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| 35 |
\code{stack.x}, a matrix with the first three (independent) variables
|
35 |
\code{stack.x}, a matrix with the first three (independent) variables
|
| 36 |
of the data frame, and \code{stack.loss}, the numeric vector giving
|
36 |
of the data frame, and \code{stack.loss}, the numeric vector giving
|
| 37 |
the fourth (dependent) variable, are also provided.
|
37 |
the fourth (dependent) variable, are also provided.
|
| 38 |
}
|
38 |
}
|
| 39 |
\source{
|
39 |
\source{
|
| 40 |
Brownlee, K. A. (1960, 2nd ed.\sspace{}1965)
|
40 |
\bibinfo{R:Brownlee:1965}{note}{Pages\sspace{}491--500}
|
| 41 |
\emph{Statistical Theory and Methodology in Science and Engineering}.
|
- |
|
| 42 |
New York: Wiley. pp.\sspace{}491--500.
|
41 |
\bibshow{R:Brownlee:1965}
|
| 43 |
}
|
42 |
}
|
| 44 |
\details{
|
43 |
\details{
|
| 45 |
\dQuote{Obtained from 21 days of operation of a plant for the
|
44 |
\dQuote{Obtained from 21 days of operation of a plant for the
|
| 46 |
oxidation of ammonia (\I{NH\eqn{_3}{3}}) to nitric acid
|
45 |
oxidation of ammonia (\I{NH\eqn{_3}{3}}) to nitric acid
|
| 47 |
(\I{HNO\eqn{_3}{3}}). The nitric oxides produced are absorbed in a
|
46 |
(\I{HNO\eqn{_3}{3}}). The nitric oxides produced are absorbed in a
|