A company manufactures chef's knives and pocket knives. Each chef's knife requires 3 labor-hours, 6 units of steel, and 4 units of wood. Each pocket knife requires 6 labor-hours, 5 units of steel, and 3 units of wood. The profit on each chef's knife is $3, and the profit on each pocket knife is $6. Each day the company has available 94 labor-hours, 135 units of steel, and 118 units of wood. Give a matrix formulation of the manufacturing company problem of maximization profit.
A company manufactures chef's knives and pocket knives. Each chef's knife requires 3 labor-hours, 6 units of steel, and 4 units of wood. Each pocket knife requires 6 labor-hours, 5 units of steel, and 3 units of wood. The profit on each chef's knife is $3, and the profit on each pocket knife is $6. Each day the company has available 94 labor-hours, 135 units of steel, and 118 units of wood. Give a matrix formulation of the manufacturing company problem of maximization profit.
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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A company manufactures chef's knives and pocket knives. Each chef's knife requires 3 labor-hours, 6 units of steel, and 4 units of wood. Each pocket knife requires 6 labor-hours, 5 units of steel, and 3 units of wood. The profit on each chef's knife is $3, and the profit on each pocket knife is $6. Each day the company has available 94 labor-hours, 135 units of steel, and 118 units of wood. Give a matrix formulation of the manufacturing company problem of maximization profit.
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