6681
96-90-0.3-4.1353.5351
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98-900.7-3.1354.5351
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97-961.083-2.6444.811
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98-97-0.083-3.813.6441


Levenes Test for Homogeneity of Variance
DfF valuePr(>F)
Group350.6620.919
115
 
Charts produced by software:
http://www.freestatistics.org/blog/date/2009/Dec/14/t1260806485eigq4z7q9gt5epy/350pt1260806421.png (open in new window)
http://www.freestatistics.org/blog/date/2009/Dec/14/t1260806485eigq4z7q9gt5epy/350pt1260806421.ps (open in new window)


http://www.freestatistics.org/blog/date/2009/Dec/14/t1260806485eigq4z7q9gt5epy/43xwl1260806421.png (open in new window)
http://www.freestatistics.org/blog/date/2009/Dec/14/t1260806485eigq4z7q9gt5epy/43xwl1260806421.ps (open in new window)


 
Parameters (Session):
par1 = 1 ; par2 = 2 ; par3 = TRUE ;
 
Parameters (R input):
par1 = 1 ; par2 = 2 ; par3 = TRUE ;
 
R code (references can be found in the software module):
cat1 <- as.numeric(par1) #
cat2<- as.numeric(par2) #
intercept<-as.logical(par3)
x <- t(x)
x1<-as.numeric(x[,cat1])
f1<-as.character(x[,cat2])
xdf<-data.frame(x1,f1)
(V1<-dimnames(y)[[1]][cat1])
(V2<-dimnames(y)[[1]][cat2])
names(xdf)<-c('Response', 'Treatment')
if(intercept == FALSE) (lmxdf<-lm(Response ~ Treatment - 1, data = xdf) ) else (lmxdf<-lm(Response ~ Treatment, data = xdf) )
(aov.xdf<-aov(lmxdf) )
(anova.xdf<-anova(lmxdf) )
load(file='createtable')
a<-table.start()
a<-table.row.start(a)
a<-table.element(a,'ANOVA Model', length(lmxdf$coefficients)+1,TRUE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a, paste(V1, ' ~ ', V2), length(lmxdf$coefficients)+1,TRUE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a, 'means',,TRUE)
for(i in 1:length(lmxdf$coefficients)){
a<-table.element(a, round(lmxdf$coefficients[i], digits=3),,FALSE)
}
a<-table.row.end(a)
a<-table.end(a)
table.save(a,file='mytable.tab')
a<-table.start()
a<-table.row.start(a)
a<-table.element(a,'ANOVA Statistics', 5+1,TRUE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a, ' ',,TRUE)
a<-table.element(a, 'Df',,FALSE)
a<-table.element(a, 'Sum Sq',,FALSE)
a<-table.element(a, 'Mean Sq',,FALSE)
a<-table.element(a, 'F value',,FALSE)
a<-table.element(a, 'Pr(>F)',,FALSE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a, V2,,TRUE)
a<-table.element(a, anova.xdf$Df[1],,FALSE)
a<-table.element(a, round(anova.xdf$'Sum Sq'[1], digits=3),,FALSE)
a<-table.element(a, round(anova.xdf$'Mean Sq'[1], digits=3),,FALSE)
a<-table.element(a, round(anova.xdf$'F value'[1], digits=3),,FALSE)
a<-table.element(a, round(anova.xdf$'Pr(>F)'[1], digits=3),,FALSE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a, 'Residuals',,TRUE)
a<-table.element(a, anova.xdf$Df[2],,FALSE)
a<-table.element(a, round(anova.xdf$'Sum Sq'[2], digits=3),,FALSE)
a<-table.element(a, round(anova.xdf$'Mean Sq'[2], digits=3),,FALSE)
a<-table.element(a, ' ',,FALSE)
a<-table.element(a, ' ',,FALSE)
a<-table.row.end(a)
a<-table.end(a)
table.save(a,file='mytable1.tab')
bitmap(file='anovaplot.png')
boxplot(Response ~ Treatment, data=xdf, xlab=V2, ylab=V1)
dev.off()
if(intercept==TRUE){
thsd<-TukeyHSD(aov.xdf)
bitmap(file='TukeyHSDPlot.png')
plot(thsd)
dev.off()
}
if(intercept==TRUE){
a<-table.start()
a<-table.row.start(a)
a<-table.element(a,'Tukey Honest Significant Difference Comparisons', 5,TRUE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a, ' ', 1, TRUE)
for(i in 1:4){
a<-table.element(a,colnames(thsd[[1]])[i], 1, TRUE)
}
a<-table.row.end(a)
for(i in 1:length(rownames(thsd[[1]]))){
a<-table.row.start(a)
a<-table.element(a,rownames(thsd[[1]])[i], 1, TRUE)
for(j in 1:4){
a<-table.element(a,round(thsd[[1]][i,j], digits=3), 1, FALSE)
}
a<-table.row.end(a)
}
a<-table.end(a)
table.save(a,file='mytable2.tab')
}
if(intercept==FALSE){
a<-table.start()
a<-table.row.start(a)
a<-table.element(a,'TukeyHSD Message', 1,TRUE)
a<-table.row.end(a)
a<-table.start()
a<-table.row.start(a)
a<-table.element(a,'Must Include Intercept to use Tukey Test ', 1, FALSE)
a<-table.row.end(a)
a<-table.end(a)
table.save(a,file='mytable2.tab')
}
library(car)
lt.lmxdf<-levene.test(lmxdf)
a<-table.start()
a<-table.row.start(a)
a<-table.element(a,'Levenes Test for Homogeneity of Variance', 4,TRUE)
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a,' ', 1, TRUE)
for (i in 1:3){
a<-table.element(a,names(lt.lmxdf)[i], 1, FALSE)
}
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a,'Group', 1, TRUE)
for (i in 1:3){
a<-table.element(a,round(lt.lmxdf[[i]][1], digits=3), 1, FALSE)
}
a<-table.row.end(a)
a<-table.row.start(a)
a<-table.element(a,' ', 1, TRUE)
a<-table.element(a,lt.lmxdf[[1]][2], 1, FALSE)
a<-table.element(a,' ', 1, FALSE)
a<-table.element(a,' ', 1, FALSE)
a<-table.row.end(a)
a<-table.end(a)
table.save(a,file='mytable3.tab')
 





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Software written by Ed van Stee & Patrick Wessa


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