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This raised some questions as to weather or not the machine was really more efficient and if it was, where would manufacturers benefit from owning a Husky over a Nestal. Also it appeared that the savings was on a sliding scale, maximizing at $0.74
Since the husky machine could produce ~135M units/year and the Nestal machine can only produce ~101M units/year, it is obvious that the Husky machine has an advantage relative to capacity. But if you limit the output to equal the Nestal machine (exhibit 2), the Husky machine is at a cost disadvantage. In fact, you would have to produce ~110.75M units in order to equal the cost of the Nestal machine (Exhibit 3)...
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Common topics in this essay:
- Husky Injection Molding Systems
- Scientific molding - ESTABLISHING A ROBUST INJECTION MOLDING PROCESS
- Injection Molding
- injection molding
- Injection Molding
- Thermoplastics and Injection Molding
- Husky
- husky
- husky
- Differentiated Instruction
- Siberian Husky
- Differentiated Learning
- 1. Is Samsung both low-cost and differentiated? If yes, how does it do both?
- Pros and Cons of Differentiated Instruction
- crown molding
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