A particular article reported the accompanying data on phenotypes resulting from crossing tall cut-leaf tomatoes with dwarf potato-leaf tomatoes. There are four possible phenotypes: (1) tall cut-leaf, (2) tall potato-leaf, (3) dwarf cut-leaf, and (4) dwarf potato-leaf. Phenotype 1 2 3 4 Frequency 927 287 294 105 Mendel's laws of inheritance imply that p1 = 9 16, p2 = 3 16, p3 = 3 16, and p4 = 1 16. Are the data from this experiment consistent with Mendel's laws? Use a 0.01 significance level. (Assume that the sample is representative of all such tomato plants.) State the appropriate null and alternative hypotheses. H0: p1 = 927, p2 = 287, p3 = 294, p4 = 105 Ha: H0 is not true. H0: p1 ≠ 9 16, p2 ≠ 3 16, p3 ≠ 3 16, p4 ≠ 1 16 Ha: H0 is not true. H0: p1 ≠ 927, p2 ≠ 287, p3 ≠ 294, p4 ≠ 105 Ha: H0 is not true. H0: p1 = 1 4, p2 = 1 4, p3 = 1 4, p4 = 1 4 Ha: H0 is not true. H0: p1 = 9 16, p2 = 3 16, p3 = 3 16, p4 = 1 16 Ha: H0 is not true. Calculate the test statistic. (Round your answer to two decimal places.) ?2 = Use technology to calculate the P-value. (Round your answer to four decimal places.) P-value = State the conclusion in the problem context. Fail to reject H0. There is not convincing evidence that the data from this experiment are not consistent with Mendel's laws.Fail to reject H0. There is convincing evidence that the data from this experiment are not consistent with Mendel's laws. Reject H0. There is not convincing evidence that the data from this experiment are not consistent with Mendel's laws.Reject H0. There is convincing evidence that the data from this experiment are not consistent with Mendel's laws. Tutorial
A particular article reported the accompanying data on phenotypes resulting from crossing tall cut-leaf tomatoes with dwarf potato-leaf tomatoes. There are four possible phenotypes: (1) tall cut-leaf, (2) tall potato-leaf, (3) dwarf cut-leaf, and (4) dwarf potato-leaf. Phenotype 1 2 3 4 Frequency 927 287 294 105 Mendel's laws of inheritance imply that p1 = 9 16, p2 = 3 16, p3 = 3 16, and p4 = 1 16. Are the data from this experiment consistent with Mendel's laws? Use a 0.01 significance level. (Assume that the sample is representative of all such tomato plants.) State the appropriate null and alternative hypotheses. H0: p1 = 927, p2 = 287, p3 = 294, p4 = 105 Ha: H0 is not true. H0: p1 ≠ 9 16, p2 ≠ 3 16, p3 ≠ 3 16, p4 ≠ 1 16 Ha: H0 is not true. H0: p1 ≠ 927, p2 ≠ 287, p3 ≠ 294, p4 ≠ 105 Ha: H0 is not true. H0: p1 = 1 4, p2 = 1 4, p3 = 1 4, p4 = 1 4 Ha: H0 is not true. H0: p1 = 9 16, p2 = 3 16, p3 = 3 16, p4 = 1 16 Ha: H0 is not true. Calculate the test statistic. (Round your answer to two decimal places.) ?2 = Use technology to calculate the P-value. (Round your answer to four decimal places.) P-value = State the conclusion in the problem context. Fail to reject H0. There is not convincing evidence that the data from this experiment are not consistent with Mendel's laws.Fail to reject H0. There is convincing evidence that the data from this experiment are not consistent with Mendel's laws. Reject H0. There is not convincing evidence that the data from this experiment are not consistent with Mendel's laws.Reject H0. There is convincing evidence that the data from this experiment are not consistent with Mendel's laws. Tutorial
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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Question
A particular article reported the accompanying data on phenotypes resulting from crossing tall cut-leaf tomatoes with dwarf potato-leaf tomatoes. There are four possible phenotypes: (1) tall cut-leaf, (2) tall potato-leaf, (3) dwarf cut-leaf, and (4) dwarf potato-leaf.
Phenotype | ||||
---|---|---|---|---|
1 | 2 | 3 | 4 | |
Frequency | 927 | 287 | 294 | 105 |
Mendel's laws of inheritance imply that
p1 =
,
9 |
16 |
p2 =
,
3 |
16 |
p3 =
,
and
3 |
16 |
p4 =
.
Are the data from this experiment consistent with Mendel's laws? Use a 0.01 significance level. (Assume that the sample is representative of all such tomato plants.)1 |
16 |
State the appropriate null and alternative hypotheses.
H0: p1 = 927, p2 = 287, p3 = 294, p4 = 105
Ha: H0 is not true.
H0: p1 ≠
, p2 ≠
, p3 ≠
, p4 ≠
9 |
16 |
3 |
16 |
3 |
16 |
1 |
16 |
Ha: H0 is not true.
H0: p1 ≠ 927, p2 ≠ 287, p3 ≠ 294, p4 ≠ 105
Ha: H0 is not true.
H0: p1 =
, p2 =
, p3 =
, p4 =
1 |
4 |
1 |
4 |
1 |
4 |
1 |
4 |
Ha: H0 is not true.
H0: p1 =
, p2 =
, p3 =
, p4 =
9 |
16 |
3 |
16 |
3 |
16 |
1 |
16 |
Ha: H0 is not true.
Calculate the test statistic. (Round your answer to two decimal places.)
?2 =
Use technology to calculate the P-value. (Round your answer to four decimal places.)
P-value =
State the conclusion in the problem context.
Fail to reject H0. There is not convincing evidence that the data from this experiment are not consistent with Mendel's laws.Fail to reject H0. There is convincing evidence that the data from this experiment are not consistent with Mendel's laws. Reject H0. There is not convincing evidence that the data from this experiment are not consistent with Mendel's laws.Reject H0. There is convincing evidence that the data from this experiment are not consistent with Mendel's laws.
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