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*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: Sun, 06 Dec 2009 10:50:05 -0700
 
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/06/t1260121890knxnuls1m9xceze.htm/, Retrieved Sun, 06 Dec 2009 18:51:33 +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/06/t1260121890knxnuls1m9xceze.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 «
1 91 1 88 2 94 2 90 2 73 1 68 2 80 2 86 3 86 3 91 1 79 3 96 2 92 3 72 2 96 1 70 2 86 2 87 3 88 2 79 1 90 2 95 2 85 2 91 2 90 3 115 3 84 2 79 1 94 2 97 2 86 3 111 2 87 3 98 3 87 1 68 1 88 3 82 3 111 2 75 1 94 1 95 1 80 2 95 2 68 1 94 1 88 3 84 2 91 1 101 2 98 3 78 2 109 2 102 1 81 3 97 3 75 2 97 1 0 1 101 3 101 2 95 2 95 2 91 2 95 1 90 2 107 3 92 2 86 1 70 3 95 1 96 2 91 3 87 1 92 3 97 2 102 1 91 2 68 1 88 2 97 2 90 3 101 9 94 3 101 3 109 2 100 2 103 2 94 3 97 1 85 1 75 2 77 1 87 3 78 2 108 2 97 1 105 2 106 2 107 2 95 3 107 2 115 2 101 3 85 3 90 3 115 2 95 2 97 1 112 3 97 2 77 2 90 2 94 2 103 2 77 1 98 2 90 2 111 1 77 1 88 2 75 3 92 1 78 3 106 1 80 2 87 2 92 3 91 2 111 1 86 3 85 2 90 3 101 2 94 2 86 3 86 2 90 3 75 2 86 1 91 2 97 1 91 1 70 1 98 1 96 2 95 2 100 2 95 1 97 3 97 3 92 3 115 2 88 1 87 2 100 3 98 2 102 2 91 1 96
 
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'Gwilym Jenkins' @ 72.249.127.135


ANOVA Model
MWARM30 ~ WISCRY7V
means111.2861101.51.33311.51.501.750.50211.20.751.3330.6670.3330221.251.11110.4290.90.8181.3331.510.61.3331


ANOVA Statistics
DfSum SqMean SqF valuePr(>F)
WISCRY7V3627.290.7580.8760.67
Residuals123106.4850.866


Tukey Honest Significant Difference Comparisons
difflwruprp adj
100-01-3.2425.2421
101-01.286-2.6425.2131
102-01-3.2425.2421
103-01-3.4995.4991
105-00-5.1955.1951
106-01.5-2.9995.9991
107-01.333-2.9095.5751
108-01-4.1956.1951
109-01.5-2.9995.9991
111-01.5-2.6075.6071
112-00-5.1955.1951
115-01.75-2.3575.8570.999
68-00.5-3.6074.6071
70-00-4.2424.2421
72-02-3.1957.1951
73-01-4.1956.1951
75-01.2-2.8245.2241
77-00.75-3.3574.8571
78-01.333-2.9095.5751
79-00.667-3.5754.9091
80-00.333-3.9094.5751
81-00-5.1955.1951
82-02-3.1957.1951
84-02-2.4996.4990.999
85-01.25-2.8575.3571
86-01.111-2.7614.9841
87-01-2.9274.9271
88-00.429-3.4994.3561
90-00.9-2.9534.7531
91-00.818-3.0194.6551
92-01.333-2.6355.3011
94-01.5-2.3975.3971
95-01-2.8374.8371
96-00.6-3.4244.6241
97-01.333-2.495.1571
98-01-3.0245.0241
101-1000.286-2.2492.8211
102-1000-331
103-1000-3.3543.3541
105-100-1-5.2423.2421
106-1000.5-2.8543.8541
107-1000.333-2.6663.3331
108-1000-4.2424.2421
109-1000.5-2.8543.8541
111-1000.5-2.3063.3061
112-100-1-5.2423.2421
115-1000.75-2.0563.5561
68-100-0.5-3.3062.3061
70-100-1-421
72-1001-3.2425.2421
73-1000-4.2424.2421
75-1000.2-2.4832.8831
77-100-0.25-3.0562.5561
78-1000.333-2.6663.3331
79-100-0.333-3.3332.6661
80-100-0.667-3.6662.3331
81-100-1-5.2423.2421
82-1001-3.2425.2421
84-1001-2.3544.3541
85-1000.25-2.5563.0561
86-1000.111-2.3382.561
87-1000-2.5352.5351
88-100-0.571-3.1071.9641
90-100-0.1-2.5182.3181
91-100-0.182-2.5752.2111
92-1000.333-2.2642.9311
94-1000.5-1.9872.9871
95-1000-2.3932.3931
96-100-0.4-3.0832.2831
97-1000.333-2.0382.7051
98-1000-2.6832.6831
102-101-0.286-2.8212.2491
103-101-0.286-3.2312.661
105-101-1.286-5.2132.6421
106-1010.214-2.7313.161
107-1010.048-2.4872.5831
108-101-0.286-4.2133.6421
109-1010.214-2.7313.161
111-1010.214-2.0882.5171
112-101-1.286-5.2132.6421
115-1010.464-1.8382.7671
68-101-0.786-3.0881.5171
70-101-1.286-3.8211.2490.99
72-1010.714-3.2134.6421
73-101-0.286-4.2133.6421
75-101-0.086-2.2372.0651
77-101-0.536-2.8381.7671
78-1010.048-2.4872.5831
79-101-0.619-3.1541.9161
80-101-0.952-3.4871.5831
81-101-1.286-5.2132.6421
82-1010.714-3.2134.6421
84-1010.714-2.2313.661
85-101-0.036-2.3382.2671
86-101-0.175-2.0261.6771
87-101-0.286-2.2491.6781
88-101-0.857-2.8211.1070.999
90-101-0.386-2.1961.4251
91-101-0.468-2.2441.3091
92-1010.048-1.9962.0911
94-1010.214-1.6872.1161
95-101-0.286-2.0621.4911
96-101-0.686-2.8371.4651
97-1010.048-1.71.7951
98-101-0.286-2.4371.8651
103-1020-3.3543.3541
105-102-1-5.2423.2421
106-1020.5-2.8543.8541
107-1020.333-2.6663.3331
108-1020-4.2424.2421
109-1020.5-2.8543.8541
111-1020.5-2.3063.3061
112-102-1-5.2423.2421
115-1020.75-2.0563.5561
68-102-0.5-3.3062.3061
70-102-1-421
72-1021-3.2425.2421
73-1020-4.2424.2421
75-1020.2-2.4832.8831
77-102-0.25-3.0562.5561
78-1020.333-2.6663.3331
79-102-0.333-3.3332.6661
80-102-0.667-3.6662.3331
81-102-1-5.2423.2421
82-1021-3.2425.2421
84-1021-2.3544.3541
85-1020.25-2.5563.0561
86-1020.111-2.3382.561
87-1020-2.5352.5351
88-102-0.571-3.1071.9641
90-102-0.1-2.5182.3181
91-102-0.182-2.5752.2111
92-1020.333-2.2642.9311
94-1020.5-1.9872.9871
95-1020-2.3932.3931
96-102-0.4-3.0832.2831
97-1020.333-2.0382.7051
98-1020-2.6832.6831
105-103-1-5.4993.4991
106-1030.5-3.1744.1741
107-1030.333-3.023.6871
108-1030-4.4994.4991
109-1030.5-3.1744.1741
111-1030.5-2.6823.6821
112-103-1-5.4993.4991
115-1030.75-2.4323.9321
68-103-0.5-3.6822.6821
70-103-1-4.3542.3541
72-1031-3.4995.4991
73-1030-4.4994.4991
75-1030.2-2.8743.2741
77-103-0.25-3.4322.9321
78-1030.333-3.023.6871
79-103-0.333-3.6873.021
80-103-0.667-4.022.6871
81-103-1-5.4993.4991
82-1031-3.4995.4991
84-1031-2.6744.6741
85-1030.25-2.9323.4321
86-1030.111-2.7612.9831
87-1030-2.9462.9461
88-103-0.571-3.5172.3741
90-103-0.1-2.9462.7461
91-103-0.182-3.0062.6421
92-1030.333-2.6663.3331
94-1030.5-2.4043.4041
95-1030-2.8242.8241
96-103-0.4-3.4742.6741
97-1030.333-2.4733.1391
98-1030-3.0743.0741
106-1051.5-2.9995.9991
107-1051.333-2.9095.5751
108-1051-4.1956.1951
109-1051.5-2.9995.9991
111-1051.5-2.6075.6071
112-1050-5.1955.1951
115-1051.75-2.3575.8570.999
68-1050.5-3.6074.6071
70-1050-4.2424.2421
72-1052-3.1957.1951
73-1051-4.1956.1951
75-1051.2-2.8245.2241
77-1050.75-3.3574.8571
78-1051.333-2.9095.5751
79-1050.667-3.5754.9091
80-1050.333-3.9094.5751
81-1050-5.1955.1951
82-1052-3.1957.1951
84-1052-2.4996.4990.999
85-1051.25-2.8575.3571
86-1051.111-2.7614.9841
87-1051-2.9274.9271
88-1050.429-3.4994.3561
90-1050.9-2.9534.7531
91-1050.818-3.0194.6551
92-1051.333-2.6355.3011
94-1051.5-2.3975.3971
95-1051-2.8374.8371
96-1050.6-3.4244.6241
97-1051.333-2.495.1571
98-1051-3.0245.0241
107-106-0.167-3.523.1871
108-106-0.5-4.9993.9991
109-1060-3.6743.6741
111-1060-3.1823.1821
112-106-1.5-5.9992.9991
115-1060.25-2.9323.4321
68-106-1-4.1822.1821
70-106-1.5-4.8541.8540.999
72-1060.5-3.9994.9991
73-106-0.5-4.9993.9991
75-106-0.3-3.3742.7741
77-106-0.75-3.9322.4321
78-106-0.167-3.523.1871
79-106-0.833-4.1872.521
80-106-1.167-4.522.1871
81-106-1.5-5.9992.9991
82-1060.5-3.9994.9991
84-1060.5-3.1744.1741
85-106-0.25-3.4322.9321
86-106-0.389-3.2612.4831
87-106-0.5-3.4462.4461
88-106-1.071-4.0171.8741
90-106-0.6-3.4462.2461
91-106-0.682-3.5062.1421
92-106-0.167-3.1662.8331
94-1060-2.9042.9041
95-106-0.5-3.3242.3241
96-106-0.9-3.9742.1741
97-106-0.167-2.9732.6391
98-106-0.5-3.5742.5741
108-107-0.333-4.5753.9091
109-1070.167-3.1873.521
111-1070.167-2.6392.9731
112-107-1.333-5.5752.9091
115-1070.417-2.3893.2231
68-107-0.833-3.6391.9731
70-107-1.333-4.3331.6660.999
72-1070.667-3.5754.9091
73-107-0.333-4.5753.9091
75-107-0.133-2.8162.551
77-107-0.583-3.3892.2231
78-1070-331
79-107-0.667-3.6662.3331
80-107-1-421
81-107-1.333-5.5752.9091
82-1070.667-3.5754.9091
84-1070.667-2.6874.021
85-107-0.083-2.8892.7231
86-107-0.222-2.6712.2271
87-107-0.333-2.8682.2021
88-107-0.905-3.441.631
90-107-0.433-2.8521.9851
91-107-0.515-2.9081.8781
92-1070-2.5982.5981
94-1070.167-2.322.6541
95-107-0.333-2.7262.061
96-107-0.733-3.4161.951
97-1070-2.3712.3711
98-107-0.333-3.0162.351
109-1080.5-3.9994.9991
111-1080.5-3.6074.6071
112-108-1-6.1954.1951
115-1080.75-3.3574.8571
68-108-0.5-4.6073.6071
70-108-1-5.2423.2421
72-1081-4.1956.1951
73-1080-5.1955.1951
75-1080.2-3.8244.2241
77-108-0.25-4.3573.8571
78-1080.333-3.9094.5751
79-108-0.333-4.5753.9091
80-108-0.667-4.9093.5751
81-108-1-6.1954.1951
82-1081-4.1956.1951
84-1081-3.4995.4991
85-1080.25-3.8574.3571
86-1080.111-3.7613.9841
87-1080-3.9273.9271
88-108-0.571-4.4993.3561
90-108-0.1-3.9533.7531
91-108-0.182-4.0193.6551
92-1080.333-3.6354.3011
94-1080.5-3.3974.3971
95-1080-3.8373.8371
96-108-0.4-4.4243.6241
97-1080.333-3.494.1571
98-1080-4.0244.0241
111-1090-3.1823.1821
112-109-1.5-5.9992.9991
115-1090.25-2.9323.4321
68-109-1-4.1822.1821
70-109-1.5-4.8541.8540.999
72-1090.5-3.9994.9991
73-109-0.5-4.9993.9991
75-109-0.3-3.3742.7741
77-109-0.75-3.9322.4321
78-109-0.167-3.523.1871
79-109-0.833-4.1872.521
80-109-1.167-4.522.1871
81-109-1.5-5.9992.9991
82-1090.5-3.9994.9991
84-1090.5-3.1744.1741
85-109-0.25-3.4322.9321
86-109-0.389-3.2612.4831
87-109-0.5-3.4462.4461
88-109-1.071-4.0171.8741
90-109-0.6-3.4462.2461
91-109-0.682-3.5062.1421
92-109-0.167-3.1662.8331
94-1090-2.9042.9041
95-109-0.5-3.3242.3241
96-109-0.9-3.9742.1741
97-109-0.167-2.9732.6391
98-109-0.5-3.5742.5741
112-111-1.5-5.6072.6071
115-1110.25-2.3482.8481
68-111-1-3.5981.5981
70-111-1.5-4.3061.3060.978
72-1110.5-3.6074.6071
73-111-0.5-4.6073.6071
75-111-0.3-2.7642.1641
77-111-0.75-3.3481.8481
78-111-0.167-2.9732.6391
79-111-0.833-3.6391.9731
80-111-1.167-3.9731.6391
81-111-1.5-5.6072.6071
82-1110.5-3.6074.6071
84-1110.5-2.6823.6821
85-111-0.25-2.8482.3481
86-111-0.389-2.5971.8191
87-111-0.5-2.8031.8031
88-111-1.071-3.3741.2310.997
90-111-0.6-2.7731.5731
91-111-0.682-2.8271.4631
92-111-0.167-2.5382.2051
94-1110-2.252.251
95-111-0.5-2.6451.6451
96-111-0.9-3.3641.5641
97-111-0.167-2.2881.9541
98-111-0.5-2.9641.9641
115-1121.75-2.3575.8570.999
68-1120.5-3.6074.6071
70-1120-4.2424.2421
72-1122-3.1957.1951
73-1121-4.1956.1951
75-1121.2-2.8245.2241
77-1120.75-3.3574.8571
78-1121.333-2.9095.5751
79-1120.667-3.5754.9091
80-1120.333-3.9094.5751
81-1120-5.1955.1951
82-1122-3.1957.1951
84-1122-2.4996.4990.999
85-1121.25-2.8575.3571
86-1121.111-2.7614.9841
87-1121-2.9274.9271
88-1120.429-3.4994.3561
90-1120.9-2.9534.7531
91-1120.818-3.0194.6551
92-1121.333-2.6355.3011
94-1121.5-2.3975.3971
95-1121-2.8374.8371
96-1120.6-3.4244.6241
97-1121.333-2.495.1571
98-1121-3.0245.0241
68-115-1.25-3.8481.3480.995
70-115-1.75-4.5561.0560.871
72-1150.25-3.8574.3571
73-115-0.75-4.8573.3571
75-115-0.55-3.0141.9141
77-115-1-3.5981.5981
78-115-0.417-3.2232.3891
79-115-1.083-3.8891.7231
80-115-1.417-4.2231.3890.99
81-115-1.75-5.8572.3570.999
82-1150.25-3.8574.3571
84-1150.25-2.9323.4321
85-115-0.5-3.0982.0981
86-115-0.639-2.8471.5691
87-115-0.75-3.0531.5531
88-115-1.321-3.6240.9810.946
90-115-0.85-3.0231.3231
91-115-0.932-3.0771.2130.999
92-115-0.417-2.7881.9551
94-115-0.25-2.521
95-115-0.75-2.8951.3951
96-115-1.15-3.6141.3140.997
97-115-0.417-2.5381.7041
98-115-0.75-3.2141.7141
70-68-0.5-3.3062.3061
72-681.5-2.6075.6071
73-680.5-3.6074.6071
75-680.7-1.7643.1641
77-680.25-2.3482.8481
78-680.833-1.9733.6391
79-680.167-2.6392.9731
80-68-0.167-2.9732.6391
81-68-0.5-4.6073.6071
82-681.5-2.6075.6071
84-681.5-1.6824.6820.997
85-680.75-1.8483.3481
86-680.611-1.5972.8191
87-680.5-1.8032.8031
88-68-0.071-2.3742.2311
90-680.4-1.7732.5731
91-680.318-1.8272.4631
92-680.833-1.5383.2051
94-681-1.253.250.999
95-680.5-1.6452.6451
96-680.1-2.3642.5641
97-680.833-1.2882.9541
98-680.5-1.9642.9641
72-702-2.2426.2420.997
73-701-3.2425.2421
75-701.2-1.4833.8830.999
77-700.75-2.0563.5561
78-701.333-1.6664.3330.999
79-700.667-2.3333.6661
80-700.333-2.6663.3331
81-700-4.2424.2421
82-702-2.2426.2420.997
84-702-1.3545.3540.917
85-701.25-1.5564.0560.999
86-701.111-1.3383.560.998
87-701-1.5353.5351
88-700.429-2.1072.9641
90-700.9-1.5183.3181
91-700.818-1.5753.2111
92-701.333-1.2643.9310.988
94-701.5-0.9873.9870.907
95-701-1.3933.3931
96-700.6-2.0833.2831
97-701.333-1.0383.7050.958
98-701-1.6833.6831
73-72-1-6.1954.1951
75-72-0.8-4.8243.2241
77-72-1.25-5.3572.8571
78-72-0.667-4.9093.5751
79-72-1.333-5.5752.9091
80-72-1.667-5.9092.5751
81-72-2-7.1953.1951
82-720-5.1955.1951
84-720-4.4994.4991
85-72-0.75-4.8573.3571
86-72-0.889-4.7612.9841
87-72-1-4.9272.9271
88-72-1.571-5.4992.3561
90-72-1.1-4.9532.7531
91-72-1.182-5.0192.6551
92-72-0.667-4.6353.3011
94-72-0.5-4.3973.3971
95-72-1-4.8372.8371
96-72-1.4-5.4242.6241
97-72-0.667-4.493.1571
98-72-1-5.0243.0241
75-730.2-3.8244.2241
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80-73-0.667-4.9093.5751
81-73-1-6.1954.1951
82-731-4.1956.1951
84-731-3.4995.4991
85-730.25-3.8574.3571
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87-730-3.9273.9271
88-73-0.571-4.4993.3561
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92-730.333-3.6354.3011
94-730.5-3.3974.3971
95-730-3.8373.8371
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97-730.333-3.494.1571
98-730-4.0244.0241
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80-75-0.867-3.551.8161
81-75-1.2-5.2242.8241
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84-750.8-2.2743.8741
85-750.05-2.4142.5141
86-75-0.089-2.1381.961
87-75-0.2-2.3511.9511
88-75-0.771-2.9231.381
90-75-0.3-2.3121.7121
91-75-0.382-2.3631.61
92-750.133-2.0912.3581
94-750.3-1.7942.3941
95-75-0.2-2.1811.7811
96-75-0.6-2.9231.7231
97-750.133-1.8222.0891
98-75-0.2-2.5232.1231
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85-770.5-2.0983.0981
86-770.361-1.8472.5691
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90-770.15-2.0232.3231
91-770.068-2.0772.2131
92-770.583-1.7882.9551
94-770.75-1.531
95-770.25-1.8952.3951
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79-78-0.667-3.6662.3331
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81-78-1.333-5.5752.9091
82-780.667-3.5754.9091
84-780.667-2.6874.021
85-78-0.083-2.8892.7231
86-78-0.222-2.6712.2271
87-78-0.333-2.8682.2021
88-78-0.905-3.441.631
90-78-0.433-2.8521.9851
91-78-0.515-2.9081.8781
92-780-2.5982.5981
94-780.167-2.322.6541
95-78-0.333-2.7262.061
96-78-0.733-3.4161.951
97-780-2.3712.3711
98-78-0.333-3.0162.351
80-79-0.333-3.3332.6661
81-79-0.667-4.9093.5751
82-791.333-2.9095.5751
84-791.333-2.024.6871
85-790.583-2.2233.3891
86-790.444-2.0052.8941
87-790.333-2.2022.8681
88-79-0.238-2.7732.2971
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91-790.152-2.2412.5441
92-790.667-1.9313.2641
94-790.833-1.6543.321
95-790.333-2.062.7261
96-79-0.067-2.752.6161
97-790.667-1.7053.0381
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82-801.667-2.5755.9091
84-801.667-1.6875.020.992
85-800.917-1.8893.7231
86-800.778-1.6713.2271
87-800.667-1.8683.2021
88-800.095-2.442.631
90-800.567-1.8522.9851
91-800.485-1.9082.8781
92-801-1.5983.5981
94-801.167-1.323.6540.997
95-800.667-1.7263.061
96-800.267-2.4162.951
97-801-1.3713.3711
98-800.667-2.0163.351
82-812-3.1957.1951
84-812-2.4996.4990.999
85-811.25-2.8575.3571
86-811.111-2.7614.9841
87-811-2.9274.9271
88-810.429-3.4994.3561
90-810.9-2.9534.7531
91-810.818-3.0194.6551
92-811.333-2.6355.3011
94-811.5-2.3975.3971
95-811-2.8374.8371
96-810.6-3.4244.6241
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98-811-3.0245.0241
84-820-4.4994.4991
85-82-0.75-4.8573.3571
86-82-0.889-4.7612.9841
87-82-1-4.9272.9271
88-82-1.571-5.4992.3561
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92-82-0.667-4.6353.3011
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97-82-0.667-4.493.1571
98-82-1-5.0243.0241
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88-84-1.571-4.5171.3740.979
90-84-1.1-3.9461.7461
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92-84-0.667-3.6662.3331
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96-84-1.4-4.4741.6740.998
97-84-0.667-3.4732.1391
98-84-1-4.0742.0741
86-85-0.139-2.3472.0691
87-85-0.25-2.5532.0531
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90-85-0.35-2.5231.8231
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92-850.083-2.2882.4551
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95-85-0.25-2.3951.8951
96-85-0.65-3.1141.8141
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87-86-0.111-1.9621.741
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92-860.222-1.7142.1581
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98-86-0.111-2.161.9381
88-87-0.571-2.5351.3921
90-87-0.1-1.911.711
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94-870.5-1.4012.4011
95-870-1.7761.7761
96-87-0.4-2.5511.7511
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91-880.39-1.3872.1661
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95-880.571-1.2052.3481
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95-94-0.5-2.2071.2071
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98-960.4-1.9232.7231
98-97-0.333-2.2891.6221


Levenes Test for Homogeneity of Variance
DfF valuePr(>F)
Group360.6090.956
123
 
Charts produced by software:
http://www.freestatistics.org/blog/date/2009/Dec/06/t1260121890knxnuls1m9xceze/3n55w1260121795.png (open in new window)
http://www.freestatistics.org/blog/date/2009/Dec/06/t1260121890knxnuls1m9xceze/3n55w1260121795.ps (open in new window)


http://www.freestatistics.org/blog/date/2009/Dec/06/t1260121890knxnuls1m9xceze/4c4av1260121795.png (open in new window)
http://www.freestatistics.org/blog/date/2009/Dec/06/t1260121890knxnuls1m9xceze/4c4av1260121795.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()
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')
 





Copyright

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This work is licensed under a Creative Commons Attribution-Noncommercial-Share Alike 3.0 License.

Software written by Ed van Stee & Patrick Wessa


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