The accompanying table gives the distance from a particular city to seven other cities (in thousands of miles) and gives the time for one randomly chosen, commercial airplane to make that flight. Do a complete regression analysis that includes a scatterplot with the line, interprets the slope and intercept, and predicts how much time a nonstop flight from this city would take to another city that is located 3000 miles away. Click the icon to view the distances and flight times. Draw a scatterplot for the round-trip flight data. Be sure that distance is the x-variable and time is the y-variable, because time is being predicted from distance. Graph the best-fit line using technology. Choose the correct scatterplot below. 3.5 Distance (1000s of mi) Q Q G ○ B. ○ C. Q Q Q Q G G 0- 0 3.5 3.5 Distance (1000s of mi) Distance (1000s of mi) ○ D. 3.5 Distance (1000s of mi) G Flight Data City Distance Time (1000s of miles) (hours) 1 1.119 2.88 2 2.972 6.09 3 3.299 7.24 4567 1.711 4.38 2.399 5.13 1.826 4.13 0.196 1.16

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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Question
Option A is wrong
The accompanying table gives the distance from a particular city to seven other cities (in thousands of miles) and gives the time for one randomly chosen, commercial airplane to make that flight. Do
a complete regression analysis that includes a scatterplot with the line, interprets the slope and intercept, and predicts how much time a nonstop flight from this city would take to another city that is
located 3000 miles away.
Click the icon to view the distances and flight times.
Draw a scatterplot for the round-trip flight data. Be sure that distance is the x-variable and time is the y-variable, because time is being predicted from distance. Graph the best-fit line using
technology. Choose the correct scatterplot below.
3.5
Distance (1000s of mi)
Q
Q
G
○ B.
○ C.
Q
Q
Q
Q
G
G
0-
0
3.5
3.5
Distance (1000s of mi)
Distance (1000s of mi)
○ D.
3.5
Distance (1000s of mi)
G
Transcribed Image Text:The accompanying table gives the distance from a particular city to seven other cities (in thousands of miles) and gives the time for one randomly chosen, commercial airplane to make that flight. Do a complete regression analysis that includes a scatterplot with the line, interprets the slope and intercept, and predicts how much time a nonstop flight from this city would take to another city that is located 3000 miles away. Click the icon to view the distances and flight times. Draw a scatterplot for the round-trip flight data. Be sure that distance is the x-variable and time is the y-variable, because time is being predicted from distance. Graph the best-fit line using technology. Choose the correct scatterplot below. 3.5 Distance (1000s of mi) Q Q G ○ B. ○ C. Q Q Q Q G G 0- 0 3.5 3.5 Distance (1000s of mi) Distance (1000s of mi) ○ D. 3.5 Distance (1000s of mi) G
Flight Data
City
Distance
Time
(1000s of miles)
(hours)
1
1.119
2.88
2
2.972
6.09
3
3.299
7.24
4567
1.711
4.38
2.399
5.13
1.826
4.13
0.196
1.16
Transcribed Image Text:Flight Data City Distance Time (1000s of miles) (hours) 1 1.119 2.88 2 2.972 6.09 3 3.299 7.24 4567 1.711 4.38 2.399 5.13 1.826 4.13 0.196 1.16
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