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supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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20%; open Helbing, D and Johansson, A (2009) Find in CUMINCAD Pedestrian, crowd and evacuation dynamics , Meyers, AR (eds), Encyclopedia of Complexity and Systems Science, Springer, Heidelberg, pp. 6476- 6495

20%; open Helbing, D and Molnar P (1995) Find in CUMINCAD Social force model for pedestrian dynamics , Physical review E, 51(5): p. 4282

20%; open Helbing, D and Molnar, P (1995) Find in CUMINCAD Social force model for pedestrian dynamics , Physical Review E, 51, pp. 4282-4286

20%; open Helbing, D and Molnar, P (1995) Find in CUMINCAD Social force model for pedestrian dynamics , Physical Review, E 51, p. 4282-4286

20%; open Helbing, D and Molnar, P. (1995) Find in CUMINCAD Social Force Model for Pedestrian Dynamics , Physical Review (51), 4282-4286. https://doi.org/10.1103/PhysRevE.51.4282Helbing, D & Molnár, P. (1997). Self-organization phenomena in pedestrian crowds. In F. Schweitzer (eds.), Self-Organization of Complex Structures. From Individual to Collective Dynamics (pp. 569-577). Gordon and Breach

20%; open Helbing, D and Molnár, P (1995) Find in CUMINCAD Social force model for pedestrian dynamics , Phys. Rev. E, 51, pp. 4282-4286

20%; open Helbing, D and Molnár, P (1995) Find in CUMINCAD Social force model for pedestrian dynamics , Physical Review E, 51(5), pp. 4282-4286

20%; open Helbing, D and Molnár, P (1997) Find in CUMINCAD Self-organization phenomena in pedestrian crowds , Schweitzer, F (eds), Organization of Complex Structures: From Individual to Collective Dynamics, CRC Press, pp. 569-577

20%; open Helbing, D, Buzna, L, Johansson, A and Werner, T (2005) Find in CUMINCAD Self-organized pedestrian crowd dynamics: Experiments, simulations, and design solutions , Transportation science, 39(1), pp. 1-24

20%; open Helbing, D, Buzna, L, Johansson, A and Werner, T (2005) Find in CUMINCAD Self-Organized Pedestrian Crowd Dynamics: Experiments, Simulations, and Design Solutions , Transportation Science, 39(1), pp. 1-24

20%; open Helbing, D, Farkas, I and Vicsek, T (2000) Find in CUMINCAD Simulating dynamical features of escape panic , Nature, 407, p. 487-490

20%; open Helbing, D, Farkas, I and Vicsek, T (2000) Find in CUMINCAD Simulating dynamical features of escape panic , Nature, 407(6803), p. 487-490

20%; open Helbing, D, Farkas, IJ and Vicsek, T (2000) Find in CUMINCAD Simulating dynamical features of escape panic , Nature 407: 487-490

20%; open Helbing, D, Farkas, IJ and Vicsek, T (2000) Find in CUMINCAD Simulating dynamical features of escape panic , Nature, 407, p. 487-490

20%; open Helbing, D, Farkas, IJ and Vicsek, T (2001) Find in CUMINCAD Crowd disasters and simulation of panic situations , Schellnhuber, HJ, Bunde, A and Kropp, J (eds), Science of Disaster: Climate Disruptions, Heart Attacks and Market Crashes, Springer

20%; open Helbing, D, Farkas, IJ, Molnar, P and Vicsek, T (2002) Find in CUMINCAD Simulation of Pedestrian Crowds in Normal and Evacuation Situations , Schreckenberg, M and Sarma, SD (eds), Pedestrian and evacuation dynamics, Springer Verlag, Berlin, pp. 21-58

20%; open Helbing, D, Molnar, P, Farkas, I and Bolay, K (2001) Find in CUMINCAD Self-organizing pedestrian movement , Environment and Planning B: Planning and Design, 28, pp. 361-383

20%; open Helbing, D, Molnar, P, Farkas, I and Bolay, K (2001) Find in CUMINCAD Self-organizing pedestrian movement , Environment and Planning B: Planning and Design, 28, pp. 361-383

20%; open Helbing, D (1991) Find in CUMINCAD A mathematical model for the behavior of pedestrians , Behavioral Science, 36, p. 298–310

20%; open Helbing, D (1994) Find in CUMINCAD A mathematical model for the behaviour of individuals in social field , Journal of Mathematical Sociology, 19, pp. 189-219

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