a person should exercise per week (Y), given their age (x1) and the number of calories they eat per day (x2). After collecting data, the clinic is able to perform linear regression and discovers that the correct coefficient for the "age" variable is 13, the correct coefficient for the "calories per day" variable is 23, and the "constant" is-16. Given this information, what would the prediction equation look like to allow the clinic to predict the number of hours of exercise given age and calories? OY= -16x1 + 23x2 + 13 OY = 23 - 16x1 + 13x2 OY= -16 + 13x1+ 23x2 Y = -16 +23x1 + 13x2

Trigonometry (MindTap Course List)
8th Edition
ISBN:9781305652224
Author:Charles P. McKeague, Mark D. Turner
Publisher:Charles P. McKeague, Mark D. Turner
Chapter4: Graphing And Inverse Functions
Section: Chapter Questions
Problem 6GP: If your graphing calculator is capable of computing a least-squares sinusoidal regression model, use...
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A weight-loss clinic would like to have an equation to estimate the number of hours
a person should exercise per week (Y), given their age (x1) and the number of calories
they eat per day (x2). After collecting data, the clinic is able to perform linear
regression and discovers that the correct coefficient for the "age" variable is 13, the
correct coefficient for the "calories per day" variable is 23, and the "constant" is -16.
Given this information, what would the prediction equation look like to allow the
clinic to predict the number of hours of exercise given age and calories?
Y =-16x1 + 23x2
+ 13
OY= 23 - 16x1 + 13x2
OY= -16 + 13x1+ 23x2
OY = -16 +23x1 + 13x2
Transcribed Image Text:A weight-loss clinic would like to have an equation to estimate the number of hours a person should exercise per week (Y), given their age (x1) and the number of calories they eat per day (x2). After collecting data, the clinic is able to perform linear regression and discovers that the correct coefficient for the "age" variable is 13, the correct coefficient for the "calories per day" variable is 23, and the "constant" is -16. Given this information, what would the prediction equation look like to allow the clinic to predict the number of hours of exercise given age and calories? Y =-16x1 + 23x2 + 13 OY= 23 - 16x1 + 13x2 OY= -16 + 13x1+ 23x2 OY = -16 +23x1 + 13x2
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