Myron records the number of chirps per minute (x) that crickets make at different temperatures. (y) in degrees Fahrenheit.    He determines that the association is linear and the line of best fit is y=1/6x+50.    What is the interpretation of the slope and y-intercept of this equation?

Algebra & Trigonometry with Analytic Geometry
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Author:Swokowski
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Chapter7: Analytic Trigonometry
Section7.6: The Inverse Trigonometric Functions
Problem 94E
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Myron records the number of chirps per minute (x) that crickets make at different temperatures. (y) in degrees Fahrenheit. 

 

He determines that the association is linear and the line of best fit is y=1/6x+50. 

 

What is the interpretation of the slope and y-intercept of this equation?

O A. The slope predicts a temperature increase of about 50° for every
increase of 1 chirp per minute. The y-intercept shows that when
the crickets are not chirping (x = 0), the temperature is 0°.
B. The chirping increases as the temperature goes down.
C. The slope predicts a temperature increase of about 6° for every
increase of 50 chirps per minute. The y-intercept shows that when
the crickets are not chirping (x = 0), the temperature is .
D. The slope predicts a temperature increase of about ° for every
increase of 1 chirp per minute. The y-intercept shows that when
the crickets are not chirping (x = 0), the temperature is 50°.
Transcribed Image Text:O A. The slope predicts a temperature increase of about 50° for every increase of 1 chirp per minute. The y-intercept shows that when the crickets are not chirping (x = 0), the temperature is 0°. B. The chirping increases as the temperature goes down. C. The slope predicts a temperature increase of about 6° for every increase of 50 chirps per minute. The y-intercept shows that when the crickets are not chirping (x = 0), the temperature is . D. The slope predicts a temperature increase of about ° for every increase of 1 chirp per minute. The y-intercept shows that when the crickets are not chirping (x = 0), the temperature is 50°.
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