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 Lecun, Y, Bengio, Y and Hinton, G (2015) Find in CUMINCAD Deep Learning , Nature, 521(7553), pp. 436-444

17%; open LeCun, Y, Bengio, Y and Hinton, G (2015) Find in CUMINCAD Deep learning , Nature, 521(7553), pp. 436-444

17%; open LeCun, Y, Bengio, Y and Hinton, G (2015) Find in CUMINCAD Deep learning , Nature, 521(7553), pp. 436-444

17%; open LeCun, Y., Bengio, Y, and Hinton, G, (2015) Find in CUMINCAD Deep learning , Nature, 521, pp. 436-444

17%; open LeCun, Y., Bengio, Y. and Hinton, G. (2015) Find in CUMINCAD Deep learning , Nature, 521(7553), pp. 436-444

17%; open LeCun, Yann, Yoshua Bengio, and Geoffrey Hinton (2015) Find in CUMINCAD Deep Learning , Nature 521 (7553): 436–444. https://doi.org/10.1038/nature14539

17%; open Levi, D. and Kocher, S. (1999) Find in CUMINCAD Virtual Nature , Environment and Behavior 31(2):203-226

17%; open Levskaya A, Chevalier AA, Tabor JJ, et al. (2005) Find in CUMINCAD Engineering Escherichia coli to see light , Nature; 438(7067): 441–442.

17%; open Lewis, E.B. (1978) Find in CUMINCAD A gene complex controlling segmentation in drosophila , Nature, 276: 565-570

17%; open LI, A. I.-K. & TSOU, J. Y. (1995) Find in CUMINCAD The rule-based nature of wood frame construction of the Yingzaofashi and the role of virtual modelling in understanding it , Proceedings of the International Conference on Chinese Architectural History. Hong Kong, Chinese University of Hong Kong

17%; open Li, Andrew I-kang, & Tsou Jin-Yeu (1995) Find in CUMINCAD The rule-based nature of wood frame construction of the Yingzao fashi and the role of virtual modeling in understanding it, Computing in architectural research , Proceedings of the International Conference on Chinese Architectural History, Hong Kong, pp. 25–40

17%; open Li, Andrew I-kang, and Tsou, Jin-Yeu (1995) Find in CUMINCAD The rule-based nature of wood frame construction of the Yingzaofashi and the role of virtual modelling in understanding it , Computing in architectural research, Proceedings of the International Conference on Chinese Architectural History, 25-40. Hong Kong, 7-10 August 1995

17%; open Li, F., She, L., & Wang, H. (2020) Find in CUMINCAD Standardization and Diversification of Precast Concrete Facade Panel , IOP Conference Series: Earth and Environmental Science, 455, 012108. https://doi.org/10.1088/1755-1315/455/1/012108Love, L., Post, B., Roschli, A., Chesser, P., & Hun, D. E. (2019). Feasibility of Using BAAM for Mold Inserts for the Precast Concrete Industry. https://doi.org/10.2172/1606893Martins, P., Fonseca de Campos, P., Nunes, S., & Sousa, J. P. (2019). The Tectonics of Digitally Fabricated Concrete. A Case for Robotic Hot Wire Cutting. In RILEM Bookseries (pp. 311–322). https://doi.org/10.1007/978-3-319-99519-9_29Naboni, R., & Breseghello, L. (2018). Fused Deposition Modelling Formworks for Complex Concrete Constructions. SIGraDi 2018, XXII Congress of the Iberoamerican Society of Digital Graphics, 166–173. https://doi.org/10.5151/sigradi2018-1648Nahmens, A., & Mullens, M. (2011). Lean Homebuilding: Lessons Learned from a Precast Concrete Panelizer. Journal of Architectural Engineering, 17(4), 155–161. https://doi.org/10.1061/(ASCE)AE.1943-5568.0000037Pan, M., & Pan, W. (2019). Determinants of Adoption of Robotics in Precast Concrete Production for Buildings. Journal of Management in Engineering, 35(5), 5019007. https://doi.org/10.1061/(ASCE)ME.1943-5479.0000706Portland Cement Association. (n.d.). Ultra-High Performance Concrete. Retrieved August 25, 2020, from https://www.cement.org/learn/concrete-technology/concrete-design-production/ultra-high-performance-concreteRockite Cement. (2017). Specifications: Rockite Cement. [Data set]. from https://www.sculpt.com/2017/Tech/MsdsTechSheets/TechSheets/TECH_SHEET_rockite.pdfStephens, S. (2013). Sheared and shirred, surfaces and solids: Thom Mayne and his firm, Morphosis, turn a corner for the Perot Museum of Nature and Science in Dallas. Architectural Record, 201(1), 78–85

17%; open Lieberman, E., Michel, J.B., Jackson, J., Tang, T. and Nowak, M.A. (2007) Find in CUMINCAD Quantifying the evolutionary dynamics of language , Nature, 449, pp. 713-716

17%; open Lienhard, J., S. Schleicher, J. Knippers, S. Poppinga, and T. Speck (2010) Find in CUMINCAD Form-finding of nature inspires kinematics for pliable structures , Zhang, Q. et al. (eds) Proceedings of the International Symposium of the International Association of Shell and Spatial Structures (IASS), Spatial Structures Temporary and Permanent, Shanghai, China, 501-507

17%; open Lienhard, J., Schleicher, S., Knippers, J., Poppinga, S., Speck, T. (2010) Find in CUMINCAD Form-finding of Nature Inspires Kinematics for Pliable Structures , Proceedings of the International Symposium of the International Association of Shell and Spatial Structures (IASS), Shanghai, China, pp. 501

17%; open Liotta, S.–J. A. (2012 ) Find in CUMINCAD Patterns, Japanese Spatial Culture, Nature, and Generative Design , M. Belfiore and S.–J. A. Liotta (eds.), Patterns and Layering, Gestalten, Berlin, 8–19

17%; open Liotta, Salvator-John A., Matteo Belfiore, and Kengo Kuma. (2012) Find in CUMINCAD Patterns and Layering: Japanese Spatial culture, Nature and architecture , Berlin: Gestalten

17%; open Liotta, SJ (eds) (2012) Find in CUMINCAD Patterns and Layering: Japanese Spatial Culture, Nature and Architecture , Gestalten, Berlin

17%; open Lipson, H and Pollack, J. (2000) Find in CUMINCAD Automatic Design and Manufacture of Artificial Lifeforms , Nature, 974-978

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