100
Engineering Systems Integration
Bell, J. S. 1965. On the Einstein-Podolsky-Rosen paradox. Physics 1: 195–200.
Blanchard, B. S. and Fabrycky, W. J. 2011. Systems Engineering and Analysis. Upper
Saddle River: Prentice Hall.
Boulding, K. 1956. General systems theory—The skeleton of science. Management
Science April: 661–671.
Buede, D. M. 2009. The Engineering Design of Systems: Models and Methods. Hoboken:
John Wiley & Sons, Inc.
Burgin, M. 2003. Information: Problems, paradoxes, and solutions. Triple C (Cognition,
Communication, Co-operation) 1(1): 53–70.
Clark, K. and Fujimoto, T. 1990. The power of product integrity. Harvard Business
Review 68(6): 107–118.
Cover, T. M. and Thomas, J. A. 1991. Elements of Information Theory. New York: John
Wiley & Sons.
Cropley, D. H. 1998. Measurement, theory, and information. Information and Control
41: 275–304.
Darcy, D. P., Kremerer, C. F., Slaughter, S. A., and Tomayko, J. E. 2005. The structural
complexity of software: An experimental test. IEEE Transaction of Software
Engineering 31(11): 982–996.
De Marco, E. P. 1960. Engineering Economy. New York: The Macmillan Company.
de Souza, R. A. 2008. Maturity curve of systems engineering. Systems Engineering. MS
thesis, Monterey: The Naval Postgraduate School, 114pp.
Ferris, T. L. 1997. Foundation for medical diagnosis and measurement. School of
Physics and Electronic Systems Engineering. PhD thesis, University of South
Australia, 350pp.
Feyerabend, P. 1993. Against Method, Third edition. New York: Verso.
Francois, C. 1999. Systemics and cybernetics in a historical perspective. Systems
Research and Behavioral Science 16: 203–219.
Friedman, A. H. 2010. Improving enterprise decision-making: The benefits of metric
commonality. Aeronautics and Astronautics. MS thesis, Boston: Massachusetts
Institute of Technology, 102pp.
Garud, R. and Kumaraswamy, A. 1995. Technological and organizational designs for
realizing economies of substitution. Strategic Management Journal 16: 93–110.
Glennan, S. S. 2002. Rethinking mechanistic explanation. Philosophy of Science
69(September): S343–S353.
Gross, N. 2009. A pragmatist theory of social mechanisms. American Sociological Review
74: 358–379.
Hall, A. D. and Fagen, R. E. 1956. Definition of system. General Systems 1: 18–28.
Hedstrom, P. and Swedberg, R. 1998. Social Mechanism: An Analytical Approach to Social
Theory. Cambridge: Cambridge University Press.
Holland, J. H. 1962. Outline for a logical theory of adaptive systems. Journal of the
Association for Computing Machinery 9(3): 279–314.
Holland, J. H., Holyoak, K. J., Nisbett, R. E., and Thagard, P. R. 1986. Induction:
Processes of Inference, Learning, and Discovery. Cambridge, MA: The MIT Press.
Hoppe, H. H. 2004. Property, causality, and liability. The Quarterly Journal of Austrian
Economics 7(4): 87–95.
Hutter, M. 2007. Universal algorithmic intelligence: A mathematical top-down
approach. Manno, Switzerland, Dalle Molle Institute for Artificial Intelligence
(IDSIA), Galleria 2, CH-6928 Manno-Lugano, 70pp.
Engineering Systems Integration
Bell, J. S. 1965. On the Einstein-Podolsky-Rosen paradox. Physics 1: 195–200.
Blanchard, B. S. and Fabrycky, W. J. 2011. Systems Engineering and Analysis. Upper
Saddle River: Prentice Hall.
Boulding, K. 1956. General systems theory—The skeleton of science. Management
Science April: 661–671.
Buede, D. M. 2009. The Engineering Design of Systems: Models and Methods. Hoboken:
John Wiley & Sons, Inc.
Burgin, M. 2003. Information: Problems, paradoxes, and solutions. Triple C (Cognition,
Communication, Co-operation) 1(1): 53–70.
Clark, K. and Fujimoto, T. 1990. The power of product integrity. Harvard Business
Review 68(6): 107–118.
Cover, T. M. and Thomas, J. A. 1991. Elements of Information Theory. New York: John
Wiley & Sons.
Cropley, D. H. 1998. Measurement, theory, and information. Information and Control
41: 275–304.
Darcy, D. P., Kremerer, C. F., Slaughter, S. A., and Tomayko, J. E. 2005. The structural
complexity of software: An experimental test. IEEE Transaction of Software
Engineering 31(11): 982–996.
De Marco, E. P. 1960. Engineering Economy. New York: The Macmillan Company.
de Souza, R. A. 2008. Maturity curve of systems engineering. Systems Engineering. MS
thesis, Monterey: The Naval Postgraduate School, 114pp.
Ferris, T. L. 1997. Foundation for medical diagnosis and measurement. School of
Physics and Electronic Systems Engineering. PhD thesis, University of South
Australia, 350pp.
Feyerabend, P. 1993. Against Method, Third edition. New York: Verso.
Francois, C. 1999. Systemics and cybernetics in a historical perspective. Systems
Research and Behavioral Science 16: 203–219.
Friedman, A. H. 2010. Improving enterprise decision-making: The benefits of metric
commonality. Aeronautics and Astronautics. MS thesis, Boston: Massachusetts
Institute of Technology, 102pp.
Garud, R. and Kumaraswamy, A. 1995. Technological and organizational designs for
realizing economies of substitution. Strategic Management Journal 16: 93–110.
Glennan, S. S. 2002. Rethinking mechanistic explanation. Philosophy of Science
69(September): S343–S353.
Gross, N. 2009. A pragmatist theory of social mechanisms. American Sociological Review
74: 358–379.
Hall, A. D. and Fagen, R. E. 1956. Definition of system. General Systems 1: 18–28.
Hedstrom, P. and Swedberg, R. 1998. Social Mechanism: An Analytical Approach to Social
Theory. Cambridge: Cambridge University Press.
Holland, J. H. 1962. Outline for a logical theory of adaptive systems. Journal of the
Association for Computing Machinery 9(3): 279–314.
Holland, J. H., Holyoak, K. J., Nisbett, R. E., and Thagard, P. R. 1986. Induction:
Processes of Inference, Learning, and Discovery. Cambridge, MA: The MIT Press.
Hoppe, H. H. 2004. Property, causality, and liability. The Quarterly Journal of Austrian
Economics 7(4): 87–95.
Hutter, M. 2007. Universal algorithmic intelligence: A mathematical top-down
approach. Manno, Switzerland, Dalle Molle Institute for Artificial Intelligence
(IDSIA), Galleria 2, CH-6928 Manno-Lugano, 70pp.
