2. Casuarina equisetifolia (Australian pine) is allelopathic, but some studies have found that C. equisetifolia litter can increase crop production. Ayana Curran-Howes grew cauliflower in regular soil (control), soil with non-composted C. equisetifolia litter, and soil with composted C. equisetifolia litter. She measured the aboveground biomass of cauliflower plants. What is the null hypothesis? What is the alternative hypothesis?

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2. Casuarina equisetifolia (Australian pine) is allelopathic, but some studies have found that C.
equisetifolia litter can increase crop production. Ayana Curran-Howes grew cauliflower in
regular soil (control), soil with non-composted C. equisetifolia litter, and soil with composted C.
equisetifolia litter. She measured the aboveground biomass of cauliflower plants.
What is the null hypothesis?
What is the alternative hypothesis?
Calculate the mean for each treatment and the grand mean.
Cauliflower Biomass (mg)
Control
Non-composter Litter
Composted Litter
303
219
84
246
109
111
199
261
66
229
361
77
195
184
97
Мean
Grand Mean
Fill in the table below. Write the source of variation and calculate the Sum of Squares, degrees of
freedom, Mean Square, and F ratio.
a
a
SSamong
>n:(8 – Xgrand)²
SSwithin = > >
Transcribed Image Text:2. Casuarina equisetifolia (Australian pine) is allelopathic, but some studies have found that C. equisetifolia litter can increase crop production. Ayana Curran-Howes grew cauliflower in regular soil (control), soil with non-composted C. equisetifolia litter, and soil with composted C. equisetifolia litter. She measured the aboveground biomass of cauliflower plants. What is the null hypothesis? What is the alternative hypothesis? Calculate the mean for each treatment and the grand mean. Cauliflower Biomass (mg) Control Non-composter Litter Composted Litter 303 219 84 246 109 111 199 261 66 229 361 77 195 184 97 Мean Grand Mean Fill in the table below. Write the source of variation and calculate the Sum of Squares, degrees of freedom, Mean Square, and F ratio. a a SSamong >n:(8 – Xgrand)² SSwithin = > >
Fill in the table below. Write the source of variation and calculate the Sum of Squares, degrees of
freedom, Mean Square, and F ratio.
a
SSamong = > n:(X; – Igrand)?
SSwithin = >>'cxy – ž)?
i=1
i=1 j=1
Source of Variation
Sum of Squares
df
Mean Square
F
Transcribed Image Text:Fill in the table below. Write the source of variation and calculate the Sum of Squares, degrees of freedom, Mean Square, and F ratio. a SSamong = > n:(X; – Igrand)? SSwithin = >>'cxy – ž)? i=1 i=1 j=1 Source of Variation Sum of Squares df Mean Square F
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