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Scientists and engineers frequently wish to compare two different techniques for measuring or determining the value of a variable. In such situations, interest centers on testing whether the mean difference in measurements is zero. The article “Evaluation of the Deuterium Dilution Technique Against the Test Weighing Procedure for the Determination of Breast Milk Intake” (Amer. J. of Clinical Nutr., 1983: 996–1003) reports the accompanying data on amount of milk ingested by each of 14 randomly selected infants.
Infant | |||||
1 | 2 | 3 | 4 | 5 | |
DD method | 1509 | 1418 | 1561 | 1556 | 2169 |
TW method | 1498 | 1254 | 1336 | 1565 | 2000 |
Difference | II | 164 | 225 | -9 | 169 |
Infant | |||||
6 | 7 | 8 | 9 | 10 | |
DD method | 1760 | 1098 | 1198 | 1479 | 1281 |
TW method | 1318 | 1410 | 1129 | 1342 | 1124 |
Difference | 442 | -312 | 69 | 137 | 157 |
Infant | ||||
11 | 12 | 13 | 14 | |
DD method | 1414 | 1954 | 2174 | 2058 |
TW method | 1468 | 1604 | 1722 | 1518 |
Difference | -54 | 350 | 452 | 540 |
a. Is it plausible that the population distribution of differences is normal?
b. Does it appear that the true average difference between intake values measured by the two methods is something other than zero? Determine the P-value of the test, and use it to reach a conclusion at significance level .05.
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Chapter 9 Solutions
EBK PROBABILITY AND STATISTICS FOR ENGI
- 9. The concentration function of a random variable X is defined as Qx(h) = sup P(x ≤ X ≤x+h), h>0. Show that, if X and Y are independent random variables, then Qx+y (h) min{Qx(h). Qr (h)).arrow_forward10. Prove that, if (t)=1+0(12) as asf->> O is a characteristic function, then p = 1.arrow_forward9. The concentration function of a random variable X is defined as Qx(h) sup P(x ≤x≤x+h), h>0. (b) Is it true that Qx(ah) =aQx (h)?arrow_forward
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- Glencoe Algebra 1, Student Edition, 9780079039897...AlgebraISBN:9780079039897Author:CarterPublisher:McGraw HillFunctions and Change: A Modeling Approach to Coll...AlgebraISBN:9781337111348Author:Bruce Crauder, Benny Evans, Alan NoellPublisher:Cengage Learning
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