Grain yield of five rice varieties evaluated in four replications reatments 3.852 4.788 4.576 6.034 5.874 2 2.606 4.936 4.454 5.276 5.916 Replications b) State the null hypothesis. c) State the alternate hypothesis. 3 3.144 4.562 4.884 5.906 5.984 mplete an ANOVA Table for a CRD based on the data set provided above. f) Calculate the CV (show your work). 2.894 4.608 3.924 5.652 5.518 a) Complete the analysis of variance (ANOVA) table for a completely randomized design (CRD) below. urces of Variation df tal SS Yi. MS d) Make a conclusion on the hypotheses based on the results. e) Indicate what type of error you are likely to be committing. Y.. F FCrt

MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
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2. Grain yield of five rice varieties evaluated in four replications
Treatments
1
2
3
4
5
Y.j
9.j
1
3.852
4.788
4.576
6.034
5.874
Total
2
2.606
4.936
4.454
5.276
5.916
Replications
b) State the null hypothesis.
Complete an ANOVA Table for a CRD based on the data set provided above.
c) State the alternate hypothesis.
3
3.144
4.562
4.884
5.906
5.984
a) Complete the analysis of variance (ANOVA) table for a completely randomized design
(CRD) below.
Sources of Variation df
f) Calculate the CV (show your work).
h) State the null hypothesis.
4
2.894
4.608
3.924
5.652
5.518
SS
d) Make a conclusion on the hypotheses based on the results.
e) Indicate what type of error you are likely to be committing.
i). State the alternate hypothesis.
MS
SS
g) Conduct an ANOVA for a randomized complete block design (RCB).
Sources of Variation
df
Total
Yi.
MS
j) Make a conclusion on the hypotheses based on the results
Y..
Si
F FCrt
F FCrt
Transcribed Image Text:2. Grain yield of five rice varieties evaluated in four replications Treatments 1 2 3 4 5 Y.j 9.j 1 3.852 4.788 4.576 6.034 5.874 Total 2 2.606 4.936 4.454 5.276 5.916 Replications b) State the null hypothesis. Complete an ANOVA Table for a CRD based on the data set provided above. c) State the alternate hypothesis. 3 3.144 4.562 4.884 5.906 5.984 a) Complete the analysis of variance (ANOVA) table for a completely randomized design (CRD) below. Sources of Variation df f) Calculate the CV (show your work). h) State the null hypothesis. 4 2.894 4.608 3.924 5.652 5.518 SS d) Make a conclusion on the hypotheses based on the results. e) Indicate what type of error you are likely to be committing. i). State the alternate hypothesis. MS SS g) Conduct an ANOVA for a randomized complete block design (RCB). Sources of Variation df Total Yi. MS j) Make a conclusion on the hypotheses based on the results Y.. Si F FCrt F FCrt
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