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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17%; open Rutten, David (2013) Find in CUMINCAD Galapagos: On the Logic and Limitations of Generic Solvers , Architectural Design 83 (2): 132–135

17%; open Rutten, David. (2013) Find in CUMINCAD Galapagos: On the Logic and Limitations of Generic Solvers , Architectural Design 83(2): 132-135

17%; open Ryan. S. (2021) Find in CUMINCAD An Integrated Supply Chain Framework Between Designers and Material Library Under a Digital Environment for Efficient Project Management , Victoria University of Wellington.Studer, W., & Mello, L. C. (221). Core Elements Underlying Supply Chain Management. MDPI - Buildings, 1-2

17%; open Rybarczyk, G. (2014) Find in CUMINCAD Simulating bicycle wayfinding mechanisms in an urban environment , Urban, Planning and Transport Research, 2, p. issue 1

17%; open Ryle, Gilbert (1971) Find in CUMINCAD Collected Papers , Volume 2, chapter Thinking and Reflecting .Hutchinson, London

17%; open Ryle, Gilbert (1971) Find in CUMINCAD Collected Papers , Volume 2, chapter 37, The Thinking of Thoughts: What is ìLePenseurî Doing? Hutchinson, London

17%; open Rüdenauer, K. (2005) Find in CUMINCAD Web Based Configuration and CNC Production , Digital Design: The Quest for New Paradigms [23nd eCAADe Conference Proceedings / ISBN 0-9541183-2-4] Lisbon (Portugal) 21-24 September 2005, pp. 17-25

17%; open S Zhang (2010) Find in CUMINCAD Recent progresses on real-time 3D shape measurement using digital fringe projection techniques , Optics and Lasers inEngineering 48 (2): 149–158.

17%; open S. Bhooshan, V. Bhooshan, A. Dell’Endice, J. Chu, P. Singer, J. Megens, T. Van Mele, and P. Block (2022) Find in CUMINCAD The Striatus bridge , Architecture,Structures and Construction 2: 521–543.

17%; open S. Bitting, T. Derme, J. Lee, T. Van Mele, B. Dillenburger, and P. Block (2022) Find in CUMINCAD Challenges and Opportunities in Scaling up Architectural Applications of Mycelium-Based Materials with Digital Fabrication , Biomimetics 7 (2): 44

17%; open S. Dritsas, S. E. P. Halim, Y. Vijay, N. G. Sanandiya, and J. G. Fernandez (2018) Find in CUMINCAD Digital fabrication with natural composites , ConstructionRobotics 2 (1-4): 41–51

17%; open S. Keller, and H.M. Jaeger (2016) Find in CUMINCAD Aleatory Architectures , Granular Matter 18 (2): 29

17%; open S. Leder, R. Weber, L. Vasey, M. Yablonina, and A. Menges (2020) Find in CUMINCAD Voxelcrete - Distributed Voxelized Adaptive Formwork , Anthropologic: Architecture and Fabrication in the Cognitive Age; Proceedings of the 38th ECAADe Conference, vol 2. 433–42

17%; open S. T. Refsland, T. Ojika, A. Addison, R. Stone (2000) Find in CUMINCAD Virtual heritage: breathing new life into our ancient past , IEEE Multimedia, Vol. 7, No. 2

17%; open S. T. Refsland, T. Ojika, A. Addison, R. Stone (2000) Find in CUMINCAD Virtual heritage: breathing new life into our ancient past , IEEE Multimedia, Vol. 7, No. 2

17%; open S.J. Keating, J.C. Leland, L. Cai, and N. Oxman (2017) Find in CUMINCAD Toward Site[1]Specific and Self-Sufficient Robotic Fabrication on Architectural Scales , Science Robotics 2 (5): eaam8986

17%; open S.W.Sloan, G.T.Houlsby. (1984) Find in CUMINCAD An Implementation of Watson’s Algorithm for Computing 2-D Delauney Triangulations , Advanced Engineering Software, Volume 6, Number 4, 1984

17%; open S?ndergaard, A, Feringa, J and Stan, F (2018) Find in CUMINCAD Robotic abrasive wire cutting of polymerized styrene formwork systems for cost-effective realization of topology-optimized concrete structures , Construction Robotics, 2, pp. 81-92

17%; open Sabin, J, Miller, M, Cassab, N and Lucia, A (2014) Find in CUMINCAD PolyBrick: Variegated Additive Ceramic Component Manufacturing (ACCM) , 3D PRINTING, 1(2), pp. 78-84

17%; open Sabin, J., M. Miller, N. Cassab, and A. Lucia. (2014) Find in CUMINCAD PolyBrick: Variegated Additive Ceramic Component Manufacturing (ACCM) , 3D Printing and Additive Manufacturing 1(2): 78–84. doi:10.1089/3dp.2014.0012

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