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1. Cendes, Z.J., Minhas, F.U. and Silvester, P.P. (1982) Universal Finite Element Matrices for Tetrahedra

45, [22] p Pittsburgh: Design Research Center, CMU, December, 1982. DRC- 18-58-82. includes bibliography. https://papers.cumincad.org/cgi-bin/works/Show?66df
2. Costa Couceiro, Mauro (2006) La Arquitectura como Extensión Fenotípica Humana - Un Acercamiento Basado en Análisis Computacionales [Architecture as human phenotypic extension – An approach based on computational explorations]

SIGraDi 2006 - [Proceedings of the 10th Iberoamerican Congress of Digital Graphics] Santiago de Chile - Chile 21-23 November 2006, pp. 56-60 https://papers.cumincad.org/cgi-bin/works/Show?sigradi2006_e183a
3. Fix, George J. and Ernst, Stephan (1982) Finite Element Methods of the Least Squares Type for Regions with Corners

15 p. : ill Pittsburgh: Design Research Center, CMU, April, 1982. includes bibliography. https://papers.cumincad.org/cgi-bin/works/Show?29bb
4. Kalay, Yehuda E. (1982) Determining the Spatial Containment of a Point in General Polyhedra

Computer graphics and Image Processing. 1982. vol. 19: pp. 303-334 : ill. includes bibliography. See also criticism and improvements in Orlowski, Marian https://papers.cumincad.org/cgi-bin/works/Show?8c27
5. Koutamanis, Alexandros (1990) Development of a computerized handbook of architectural plans

Delft University of Technology https://papers.cumincad.org/cgi-bin/works/Show?5509
6. Marr, David (1982) Vision: A Computational Investigation into the Human Representation and Processing of Visual Information

New York, NY: W.H. Freeman and Company https://papers.cumincad.org/cgi-bin/works/Show?fafa
7. Newell, Allen and Rosenbloom, Paul S. (1982) Mechanisms of Skill Acquisition and the Law of Practice

[2], III, 52 p. : ill Design Research Center, CMU, April, 1982. DRC-15-16-82. includes bibliography. https://papers.cumincad.org/cgi-bin/works/Show?e55f
8. Newell, Allen (1982) The Knowledge Level

[2]. 46 p. : ill. Design Research Center, CMU, April, 1982. DRC-15-15-82. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?611a
9. Nievergelt, J. and Preparata, Franco P. (1982) Plane-Sweep Algorithms for Intersecting Geometric Figures

Communications of the ACM. October, 1982. vol. 25: pp. 739-747 : ill. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?2415
10. Woodwark, J.R. (1989) Splitting Set-Theoretic Solid Models into Connected Components

10 p. : ill. Winchester: IBM UK Scientific Center, IBM United Kingdom Laboratories Limited, June, 1989. IBM UKSC 210. includes bibliography In general, there is no way to tell how many pieces (connected components) a set-theoretic (CSG) solid model represents, except via conversion to a boundary model. Recent work on the elimination of redundant primitives has been linked with techniques for identifying connected components in quad-trees and oct-trees into a strategy to attack this problem. Some success has been achieved, and an experimental Prolog program, working in two dimensions, that finds connected components and determines the set-theoretic representation of each component, is reported, and further developments proposed. CSG / quadtree / octree / primitives / algorithms. 43. Woodwark, J. R. and Quinlan K. M. 'Reducing the Effect of Complexity on Volume Model Evaluation.' Computer Aided Design. April, 1982. pp. 89-95 : ill. includes bibliography. https://papers.cumincad.org/cgi-bin/works/Show?2786
11. Akin, Omer and Weinel, Eleanor F. (editors) (1982) Representation and Architecture

v, 285 p. : ill. Silver Spring, Maryland: Information Dynamics, Inc., 1982 https://papers.cumincad.org/cgi-bin/works/Show?0107
12. Anderson, David P. (1982) Hidden Line Elimination in Projected Grid Surfaces

ACM Transactions on Graphics. October, 1982. vol. 1: pp. 274-288 : ill. includes a short bibliography https://papers.cumincad.org/cgi-bin/works/Show?8a88
13. Avron, Barr and Feigenbaum, Edward A. (editors) (1982) The Handbook of Artificial Intelligence

xiii, 428 p. Stanford, California: Heuristech Press, 1982. vol. 2 of 3: Includes bibliography p.383-402 and indexes https://papers.cumincad.org/cgi-bin/works/Show?843d
14. Balas, Egon (1982) A Class of Location, Distribution and Scheduling Problems : Modeling and Solution Methods

21 p., 8 + 4 p. of appendix : ill. Carnegie Mellon University, Pittsburgh, PA: Design Research Center, December, 1982. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?2045
15. Balas, Egon (1982) Integer Programming

December, 1982. 32 p https://papers.cumincad.org/cgi-bin/works/Show?4763
16. Bay, J.H. (2002) Cognitive Biases and Precedent Knowledge in Human and Computer-Aided Design Thinking

CAADRIA 2002 [Proceedings of the 7th International Conference on Computer Aided Architectural Design Research in Asia / ISBN 983-2473-42-X] Cyberjaya (Malaysia) 18–20 April 2002, pp. 213-220 https://doi.org/10.52842/conf.caadria.2002.213
17. BAY, Joo-Hwa (2003) Making Rebuttals Available Digitally for Minimising Biases in Mental Judgements

Digital Design - Research and Practice [Proceedings of the 10th International Conference on Computer Aided Architectural Design Futures / ISBN 1-4020-1210-1] Tainan (Taiwan) 13–15 October 2003, pp. 147-156 https://papers.cumincad.org/cgi-bin/works/Show?cf2003_m_040
18. Bay, Joo-Hwa (2001) Cognitive Biases - The case of tropical architecture

Delft University of Technology https://papers.cumincad.org/cgi-bin/works/Show?1b10
19. Bergstrom, Axel Lennart (1982) Computer Graphics in Community Planning

June, 1982. 3 p https://papers.cumincad.org/cgi-bin/works/Show?48a2
20. Blinn, J.I. (1982) A Generalization of Algebraic Surface Drawing

ACM Transaction on Graphics, vol. 1, no. 3, pp. 235-256, 1982 https://papers.cumincad.org/cgi-bin/works/Show?6094

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