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cst-317:classes2016 [2017/05/05 17:22]
pedro
cst-317:classes2016 [2017/06/09 17:05] (current)
pedro
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 | | [[https://​en.wikipedia.org/​wiki/​Belousov–Zhabotinsky_reaction|Belousov–Zhabotinsky reaction]]| | | [[https://​en.wikipedia.org/​wiki/​Belousov–Zhabotinsky_reaction|Belousov–Zhabotinsky reaction]]|
 | | Colasanti, R. L., R. Hunt, and L. Watrud. "A simple cellular automaton model for high-level vegetation dynamics."​ Ecological Modelling 203.3 (2007): 363-374.| | | Colasanti, R. L., R. Hunt, and L. Watrud. "A simple cellular automaton model for high-level vegetation dynamics."​ Ecological Modelling 203.3 (2007): 363-374.|
 +|  | [[http://​citeseerx.ist.psu.edu/​viewdoc/​download;​jsessionid=CB3EA777DE19841D563DC6241FA916B6?​doi=10.1.1.497.9850&​rep=rep1&​type=pdf|Scherer A. & McLean A., (2002) Mathematical models of vaccination,​ British Medical Bulletin 2002;62 187-199.]] |
  
 ===== Papers for Final Projects: Secondary Choices ===== ===== Papers for Final Projects: Secondary Choices =====
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 |  | {{http://​www.dpi.inpe.br/​gilberto/​cursos/​papers//​Dunkerley1997b.pdf|D.L Dunkerley (1997) Banded vegetation: survival under drought and grazing pressure based on a simple cellular automaton model. Journal of Arid Environments 35(3):​419–428}}| |  | {{http://​www.dpi.inpe.br/​gilberto/​cursos/​papers//​Dunkerley1997b.pdf|D.L Dunkerley (1997) Banded vegetation: survival under drought and grazing pressure based on a simple cellular automaton model. Journal of Arid Environments 35(3):​419–428}}|
 |  | {{:​env-model:​classes:​first2014:​finalproject:​jager-amblard-attitude-change.pdf|Jager,​ Wander, and Frédéric Amblard. "​Uniformity,​ bipolarization and pluriformity captured as generic stylized behavior with an agent-based simulation model of attitude change."​ Computational & Mathematical Organization Theory 10.4 (2005): 295-303.}}| |  | {{:​env-model:​classes:​first2014:​finalproject:​jager-amblard-attitude-change.pdf|Jager,​ Wander, and Frédéric Amblard. "​Uniformity,​ bipolarization and pluriformity captured as generic stylized behavior with an agent-based simulation model of attitude change."​ Computational & Mathematical Organization Theory 10.4 (2005): 295-303.}}|
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cst-317/classes2016.1494015749.txt.gz · Last modified: 2017/05/05 17:22 by pedro