me File Edit View History Bookmarks People Window Help Tab D) 90% O. Tue 7:54 O Ocean Connect x | Grades for Julia A Walker: Intro X W M12 Assignment 2020L6 MA X + A webassign.net/web/Student/Assignment-Responses/last?dep-25194497#Q5 Aviation and high-altitude physiology is a specialty in the study of medicine. Let x = partial pressure of oxygen in the alveoli (air cells in the lungs) when breathing naturally availat = partial pressure when breathing pure oxygen. The (x, y) data pairs correspond to elevations from 10,000 feet to 30,000 feet in 5000 foot intervals for a random sample of volunt Although the medical data were collected using airplanes, they apply equally well to Mt. Everest climbers (summit 29,028 feet). 6.7 4.5 4.2 3.3 2.1 (units: mm Hg/10) (units: mm Hg/10) 44.8 34.5 26.2 16.2 13.9 (a) Verify that Ex = 20.8, Ey = 135.6, Ex = = 98.08, Ey = 4339.38, Exy = 648.1, and r 0.961. %3D %3D Ex 20.8 Ey 135.6 Ex2 98.08 Ey2 4339.38 Exy 648.1 r0.961 (b) Use a 1% level of significance to test the claim that p > 0. (Use 2 decimal places.) t 6.02 critical t 4.54 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, 4.1250, a -3.131, and b 7.272. S 4.1250 a -3.131 b 7.272 (d) Find the predicted pressure when breathing pure oxygen if the pressure from breathing available air is x = 5.5. (Use 2 decimal places.)

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter3: Functions And Graphs
Section3.3: Lines
Problem 76E
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)) 90%
Tue 7:54 AM
Ocean Connect
Grades for Julia A Walker: Intro X
A M12 Assignment 2020L6 MAT X
GEAM
webassign.net/web/Student/Assignment-Responses/last?dep3D25194497#Q5
Aviation and high-altitude physiology is a specialty in the study of medicine. Let x = partial pressure of oxygen in the alveoli (air cells in the lungs) when breathing naturally available air. Let y
= partial pressure when breathing pure oxygen. The (x, y) data pairs correspond to elevations from 10,000 feet to 30,000 feet in 5000 foot intervals for a random sample of volunteers.
Although the medical data were collected using airplanes, they apply equally well to Mt. Everest climbers (summit 29,028 feet).
%3D
6.7
4.5
4.2
3.3
2.1
(units: mm Hg/10)
(units: mm Hg/10)
44.8
34.5
26.2
16.2
13.9
(a) Verify that Ex = 20.8, Ey = 135.6, Ex?
= 98.08, Ey = 4339.38, Exy = 648.1, and r- 0.961.
%D
Ex 20.8
Ey 135.6
Ex2 98.08
24339.38
Exy 648.1
r|0.961
(b) Use a 1% level of significance to test the claim that p > 0. (Use 2 decimal places.)
t 6.02
critical t 4.54
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.
Fail to reject the null hypothesis, there is insufficient evidence that p > 0.
Fail to reject the null hypothesis, there is sufficient evidence that p > 0.
(c) Verify that S 4.1250, a s -3.131, and b 7.272.
e
Se
.4.1250
a -3.131
b 7.272
(d) Find the predicted pressure when breathing pure oxygen if the pressure from breathing available air is x = 5.5. (Use 2 decimal places.)
36.87
...
Transcribed Image Text:ne File Edit View History Bookmarks Реople Tab Window Help )) 90% Tue 7:54 AM Ocean Connect Grades for Julia A Walker: Intro X A M12 Assignment 2020L6 MAT X GEAM webassign.net/web/Student/Assignment-Responses/last?dep3D25194497#Q5 Aviation and high-altitude physiology is a specialty in the study of medicine. Let x = partial pressure of oxygen in the alveoli (air cells in the lungs) when breathing naturally available air. Let y = partial pressure when breathing pure oxygen. The (x, y) data pairs correspond to elevations from 10,000 feet to 30,000 feet in 5000 foot intervals for a random sample of volunteers. Although the medical data were collected using airplanes, they apply equally well to Mt. Everest climbers (summit 29,028 feet). %3D 6.7 4.5 4.2 3.3 2.1 (units: mm Hg/10) (units: mm Hg/10) 44.8 34.5 26.2 16.2 13.9 (a) Verify that Ex = 20.8, Ey = 135.6, Ex? = 98.08, Ey = 4339.38, Exy = 648.1, and r- 0.961. %D Ex 20.8 Ey 135.6 Ex2 98.08 24339.38 Exy 648.1 r|0.961 (b) Use a 1% level of significance to test the claim that p > 0. (Use 2 decimal places.) t 6.02 critical t 4.54 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. Fail to reject the null hypothesis, there is insufficient evidence that p > 0. Fail to reject the null hypothesis, there is sufficient evidence that p > 0. (c) Verify that S 4.1250, a s -3.131, and b 7.272. e Se .4.1250 a -3.131 b 7.272 (d) Find the predicted pressure when breathing pure oxygen if the pressure from breathing available air is x = 5.5. (Use 2 decimal places.) 36.87 ...
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9 Ocean Connect
Grades for Julia A Walker: Intro X
A M12 Assignment - 2020L6 MAT X
+
webassign.net/web/Student/Assignment-Responses/last?dep=25194497#Q5
(d) Find the predicted pressure when breathing pure oxygen if the pressure from breathing available air is x = 5.5. (Use 2 decimal places.)
36.87
(e) Find a 95% confidence interval for y when x = 5.5. (Use 1 decimal place.)
lower limit
upper limit
(f) Use a 1% level of significance to test the claim that B > 0. (Use 2 decimal places.)
critical t
Conclusion
Reject the null hypothesis, there is sufficient evidence that ß > 0.
O Reject the null hypothesis, there is insufficient evidence that B > 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 ß > 0.
(g) Find a 95% confidence interval for ß and interpret its meaning. (Use 2 decimal places.)
lower limit 29.1
upper limit 44.7
Interpretation
O For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen decreases by an amount that falls within the confidence
interval.
For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen increases by an amount that falls outside the confidence
interval.
O For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen decreases by an amount that falls outside the confidence
interval.
O For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen increases by an amount that falls within the confidence
interval.
MacBook Pro
Transcribed Image Text:Chrome File Edit View History Bookmarks Реople Window Help Tab ()) 90% Tue 7:54 AM 9 Ocean Connect Grades for Julia A Walker: Intro X A M12 Assignment - 2020L6 MAT X + webassign.net/web/Student/Assignment-Responses/last?dep=25194497#Q5 (d) Find the predicted pressure when breathing pure oxygen if the pressure from breathing available air is x = 5.5. (Use 2 decimal places.) 36.87 (e) Find a 95% confidence interval for y when x = 5.5. (Use 1 decimal place.) lower limit upper limit (f) Use a 1% level of significance to test the claim that B > 0. (Use 2 decimal places.) critical t Conclusion Reject the null hypothesis, there is sufficient evidence that ß > 0. O Reject the null hypothesis, there is insufficient evidence that B > 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 ß > 0. (g) Find a 95% confidence interval for ß and interpret its meaning. (Use 2 decimal places.) lower limit 29.1 upper limit 44.7 Interpretation O For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen decreases by an amount that falls within the confidence interval. For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen increases by an amount that falls outside the confidence interval. O For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen decreases by an amount that falls outside the confidence interval. O For a one-unit increase in oxygen pressure breathing only available air, the oxygen pressure breathing pure oxygen increases by an amount that falls within the confidence interval. MacBook Pro
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