The following table shows the length, in centimeters, of the humerus and the total wingspan, in centimeters, of several pterosaurs, which are extinct flying reptiles. (A graphing calculator is recommended.) Pterosaur Data Humerus, x Wingspan, y Humerus, x Wingspan, y 31 584 32 621 33 714 34 726 29 543 27 535 24 473 23 445 21 416 20 405 1.8 40 1.7 39 1.4 34 1.2 28 1.0 25 (a) Find the equation of the least-squares regression line for the data. Round constants to the nearest hundredth. (b) Use the equation from part (a) to determine, to the nearest centimeter, the projected wingspan of a pterosaur if its humerus is 58 centimeters. cm

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The following table shows the length, in centimeters, of the humerus and the total wingspan, in centimeters, of several
pterosaurs, which are extinct flying reptiles. (A graphing calculator is recommended.)
Pterosaur Data
Humerus, x
Wingspan, y
Humerus, x
Wingspan, y
31
584
32
621
33
714
34
726
29
543
27
535
24
473
23
445
21
416
20
405
1.8
40
1.7
39
1.4
34
1.2
28
1.0
25
(a) Find the equation of the least-squares regression line for the data. Round constants to the nearest hundredth.
(b) Use the equation from part (a) to determine, to the nearest centimeter, the projected wingspan of a pterosaur if
its humerus is 58 centimeters.
cm
Transcribed Image Text:The following table shows the length, in centimeters, of the humerus and the total wingspan, in centimeters, of several pterosaurs, which are extinct flying reptiles. (A graphing calculator is recommended.) Pterosaur Data Humerus, x Wingspan, y Humerus, x Wingspan, y 31 584 32 621 33 714 34 726 29 543 27 535 24 473 23 445 21 416 20 405 1.8 40 1.7 39 1.4 34 1.2 28 1.0 25 (a) Find the equation of the least-squares regression line for the data. Round constants to the nearest hundredth. (b) Use the equation from part (a) to determine, to the nearest centimeter, the projected wingspan of a pterosaur if its humerus is 58 centimeters. cm
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