Linear-fractional programming: Difference between revisions

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Relation to linear programming: I have changed text and dollar signs to show math texts correctly.
Tag: Reverted
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Under the assumption that the feasible region is non-empty and bounded, the Charnes-Cooper transformation<ref name="CC"/>
 
:<math>\mathbf{y} = \frac{1\mathbf{x}}{\mathbf{d}^T \mathbf{x} + \beta} \cdot \mathbf{x}\;;\;\; t = \frac{1}{\mathbf{d}^T \mathbf{x} + \beta}</math>
 
translates the linear-fractional program above to the equivalent linear program: