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The Nature of Six Sigma and Its Connectivity to Other Quality Tools
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1.14 References and Bibliography
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Ahmed, M. and Sullivan W. Factory Automation and Information Manage-
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Akao, Yoji (ed.). Quality Function Deployment: Integrating Customer Require-
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Bajaria, H. “Six Sigma—Moving Beyond the Hype.” In Annual Quality Con-
gress Proceedings, ASQ, Milwaukee, WI, 1999.
Boothroyd, G. and Dewhurst D. Product Design for Assembly. Wakefield, RI,
Boothroyd & Dewhurst Inc., 1997.
Clausing, D. and Simpson, H. “Quality By Design.” Quality Progress, Janu-
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Cutts, L. Structured Analysis and Design Methods. Van Nostrand Reinhold,
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Galvin, R. Personal communication, June 1996.
General Electric Corporation. Annual Report, 1997.
Gryna, Frank. Quality Planning and Analysis, from Product Development
through Use, Fourth Edition. New York, McGraw-Hill, 2001.
Harry, M. “The Nature of Six Sigma Quality.” Motorola University, Schaum-
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Harry, M. and Schroeder R. Six Sigma. Doubleday, New York, 2000.
Hahn, G. et al. “The Evolution of Six Sigma.” Quality Engineering, 12, 3,
317–326, 1992.
Hauser, J. and Clausing, D. “The House of Quality.” Harvard Business Re-
view, 3, May–June, 63–73, 1988.
Iversen, W. “The Six Sigma Shootout.” Assembly Magazine, June 1993, 20–24.
Kemtovicz, R. New Product Development: Design and Analysis. Wiley, New
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Koch, R. The 80/20 Principle. Doubleday, New York, 1998.
Measurement Systems Analysis (ASA). Automotive Industries Action Group
(AIAG), Southfield, MI 1995.
Motorola Corporation. Annual Report, 1992.
“Six Sigma Technical Institute Level II Notes.” Motorola University Confer-
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Otto, K. and Wood, K. Product Design: Techniques in Reverse Engineering and
New Product Development.” Upper Saddle River, NJ, Prentice Hall, 2001.
Production Part Approval Process (PPAP). Automotive Industries Action
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Shina, S. (ed.). Successful Implementation of Concurrent Engineering Prod-
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