c. If Cabinetmaker 1 has additional hours available, would the optimal solution change? If required, round your answers to three decimal places. If your answer is zero, enter "0". Explain. ✓because Cabinetmaker 1 has dual value d. If Cabinetmaker 2 has additional hours available, would the optimal solution change? If required, round your answers to three decimal places. If your answer is zero, enter "0". Use a minus sign to indicate the negative figure. Explain. No✔ because Cabinetmaker 2 has a slack X hours. Alternatively, the dual value is 0.00 ✔which means that adding one hour to this constraint will decrease total cost by $ Yes ✓of -1.84 ✓. Therefore, each additional hour of time for cabinetmaker 1 will reduce total cost by $ of 1.84 per hour, up to a maximum of 50 hours. 0.00 ✓
c. If Cabinetmaker 1 has additional hours available, would the optimal solution change? If required, round your answers to three decimal places. If your answer is zero, enter "0". Explain. ✓because Cabinetmaker 1 has dual value d. If Cabinetmaker 2 has additional hours available, would the optimal solution change? If required, round your answers to three decimal places. If your answer is zero, enter "0". Use a minus sign to indicate the negative figure. Explain. No✔ because Cabinetmaker 2 has a slack X hours. Alternatively, the dual value is 0.00 ✔which means that adding one hour to this constraint will decrease total cost by $ Yes ✓of -1.84 ✓. Therefore, each additional hour of time for cabinetmaker 1 will reduce total cost by $ of 1.84 per hour, up to a maximum of 50 hours. 0.00 ✓
Practical Management Science
6th Edition
ISBN:9781337406659
Author:WINSTON, Wayne L.
Publisher:WINSTON, Wayne L.
Chapter12: Queueing Models
Section12.5: Analytic Steady-state Queueing Models
Problem 13P
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