Question

A genetic experiment involving peas yielded one sample of offspring consisting of 413 green peas and 163

yellow peas. Use a 0.05 significance level to test the claim that under the same circumstances, 26% of offspring peas will be yellow. Identify the null hypothesis, alternative hypothesis, test statistic, P-value, conclusion about the null hypothesis, and final conclusion that addresses the original claim. Use the P-value method and the normal distribution as an approximation to the binomial distribution.

A. What are the null and alternative hypotheses?

B. What is the test statistic?

Z=[ ] (Round TWO decimal places as needed)

C. What is the P-Value?

P-value= [ ] (Round to FOUR decimal places as needed)

D. What is the conclusion about the null hypothesis?

E. What is the final conclusion?

Answer #1

A genetic experiment involving peas yielded one sample of
offspring consisting of 441 green peas and 176
yellow peas. Use a 0.01 significance level to test the claim
that under the same circumstances, 27% of offspring peas will be
yellow. Identify the null hypothesis, alternative hypothesis,
test statistic, P-value, conclusion about the null hypothesis,
and final conclusion that addresses the original claim. Use the
P-value method and the normal distribution as an approximation to
the binomial distribution.
A. What are...

A genetic experiment
involving peas yielded one sample of offspring consisting of 405
green peas and 156
yellow peas. Use a
0.05 significance level to test the claim that under the same
circumstances, 27% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution.
A. What are...

A genetic experiment involving peas yielded one sample of
offspring consisting of 448 green peas and 140 yellow peas. Use a
0.05 significance level to test the claim that under the same
circumstances, 26% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution.
What is the...

A genetic experiment involving peas yielded one sample of
offspring consisting of 442 green peas and 123 yellow peas. Use a
0.01 significance level to test the claim that under the same
circumstances, 26% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution

A genetic experiment involving peas yielded one sample of
offspring consisting of 404 green peas and 142 yellow peas. Use a
0.01 significance level to test the claim that under the same
circumstances, 27% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution.

A genetic experiment involving peas yielded one sample of
offspring consisting of 426 green peas and 164 yellow peas. Use a
0.05 significance level to test the claim that under the same
circumstances, 24% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution.

A genetic experiment involving peas yielded one sample of
offspring consisting of 417 green peas and 158 yellow peas. Use a
0.05 significance level to test the claim that under the same
circumstances, 23% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution.

A genetic experiment involving peas yielded one sample of
offspring consisting of 404 green peas and 134 yellow peas. Use a
0.01 significance level to test the claim that under the same
circumstances, 24% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution.
what is the...

genetic experiment involving peas yielded one sample of
offspring consisting of
422
green peas and
134
yellow peas. Use a
0.01
significance level to test the claim that under the same
circumstances,
24%
of offspring peas will be yellow. Identify the null hypothesis,
alternative hypothesis, test statistic, P-value, conclusion about
the null hypothesis, and final conclusion that addresses the
original claim. Use the P-value method and the normal distribution
as an approximation to the binomial distribution.

A genetic experiment
involving peas yielded one sample of offspring consisting of 405
green peas and 156
yellow peas. Use a
0.05 significance level to test the claim that under the same
circumstances, 27% of offspring peas will be yellow. Identify the
null hypothesis, alternative hypothesis, test statistic,
P-value, conclusion about the null hypothesis, and final
conclusion that addresses the original claim. Use the P-value
method and the normal distribution as an approximation to the
binomial distribution
What is the...

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