CumInCAD is a Cumulative Index about publications in Computer Aided Architectural Design
supported by the sibling associations ACADIA, CAADRIA, eCAADe, SIGraDi, ASCAAD and CAAD futures

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33%; open Finnish Ministry of the Environment, - (1999) Find in CUMINCAD Finland's Land Use and Building Act , Finlex

33%; open Finucane, E. L., Derix, C. and Coates, P. S. (2006) Find in CUMINCAD Evolving urban structures using Computer Optimisation Techniques , Generative Arts, Milan Polytechnic

33%; open Fiol, M. and A.S. Huff (1992) Find in CUMINCAD Maps for managers: Where are we? Where do we go from here? , Journal of Management Studies, 29: 269_285

33%; open Fioravanti, A. and Rustico, R. (2006) Find in CUMINCAD P-House game – A Space for simulating a Collaborative Working Environment, in Architecture , V Bourdakis and D Charitos, Communicating space(s), 24th eCAADe Conference, Volos 6-9 Sep 2006, pp. 506-511

33%; open Fioravanti, A. and Rustico, R. (2006) Find in CUMINCAD II-House game - A Space for simulating a Collaborative Working Environment in Architecture , V Bourdakis and D Charitos, Communicating space(s), 24th eCAADe Conference Proceedings, Volos 6-9 September 2006, pp. 506-

33%; open Fioravanti, A. (2002) Find in CUMINCAD The relations among the actors and the architectural project in the design process: a rugby match , Koszewski, K. and Wrona, S. (eds), [Designe-ducation]

33%; open Firminio, JR and Graham, S (2001) Find in CUMINCAD Typology for virtual cities: the interplay between physical and virtual urban spaces. , EDA 2001 - European Digital Architect, Prague

33%; open Fisch M and Turquette A (1966) Find in CUMINCAD Peirce’s triadic logic , Transactions of the Charles S Peirce Society 1966; 2(2): 71–85

33%; open Fisch, S. M. (2005) Find in CUMINCAD Making educational computer games" educational" , Proceedings of the 2005 conference on Interaction design and children. 56-61

33%; open Fischer T, Herr CM, Burry MC, et al. (2003) Find in CUMINCAD Tangible interfaces to explain Gaudí’s use of ruled-surface geometries , Automation Construction; 12(5): 467–471.

33%; open Fischer T. (2019) Find in CUMINCAD Transcomputability, (Glanville’s corollary of) Ashby’s law of requisite variety, and epistemic processes , Kybernetes; 48(4): 793–804.

33%; open Fischer, G. (1992) Find in CUMINCAD Creativity Enhancing Design Environments , Modeling Creativity and Knowledge-Based Creative Design, J. S. Gero and M. L. Maher (eds), Lawrence Erlbaum Associates, Publishers, Hillsdale, New Jersey, pp. 235-257

33%; open Fischer, G. (1992) Find in CUMINCAD Creativity Enhancing Design Environments , Modeling Creativity and Knowledge-Based Creative Design, J. S. Gero and M. L. Maher (eds), Lawrence Erlbaum Associates, Publishers, Hillsdale, New Jersey, pp. 235-257

33%; open Fischer, T, Herr, CM, Burry, MC and Frazer, JH (2003) Find in CUMINCAD Tangible interfaces to explain Gaudí's use of ruled-surface geometries , Automation in Construction, 12(5), p. 467-471

33%; open Fischer, T (2011) Find in CUMINCAD One-behind-the-many metaphysics and the myriad things , Herr, CM, Gu, N, Rudavski, S and Schnabel, MA (eds), Circuit Bending, Breaking and Mending: Proc. 16th CAADRIA Conference, CAADRIA, Hong Kong, p. 623-632

33%; open Fischer, T (2019) Find in CUMINCAD Transcomputability, (Glanville's Corollary of) Ashby's Law of Requisite Variety, and epistemic processes , Kybernetes, 48(4), pp. 793--804

33%; open Fischer, T., C.M. Herr, M.C. Burry, and J.H. Frazer (2003) Find in CUMINCAD Tangible Interfaces to Explain Gaudi's Use of Ruled-Surface Geometries: Interactive Systems Design for Haptic, Nonverbal Learning , Automation in Construction 12(5): 467-71

33%; open Fischer, T., Herr, C. M., Burry, M. C. and Frazer, J. H. (2003) Find in CUMINCAD Tangible Interfaces to Explain Gaudí’s use of Ruled-Surface Geometries. Interactive Systems Design for Haptic, Non-Verbal Learning , Automation in Construction Vol. 12, Issue 5 (September 2003), pp. 467-471

33%; open Fischer, T., Herr, C. M., Burry, M. C. and Frazer, J. H. (2003) Find in CUMINCAD Tangible Interfaces to Explain Gaudí’s use of Ruled-Surface Geometries. Interactive Systems Design for Haptic, Non-Verbal Learning , Automation in Construction Vol. 12, Issue 5 (September 2003), pp. 467-471

33%; open Fischer, T., Herr, C. M., Burry, M. C. and Frazer, J. H. (2003) Find in CUMINCAD Tangible interfaces to explain Gaudi’s use of ruled-surface geometries: Interactive systems design for haptic, nonverbal learning , Automation in Construction, 12, 467-471

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