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An Economist Is in the Process of Developing a Model (x1)\left( x _ { 1 } \right)

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Essay

An economist is in the process of developing a model to predict the price of gold. She believes that the two most important variables are the price of a barrel of oil (x1)\left( x _ { 1 } \right) and the interest rate (x2)\left( x _ { 2 } \right) She proposes the first-order model with interaction: y=β0+β1x1+β2x2+β3x1x3+εy = \beta _ { 0 } + \beta _ { 1 } x _ { 1 } + \beta _ { 2 } x _ { 2 } + \beta _ { 3 } x _ { 1 } x _ { 3 } + \varepsilon .
A random sample of 20 daily observations was taken. The computer output is shown below.
THE REGRESSION EQUATION IS y=y = 115.6+22.3x1+14.7x21.36x1x2115.6 + 22.3 x _ { 1 } + 14.7 x _ { 2 } - 1.36 x _ { 1 } x _ { 2 } .  Predictor  Coef  SiDev T Constant 115.678.11.480x122.37.13.141x214.76.32.333x1x21.360.522.615\begin{array} { | c | r r c | } \hline \text { Predictor } & \text { Coef } & \text { SiDev } & T \\\hline \text { Constant } & 115.6 & 78.1 & 1.480 \\x _ { 1 } & 22.3 & 7.1 & 3.141 \\x _ { 2 } & 14.7 & 6.3 & 2.333 \\x _ { 1 } x _ { 2 } & - 1.36 & 0.52 & - 2.615 \\\hline\end{array} S = 20.9 R-Sq = 55.4%.  ANALYSIS OF VARIANCE  Source of Variation df SS  MS F Regression 386612887.06.626 Error 166971435.7 Total 1915632\begin{array}{l}\text { ANALYSIS OF VARIANCE }\\\begin{array} { | l | r r r c | } \hline \text { Source of Variation } & d f & \text { SS } & \text { MS } & F \\\hline \text { Regression } & 3 & 8661 & 2887.0 & 6.626 \\\text { Error } & 16 & 6971 & 435.7 & \\\hline \text { Total } & 19 & 15632 & & \\\hline\end{array}\end{array} Is there sufficient evidence at the 1% significance level to conclude that the interaction term should be retained?


Definitions:

Marginal Product

The marginal product is the additional output produced as a result of using one more unit of a particular input, holding all other inputs constant.

Average Variable Cost

The total variable costs divided by the quantity of output produced, indicating the variable cost per unit of output.

Average Fixed Cost

Average fixed cost is the fixed cost per unit of output, calculated by dividing total fixed costs by the number of units produced, which decreases as production increases.

Average Variable Cost

The total variable costs of production divided by the quantity of output produced, representing the variable cost per unit of output.

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