In Problems 41-56, construct a mathematical model in the form of a linear programming problem. (The answer in the back of the book for these application problems include the model.) Then solve the problem using the simplex method. Include an interpretation of any nonzero slack variables in the optimal solution. Bicycle manufacturing. Repeat Problem 48 if the profit on a ten-speed bicycle increases from $ 100 to $ 110 and all other data remain the same. If the slack associated with any problem constraint is nonzero, find it.
In Problems 41-56, construct a mathematical model in the form of a linear programming problem. (The answer in the back of the book for these application problems include the model.) Then solve the problem using the simplex method. Include an interpretation of any nonzero slack variables in the optimal solution. Bicycle manufacturing. Repeat Problem 48 if the profit on a ten-speed bicycle increases from $ 100 to $ 110 and all other data remain the same. If the slack associated with any problem constraint is nonzero, find it.
Solution Summary: The author explains the linear programming problem model, if three types of bicycles are manufactured by a company and are going through the departments of fabrication, painting & plating and final assembly.
In Problems 41-56, construct a mathematical model in the form of a linear programming problem. (The answer in the back of the book for these application problems include the model.) Then solve the problem using the simplex method. Include an interpretation of any nonzero slack variables in the optimal solution.
Bicycle manufacturing. Repeat Problem 48 if the profit on a ten-speed bicycle increases from
$
100
to
$
110
and all other data remain the same. If the slack associated with any problem constraint is nonzero, find it.
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