35 30 150 25 20 100 15 10 50 5 10 15 20 25 30 35 50 100 150 200 x (age of calf (in weeks)) x (age of calf (in weeks)) 200 35 30 25 150 20 15 100 10 5 50 5. 10 15 20 25 30 35 50 100 150 200 x (age of calf (in weeks)) x (age of calf (in weeks)) (e) Find the value of the coefficient of determination r. What percentage of the variation in y can be explained by the corresponding variation in x and the least-squares line? What percentage is unexplained? (Round your answer for r to four decimal places. Round your answers for the percentages to two decimal place.) explained unexplained % (f) The calves you want to buy are 21 weeks old. What does the least-squares line predict for a healthy weight? (Round your answer to two decimal places.) kg y(calf weight (in kilograms)) y (calf weight (in kilograms) y (calf weight (in kilograms)) y (calf weight (in kilograms))

MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
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You are the foreman of the Bar-S cattle ranch in Colorado. A neighboring ranch has calves for sale, and you are going to buy some calves to add to the Bar-S herd. How much should a healthy calf weigh? Let x be the age of the calf (in
weeks), and let y be the weight of the calf (in kilograms).
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n USE SALT
Complete parts (a) through (e), given Ex = 93, Ey = 620, Ex = 2359, Ey = 82,518, Exy = 13,696, and r 0.9931.
%3D
%3D
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(a) Draw a scatter diagram displaying the data.
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Transcribed Image Text:You are the foreman of the Bar-S cattle ranch in Colorado. A neighboring ranch has calves for sale, and you are going to buy some calves to add to the Bar-S herd. How much should a healthy calf weigh? Let x be the age of the calf (in weeks), and let y be the weight of the calf (in kilograms). 1 11 16 26 36 45 53 72 100 150 200 n USE SALT Complete parts (a) through (e), given Ex = 93, Ey = 620, Ex = 2359, Ey = 82,518, Exy = 13,696, and r 0.9931. %3D %3D %3D %3D %3D (a) Draw a scatter diagram displaying the data. 35 30 30 25 15 15 10 10 5 5 50 100 150 200 50 100 150 200 X (age of calf (in weeks)) X (age of calf (in weeks)) 200 150 100 50 10 15 25 35 35 25 20 y(calf weight (in kilograms)) 30 20 20 y(calf weight (in kilograms)) y (calf weight (in kilograms))
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아.
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x (age of calf (in weeks))
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x (age of calf (in weeks))
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(e) Find the value of the coefficient of determination r. What percentage of the variation in y can be explained by the corresponding variation in x and the least-squares line? What percentage is unexplained? (Round your answer
for r to four decimal places. Round your answers for the percentages to two decimal place.)
12
%3D
explained
unexplained
(f) The calves you want to buy are 21 weeks old. What does the least-squares line predict for a healthy weight? (Round your answer to two decimal places.)
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y (calf weight (in kilograms))
y(calf weight (in kilograms))
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y (calf weight (in kilograms))
y (calf weight (in kilograms))
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Transcribed Image Text:35 30 150 25 100 15 10 50 아. 10 15 20 25 30 35 50 100 150 200 x (age of calf (in weeks)) x (age of calf (in weeks)) 200 35 30 150 20 15 100 10 5 50 10 15 20 25 30 35 50 100 150 200 x (age of calf (in weeks)) x (age of calf (in weeks)) (e) Find the value of the coefficient of determination r. What percentage of the variation in y can be explained by the corresponding variation in x and the least-squares line? What percentage is unexplained? (Round your answer for r to four decimal places. Round your answers for the percentages to two decimal place.) 12 %3D explained unexplained (f) The calves you want to buy are 21 weeks old. What does the least-squares line predict for a healthy weight? (Round your answer to two decimal places.) kg y (calf weight (in kilograms)) y(calf weight (in kilograms)) 25 5. y (calf weight (in kilograms)) y (calf weight (in kilograms)) 20
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