To find the \( y \)-coordinate for each \( x \) using the equation \( y = 14x \), we can substitute each \( x \) value into the equation.
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For \( x = 0 \): \[ y = 14 \cdot 0 = 0 \] So the ordered pair is \( (0, 0) \).
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For \( x = 4 \): \[ y = 14 \cdot 4 = 56 \] So the ordered pair is \( (4, 56) \).
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For \( x = 8 \): \[ y = 14 \cdot 8 = 112 \] So the ordered pair is \( (8, 112) \).
Now, let's complete the table:
\[ \begin{array}{c|c|c} x & y & (x, y) \ \hline 0 & 0 & (0, 0) \ 4 & 56 & (4, 56) \ 8 & 112 & (8, 112) \ \end{array} \]