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Chapter 13.1, Problem 14E

If there is at least one x value at which more than one observation has been made, there is a formal test procedure for testing H 0 : μ Y . x = β 0 + β 1 x for some values β0, β1 (the true regression function is linear)

Versus

Ha: H0 is not true (the true regression function is not linear)

Suppose observations are made at x1, x2, …, xc. Let Y11, Y12, …, Y 1 n 1 denote the n1 observations when x = x1; …; Yc1, Yc2, …, Y c n c denote the nc observations when x = xc. With n=∑ni (the total number of observations), SSE has n – 2 df. We break SSE into two pieces, SSPE (pure error) and SSLF (lack of fit), as follows:

     SSPE = i j ( Y i j Y ¯ i ) 2 = Y i j 2 n i Y ¯ i 2 SSLF = SSE-SSPE

The ni observations at xi contribute ni 1 df to SSPE, so the number of degrees of freedom for SSPE is ( n i 1 ) = n c , and the degrees of freedom for SSLF is n – 2 – (n – c) = c – 2. Let MSPE = SSPE/(n – c) and MSLF = SSLF/(c – 2). Then it can be shown that whereas E(MSPE) = σ2 whether or not H0 is true, E(MSLF) = σ2 if H0 is true and E(MSLF) > σ2 if H0 is false.

The test statistic is F = MSLF/MSPE, and the corresponding P-value is the area under the F c 2 , n c curve to the right of f. The following data comes from the article “Changes in Growth Hormone Status Related to Body Weight of Growing Cattle” (Growth, 1977: 241–247), with x = body weight and y = 5 metabolic clearance rate/body weight.

x 110 110 110 230 230 230 360
y 235 198 173 174 149 124 115
x 360 360 360 505 505 505 505
y 130 102 95 122 112 98 96

(So c = 4, n1 = n2 = 3, n3 = n4 = 4.)

a. Test H0 versus Ha at level .05 using the lack-of-fit test just described.

b. Does a scatterplot of the data suggest that the relationship between x and y is linear? How does this compare with the result of part (a)? (A nonlinear regression function was used in the article.)

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Chapter 13 Solutions

Bundle: Probability and Statistics for Engineering and the Sciences, 9th + WebAssign Printed Access Card for Devore's Probability and Statistics for ... and the Sciences, 9th Edition, Single-Term

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