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Credits

Image credits and academic references for this presentation.

Image Credits
References
  • Conway's Game of Life
    Gardner, M. (1970). Mathematical Games. Scientific American, 223(4), 120–123.
  • Turing / Reaction-Diffusion Patterns
    Turing, A. M. (1952). The Chemical Basis of Morphogenesis. Philosophical Transactions of the Royal Society B, 237(641), 37–72.
  • Cellular Automata: General Theory
    Wolfram, S. (2002). A New Kind of Science. Wolfram Media.
Papers Cited
  • Computation at the Edge of Chaos
    Langton, C. G. (1990). Computation at the Edge of Chaos: Phase Transitions and Emergent Computation. Physica D, 42(1–3), 12–37.
  • Revisiting the Edge of Chaos
    Mitchell, M., Hraber, P. T., & Crutchfield, J. P. (1993). Revisiting the Edge of Chaos: Evolving Cellular Automata to Perform Computations. Santa Fe Institute Working Paper 93-03-014. Complex Systems, 7(2), 89–130.
  • "Edge of Chaos" in 1D Cellular Automata
    "Edge of Chaos" in 1D Cellular Automata.
  • Hidden Complexity in Life-like Rules
    Melgarejo, M., Alzate, M., & Obregon, N. (2019). Hidden Complexity in Life-like Rules. Physical Review E, 100, 052133.
  • Damage Spreading and μ-sensitivity on Cellular Automata
    Martin, B. (2007). Damage Spreading and μ-sensitivity on Cellular Automata. Ergodic Theory and Dynamical Systems, 27, 545–565.
  • Models of Cell Processes are Far from the Edge of Chaos
    Park, K. H., Costa, F. X., Rocha, L. M., Albert, R., & Rozum, J. C. (2023). Models of Cell Processes are Far from the Edge of Chaos. PRX Life.
  • Implementation of Logical Functions in the Game of Life
    Rennard, J.-P. Implementation of Logical Functions in the Game of Life. In A. Adamatzky (Ed.), Collision-Based Computing. Springer.
Web Resources