Listed below are annual data for various years. The data are weights (metric tons) of imported lemons and car crash fatality rates per 100,000 population. Construct a scatterplot, find the value of the linear correlation coefficient r, and find the P-value using a 0.05. Is there sufficient evidence to conclude that there is a linear correlation between lemon imports and crash fatality rates? Do the results suggest that imported lemons cause car fatalities? Lemon Imports Crash Fatality Rate = 229 264 358 483 534 15.8 15.7 15.4 15.2 14.9 What are the null and alternative hypotheses? OA. Ho: p*0 H₁ p=0 OC. Ho: p=0 H₁: p<0 Construct a scatterplot. Choose the correct graph below. OB. Ho p=0 H₁: p>0 D. Ho: p=0 H₁:p #0 OA. B. C. Ay 17- 174 174 Q 17+ 16- ° 16- 16- 16- Q 0 O Ф ° 15- G 15- 15- 15- σ 14+ 14+ 14+ 14+ 0 200 400 600 0 200 400 600 0 200 400 600 200 400 0 600 The linear correlation coefficient is r= (Round to three decimal places as needed.)

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Listed below are annual data for various years. The data are weights (metric tons) of imported lemons and car crash fatality rates per 100,000 population. Construct a scatterplot, find the value of the linear correlation
coefficient r, and find the P-value using a 0.05. Is there sufficient evidence to conclude that there is a linear correlation between lemon imports and crash fatality rates? Do the results suggest that imported lemons cause
car fatalities?
Lemon Imports
Crash Fatality Rate
=
229
264
358
483
534
15.8
15.7
15.4
15.2
14.9
What are the null and alternative hypotheses?
OA. Ho: p*0
H₁ p=0
OC. Ho: p=0
H₁: p<0
Construct a scatterplot. Choose the correct graph below.
OB. Ho p=0
H₁: p>0
D. Ho: p=0
H₁:p #0
OA.
B.
C.
Ay
17-
174
174
Q
17+
16-
°
16-
16-
16-
Q
0
O
Ф
°
15-
G
15-
15-
15-
σ
14+
14+
14+
14+
0
200 400
600
0
200
400 600
0
200 400 600
200 400
0
600
The linear correlation coefficient is r=
(Round to three decimal places as needed.)
Transcribed Image Text:Listed below are annual data for various years. The data are weights (metric tons) of imported lemons and car crash fatality rates per 100,000 population. Construct a scatterplot, find the value of the linear correlation coefficient r, and find the P-value using a 0.05. Is there sufficient evidence to conclude that there is a linear correlation between lemon imports and crash fatality rates? Do the results suggest that imported lemons cause car fatalities? Lemon Imports Crash Fatality Rate = 229 264 358 483 534 15.8 15.7 15.4 15.2 14.9 What are the null and alternative hypotheses? OA. Ho: p*0 H₁ p=0 OC. Ho: p=0 H₁: p<0 Construct a scatterplot. Choose the correct graph below. OB. Ho p=0 H₁: p>0 D. Ho: p=0 H₁:p #0 OA. B. C. Ay 17- 174 174 Q 17+ 16- ° 16- 16- 16- Q 0 O Ф ° 15- G 15- 15- 15- σ 14+ 14+ 14+ 14+ 0 200 400 600 0 200 400 600 0 200 400 600 200 400 0 600 The linear correlation coefficient is r= (Round to three decimal places as needed.)
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