A biologist was interested in the relationship between the ve- locity at which a beluga whale swims and the tail-beat fre- quency of the whale. A sample of 19 whales was studied and measurements were made on swimming velocity, measured in units of body lengths of the whale per second and tail-beat frequency, measured in units of hertz (number of tail beat per second) The following regression output is for predicting the swimming speed of a beluga whale from it's tail-beat frequency. Part of the output is blurred. Coefficients: 0.6 0.8 1.0 1.2 1.4 1.6 Estimate Std. Error t value Pr(>|t|) (Intercept) Tail Beat Frequency (Hertz) ХXXXXXX 0.07075 XXXXX 0.828 frequency XXXXXXX 0.05973 XXXXX 1.75е-08 *** Here is a summary of the data: Speed (body length/sec) Frequency (Hz) Mean 0.6558 1.1334 SD 0.2267 0.3534 11 Correlation r 0.9234 Swimming Speed (Body Length per Second) 0.4 0.6 0.8 1.0

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Chapter4: Equations Of Linear Functions
Section4.5: Correlation And Causation
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A biologist was interested in the relationship between the ve-
locity at which a beluga whale swims and the tail-beat fre-
quency of the whale. A sample of 19 whales was studied and
measurements were made on swimming velocity, measured in
units of body lengths of the whale per second and tail-beat
frequency, measured in units of hertz (number of tail beat per
second) The following regression output is for predicting the
swimming speed of a beluga whale from it's tail-beat frequency.
Part of the output is blurred.
Coefficients:
Estimate Std. Error t value Pr(>|t])
0.6
0.8
1.0
1.2
1.4
1.6
(Intercept)
0.07075
0.828
Tail Beat Frequency (Hertz)
ХXXXXXX
ХXXXX
frequency
ХXXXXXX
0.05973
ХXXXX 1.75е-08 ***
Here is a summary of the data:
Speed (body length/sec) Frequency (Hz)
Mean
0.6558
1.1334
SD
0.2267
0.3534
11
Correlation r2 0.9234
Swimming Speed
(Body Length per Second)
0.4
9'0
0.8
Transcribed Image Text:A biologist was interested in the relationship between the ve- locity at which a beluga whale swims and the tail-beat fre- quency of the whale. A sample of 19 whales was studied and measurements were made on swimming velocity, measured in units of body lengths of the whale per second and tail-beat frequency, measured in units of hertz (number of tail beat per second) The following regression output is for predicting the swimming speed of a beluga whale from it's tail-beat frequency. Part of the output is blurred. Coefficients: Estimate Std. Error t value Pr(>|t]) 0.6 0.8 1.0 1.2 1.4 1.6 (Intercept) 0.07075 0.828 Tail Beat Frequency (Hertz) ХXXXXXX ХXXXX frequency ХXXXXXX 0.05973 ХXXXX 1.75е-08 *** Here is a summary of the data: Speed (body length/sec) Frequency (Hz) Mean 0.6558 1.1334 SD 0.2267 0.3534 11 Correlation r2 0.9234 Swimming Speed (Body Length per Second) 0.4 9'0 0.8
If the tail beat frequency is measured in number of beats per minute rather than in number of
beats per second (hertz), what will be the correlation between swimming speed and tail beat frequency?
Transcribed Image Text:If the tail beat frequency is measured in number of beats per minute rather than in number of beats per second (hertz), what will be the correlation between swimming speed and tail beat frequency?
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