The Complexity Era in Economics



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Turing, A. M. (1952) The Chemical Basis of Morphogenesis, Philosophical Transactions
of the Royal Society, B
(237), pp. 37-72.

Veblen, T. (1898) Why is Economics not an Evolutionary Science? Quarterly Journal of
Economics
(12), pp. 373-397.

Velupillai, K. V. (2000) Computable Economics (Oxford: Oxford University Press).

Velupillai, K. V. (2005) A Primer on the Tools and Concepts of Computable Economics,
in Velupillai K.V. (Ed),
Computability, Complexity and Constructivity in Economic
Analysis
(Victoria: Blackwell), pp. 148-197.

Velupillai, K. V. (2009) A Computable Economist’s Perspective on Computational
Complexity, in Rosser, J.B. Jr. (Ed.).
Handbook of Complexity Research.

(Cheltenham: Edward Elgar), pp. 36-83.

Weintraub, E.R. (2002) How Economics Became a Mathematical Science (Durham:
Duke University Press).

Wiener, N. (1948) Cybernetics, or Control and Communication in the Animal and the
Machine
(New York: Wiley & Sons).

Young, H. P. (1998) Individual Strategy and Social Structure: An Evolutionary Theory of
Institutions
(Princeton: Princeton University Press).



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