Complexity International       ISSN 1320-0682     
Volume 08 January 2001



Complex Systems 2000

I    Classical complexity
 
  • [green05]


  • Green, D. & Newth, D. Towards a theory of everything? - Grand challenges to complexity and informatics
     
  • [sommer01]


  • Sommerer, C. & Mignonneau, L. Modeling complex systems for interactive art
     
  • [kulic01]


  • Kulic, V. The complexity of architectural form: some basic questions
     
    II    Complexity for ecology and management
     
  • [mark01]


  • Mark, A. F. Integrating conservation with hydro-electric development of Lakes Manapouri and Te Anau, New Zealand: an exercise in complexity
     
  • [halloy02]


  • Halloy, S. R. P., Mark, A. F. & Dickinson, K. J. M. Management of New Zealand's terrestrial biodiversity as a complex adaptive system
     
  • [chikum01]


  • Chikumbo, O., Bradbury, R. & Davey, S. Large scale ecosystem management as a complex systems problem: multi-objective optimisation with spatial constraints
     
  • [li01]


  • Li, X. & Magill, W. Modeling fire spread under environmental influence using a cellular automaton approach
     
  • [itami01]


  • Itami, R. M. & Gimblett, H. R. Intelligent recreation agents in a virtual GIS world
     
    III    Modelling and simulating the real world
     
  • [yeh01]


  • Yeh, W. A simple algorithm to search for all minimal cutsets with unreliable nodes
     
  • [casti01]


  • Casti, J. BizSim: the world of business - in a box
     
    V    Complexity in health
     
  • [bowers01]


  • Bowers, R. G. Community dynamics, invasion criteria and the co-evolution of host and pathogen
     
  • [sleigh02]


  • Sleigh, J. W., Steyn-Ross, M. L. & Steyn-Ross, D. A. Subcortical vs cortical actions of general anaesthetics: A cellular automaton model
     
    VI    Complexity for ecology and management
     
  • [filipp01]


  • Filippov, A. E., Soboleva, T. K. & Wedderburn, M. E. A mathematical model of competitive self-organization
     
  • [halloy03]


  • Halloy, S. R. P. Effects on system structure, diversity and stability of the distance exponent in a resource attraction model
     
  • [torren01]


  • Torrens, F. Fractals for hybrid orbitals in protein models
     
    VII    Biology to computation
     
  • [wills01]


  • Wills, P. R. Evolution of the molecular biological interpreter
     
  • [inada01]


  • Inada, Y. Steering mechanism of fish schools
     
  • [bright01]


  • Bright, K. P., Sherlock, R. A., Lile, J. & Wastney, M. E. Development and use of a whole farm model for dairying