The accompanying table shows the maximum weights (in kilograms) for which one repetition of a half squat can be performed and the jump heights (in centimeters) for 12 international soccer players. Complete parts (a) through (d) below. Click here to view the data table. Click here to view the table of critical values for the Pearson correlation coefficient. (a) Display the data in a scatter plot. Choose the correct graph below. O A. OB. ↑ 220- 140- .. 45 11 65 Max Weight (kg) (b) Calculate the sample correlation coefficient r. (Round to three decimal places as needed.) E 220- 140+ 45 - IRO NO 65 Max Weight (kg) O Q C O C. 65- 45- 140 → 220 Max Weight (kg) Q D 65- 45+ 140 → 220 Max Weight (kg) Q Q
The accompanying table shows the maximum weights (in kilograms) for which one repetition of a half squat can be performed and the jump heights (in centimeters) for 12 international soccer players. Complete parts (a) through (d) below. Click here to view the data table. Click here to view the table of critical values for the Pearson correlation coefficient. (a) Display the data in a scatter plot. Choose the correct graph below. O A. OB. ↑ 220- 140- .. 45 11 65 Max Weight (kg) (b) Calculate the sample correlation coefficient r. (Round to three decimal places as needed.) E 220- 140+ 45 - IRO NO 65 Max Weight (kg) O Q C O C. 65- 45- 140 → 220 Max Weight (kg) Q D 65- 45+ 140 → 220 Max Weight (kg) Q Q
MATLAB: An Introduction with Applications
6th Edition
ISBN:9781119256830
Author:Amos Gilat
Publisher:Amos Gilat
Chapter1: Starting With Matlab
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:The accompanying table shows the maximum weights (in kilograms) for which one repetition of a half squat can be performed and the jump heights (in centimeters) for 12 international soccer players. Complete parts (a)
through (d) below.
Click here to view the data table Click here to view the table of critical values for the Pearson correlation coefficient.
(a) Display the data in a scatter plot. Choose the correct graph below.
A.
Jump Height (cm)
220
140-
●●
45
65
Max Weight (kg)
(b) Calculate the sample correlation coefficient r.
(Round to three decimal places as needed.)
B.
Jump Height (cm)
220-
140+
45
●●
65
Max Weight (kg)
Q
Jump Height (cm)
65+
45+
140
●
•
:
220
Max Weight (kg)
Q
Jump Height (cm)
65-
45+
220
140
Max Weight (kg)

Transcribed Image Text:efficient r.
=ded.)
Weight and Jump Height
Maximum weight, x
190
180
160
185
175
175
155
165
165
180
185
210
Print
Jump Height, y
59
28 94866
58
54
61
55
63
51
50
56
60
64
Done
I
X
220
ht (kg)
N
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