x days y km/100 74 14.5 75 34 5.7 93 11.5 209 19.1 35.9 (a) Verify that Ex = 485, Ey = 86.7, Ex² = 64,587, Ey² = 2028.61, Exy = 11271.9, and r= 0.94288. Ex Ey²| Exy (b) Use a 1% level of significance to test the claim p > 0. (Use 2 decimal places.) critical e Conclusion O Reject the null hypothesis, there is sufficient evidence that p > 0. O Reject the null hypothesis, there is insufficient evidence that p > 0. O Fail to reject the null hypothesis, there is insufficient evidence that p > 0. O Fail to reject the null hypothesis, there is sufficient evidence that p > 0. (c) Verify that S, = 4.4081, a = 1.5143, and b × 0.1632. Se a b (d) Find the predicted distance (km/100) when a drift bottle has been floating for 90 days. (Use 2 decimal places.) ] km/100 (e) Find a 90% confidence interval for your prediction of part (d). (Use 1 decimal place.) lower limit | km/100 | km/100 upper limit () Use a 1% level of significance to test the claim that 8 > 0. (Use 2 decimal places.) critical e Conclusion O Reject the null hypothesis, there is sufficient evidence that 8 > 0. O Reject the null hypothesis, there is insufficient evidence that ß > 0. O Fail to reject the null hypothesis, there is insufficient evidence that > 0. O Fail to reject the null hynothesis, there is sufficient evidence that 8> 0.

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Chapter1: Starting With Matlab
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x days
y km/100
74
75
34
93
209
14.5
19.1
5.7
11.5
35.9
(a) Verify that Ex = 485, Ey = 86.7, Ex = 64,587, Ey = 2028.61, Exy = 11271.9, and r 0.94288.
Ex
Ey
Ex2(
Ey²
Σχy
(b) Use a 1% level of significance to test the claim p > 0. (Use 2 decimal places.)
critical t
Conclusion
O Reject the null hypothesis, there is sufficient evidence that p > 0.
O Reject the null hypothesis, there is insufficient evidence that p > 0.
O Fail to reject the null hypothesis, there is insufficient evidence that p > 0.
O Fail to reject the null hypothesis, there is sufficient evidence that p > 0.
(c) Verify that S, = 4.4081, a = 1.5143, and b = 0.1632.
e
(d) Find the predicted distance (km/100) when a drift bottle has been floating for 90 days. (Use 2 decimal places.)
km/100
(e) Find a 90% confidence interval for your prediction of part (d). (Use 1 decimal place.)
lower limit
| km/100
| km/100
upper limit
(1) Use a 1% level of significance to test the claim that B > 0. (Use 2 decimal places.)
critical t
Conclusion
O Reject the null hypothesis, there is sufficient evidence that p > 0.
O Reject the null hypothesis, there is insufficient evidence that ß > 0.
Fail to reject the null hypothesis, there is insufficient evidence that ß > 0.
O Fail to reject the null hypothesis, there is sufficient evidence that p > 0.
Transcribed Image Text:x days y km/100 74 75 34 93 209 14.5 19.1 5.7 11.5 35.9 (a) Verify that Ex = 485, Ey = 86.7, Ex = 64,587, Ey = 2028.61, Exy = 11271.9, and r 0.94288. Ex Ey Ex2( Ey² Σχy (b) Use a 1% level of significance to test the claim p > 0. (Use 2 decimal places.) critical t Conclusion O Reject the null hypothesis, there is sufficient evidence that p > 0. O Reject the null hypothesis, there is insufficient evidence that p > 0. O Fail to reject the null hypothesis, there is insufficient evidence that p > 0. O Fail to reject the null hypothesis, there is sufficient evidence that p > 0. (c) Verify that S, = 4.4081, a = 1.5143, and b = 0.1632. e (d) Find the predicted distance (km/100) when a drift bottle has been floating for 90 days. (Use 2 decimal places.) km/100 (e) Find a 90% confidence interval for your prediction of part (d). (Use 1 decimal place.) lower limit | km/100 | km/100 upper limit (1) Use a 1% level of significance to test the claim that B > 0. (Use 2 decimal places.) critical t Conclusion O Reject the null hypothesis, there is sufficient evidence that p > 0. O Reject the null hypothesis, there is insufficient evidence that ß > 0. Fail to reject the null hypothesis, there is insufficient evidence that ß > 0. O Fail to reject the null hypothesis, there is sufficient evidence that p > 0.
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