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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40%; open Peters, B. (2013) Find in CUMINCAD Computation Works: The Building of Algorithmic Thought , Architectural Design, 83(2), 8–15

40%; open Peters, B. (2013) Find in CUMINCAD Building Bytes , ACADIA 13: Adaptive Architecture, 433–434

40%; open Peters, B. (2013) Find in CUMINCAD Computation Works: The Building of Algorithmic Thought , Architectural Magazine, Computation Works: The Building of Algorithmic Thought, 222, 8-16

40%; open Peters, B. (2013) Find in CUMINCAD Computation Works: The Building of Algorithmic Thought , Architectural Design, 83(2), pp. 8-15. Available at: https://doi.org/10.1002/ad.1545 (Accessed: 01.04.2024)

40%; open Peters,T. and Peters, B. (2013) Find in CUMINCAD Inside Smartgeometry: Expanding the Architectural Possibilities of Computational Design , John Wiley & Sons

40%; open Piker, D. (2013) Find in CUMINCAD Kangaroo Form Finding with Computational Physics , Peters, B. and X. de Kestelier, Computation Works – The Building of Algorithmic Thought, Architectural Design– Profile No 222, John Wiley & Sons, New York, 136–137

40%; open Piker, Daniel, and Will Pearson (2013) Find in CUMINCAD Plankton , GitHub. Retrieved from https://github.com/meshmash/Plankton

40%; open Piker, Daniel, and Will Pearson (2013) Find in CUMINCAD Plankton , GitHub. Retrieved from https://github.com/meshmash/Plankton

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo: Form Finding with Computational Physics , Architectural Design 83 (2)

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo: Form Finding With Computational Physics , Architectural Design 83 (2): 136–137

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo: Form finding with computational physics , Architectural Design; 83(2); 136-137

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo—Form Finding with Computational Physics , Architectural Design 83 (2): 136–137

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo—Form Finding with Computational Physics , Architectural Design 83 (2): 136–137

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo: Form Finding with Computational Physics , Architectural Design 83 (23): 136–137. https://doi.org/10.1002/ad.1569.

40%; open Piker, Daniel (2013) Find in CUMINCAD Kangaroo: Form Finding with Computational Physics , Architectural Design 83 (2): 136–137

40%; open Piker, Daniel. (2013) Find in CUMINCAD Kangaroo: Form Finding with Computational Physics , Architectural Design. doi:10.1002/ad.1569.

40%; open Piker, Daniel. (2013) Find in CUMINCAD Kangaroo: Form Finding with Computational Physics , Architectural Design. doi:10.1002/ad.1569.

40%; open Roel CGM L., Marja T., Daniel C. & Jan LM H. (2013) Find in CUMINCAD Climate adaptive building shells: State-of-the-art and future challenges , Renewable and sustainable energy reviews, 25:483–493

40%; open Rutten, David. (2013) Find in CUMINCAD Galapagos: On the Logic and Limitations of Generic Solvers , Computation Works, The Building of Algorithmic Thought, Architectural Design, Profile No. 222, edited by B. Peters and X. de Kestelier, 132-135. West Sussex, UK: John Wiley & Sons

40%; open Sabin J. E. (2013) Find in CUMINCAD Matrix Architecture , Peters, T. & Peters, B. (Eds.), AD Inside Smart Geometry: Expanding the Architectural Possibilities of Computational Design (pp. 60-71). West Sussex: John Wiley& Sons

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