Answer the following problem based on the concept of Linear Correlation and Regression. Do not round off to the process of computing it but on the answers on this, round off your answers based on the instructions given. Use the formula of Pearson for computing the value of r. 1. A classic application of correlation involves the association between the temperature and the number of times a cricket chirps in 1 minute. Listed below are the number of chirps in 1 minute and the corresponding temperatures in degree Fahrenheit. Is there a significant evidence to conclude that there is a linear correlation between the number of chirps in 1 minute and the temperature? Use alpha = 0.01. Chirps in 1 minute (x) Temperature (y) 882 69.7 1188 93.3 1104 84.3 864 76.3 1200 88.6 1032 82.6 960 71.6 900 79.6

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Answer the following problem based on the concept of Linear Correlation and Regression. Do not round off to the process of computing it but on the answers on this, round off your answers based on the instructions given.

Use the formula of Pearson for computing the value of r.

1. A classic application of correlation involves the association between the temperature and the number of times a cricket chirps in 1 minute. Listed below are the number of chirps in 1 minute and the corresponding temperatures in degree Fahrenheit. Is there a significant evidence to conclude that there is a linear correlation between the number of chirps in 1 minute and the temperature? Use alpha = 0.01.

Chirps in 1 minute (x) Temperature (y)
882 69.7
1188 93.3
1104 84.3
864 76.3
1200 88.6
1032 82.6
960 71.6
900 79.6

 

a. Based on the problem, what is the summation of x?

b. Based on the problem, what is the summation of y?

c. Based on the problem, what is the summation of x^2?

d. Based on the problem, what is the summation of y^2? [Round off to 2 decimal places.]

e. Based on the problem, what is the summation of xy? [Round off to 2 decimal places.]

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