In the regression equation ŷ = bọ + bịx, which of the following statements about bo is NOT always true?
Correlation
Correlation defines a relationship between two independent variables. It tells the degree to which variables move in relation to each other. When two sets of data are related to each other, there is a correlation between them.
Linear Correlation
A correlation is used to determine the relationships between numerical and categorical variables. In other words, it is an indicator of how things are connected to one another. The correlation analysis is the study of how variables are related.
Regression Analysis
Regression analysis is a statistical method in which it estimates the relationship between a dependent variable and one or more independent variable. In simple terms dependent variable is called as outcome variable and independent variable is called as predictors. Regression analysis is one of the methods to find the trends in data. The independent variable used in Regression analysis is named Predictor variable. It offers data of an associated dependent variable regarding a particular outcome.
b0 is the y-intercept of the line
b_0b0 can be positive, negative, or zero
b_0b0 is the value of the response variable when the explanatory variable has a value of 0
b_0b0 provides important contextual information about the relationship between the variables
![In the regression equation \(\hat{y} = b_0 + b_1x\), which of the following statements about \(b_0\) is **NOT** always true?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Feb83650c-b6ed-40f1-b2fb-840de96035a3%2F1a7d112b-f80f-44ea-9dc5-47ee6455a89d%2Flfp3i6w_processed.png&w=3840&q=75)
![\( b_0 \) depends on the values of \( b_1, \bar{x}, \) and \( \bar{y} \).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Feb83650c-b6ed-40f1-b2fb-840de96035a3%2F1a7d112b-f80f-44ea-9dc5-47ee6455a89d%2F4d2zzf8_processed.png&w=3840&q=75)
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The regression equation is:
Where,
b0 is y-intercept and b1 is slope of the line.
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