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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# Author Citation Select
41. Koutamanis, Alexandros (1990) Development of a computerized handbook of architectural plans

Delft University of Technology https://papers.cumincad.org/cgi-bin/works/Show?5509
42. Kutay, Ali R. (1982) Abstractions and Transactions : A Solution for Structuring Complex Applications

March, 1982. [1] l, 14 p. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?ab39
43. 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
44. Maver, T. (1984) What is eCAADe?

The Third European Conference on CAD in the Education of Architecture [eCAADe Conference Proceedings] Helsinki (Finnland) 20-22 September 1984. https://doi.org/10.52842/conf.ecaade.1984.x.d0s
45. Maver, T.W. and Ellis, J. (1982) Implementation of an Energy Model within a Multi-Disciplinary Practice

Proceedings of CAD82, Brighton (Ed: A Pipes), Butterworth, 562-570 https://papers.cumincad.org/cgi-bin/works/Show?941c
46. Maver, T.W. and Schijf R. (1982) International Implementation of a CAAD Project

https://papers.cumincad.org/cgi-bin/works/Show?maver_109
47. Maver, T.W. and Schijf, R. (1982) International Implementation of a CAAD Project in Schools of Architecture

October, 1982. [14] p. : ill. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?2f43
48. 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
49. O'Rourke, J., Chien, C.-B. and Olson, Th. (et al) (1982) A New Linear Algorithm for Intersecting Convex Polygons

Computer Graphics and Image Processing. 1982. vol. 19: pp. 384-391 : ill. includes a short bibliography https://papers.cumincad.org/cgi-bin/works/Show?2243
50. Rasdorf, William J. and Kutay, Ali R. (1982) Maintenance of Integrity During Concurrent Access in a Building Design Database

Computer Aided Design. Butterworth Scientific Ltd., July, 1982. vol. 14: pp. 201-207. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?4bae
51. Schijf, Rik (1986) CAD in the Netherlands: Integrated CAD

Computer-Aided Architectural Design Futures [CAAD Futures Conference Proceedings / ISBN 0-408-05300-3] Delft (The Netherlands), 18-19 September 1985, pp. 176-184 https://papers.cumincad.org/cgi-bin/works/Show?46b0
52. Shafer, Steven A. and Kanade, Takeo (1982) Using Shadows in Finding Surface Orientations

61 p. : ill.` Pittsburgh, PA: Department of Computer Science, CMU, January, 1982. CMU-CS- 82-100 https://papers.cumincad.org/cgi-bin/works/Show?e1d1
53. Udupa, Jayaram K., Srihari, Sargur N. and Herman, Gabor T. (1982) Boundary Detection in Multidimensions

IEEE Transactions on Pattern Analysis and Machine Intelligence. January, 1982. vol. PAM-4: pp. 41-50 : ill. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?233c
54. Vanier, D. J. and Worling, Jamie (1986) Three-dimensional Visualization: A Case Study

Computer-Aided Architectural Design Futures [CAAD Futures Conference Proceedings / ISBN 0-408-05300-3] Delft (The Netherlands), 18-19 September 1985, pp. 92-102 https://papers.cumincad.org/cgi-bin/works/Show?452c
55. Wake, Warren K. (1982) Digital Anaglyph Stereoscopic Color Image Production

March, 1982. [5] p. includes bibliography https://papers.cumincad.org/cgi-bin/works/Show?0e95
56. Wang, Ming-Hung and Habraken, John N. (1982) Six Operations : Notations of Design Process

Spring, 1982. pp. 1-18 : ill https://papers.cumincad.org/cgi-bin/works/Show?4617
57. 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
58. 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
59. Cendes, Z.J., Shenton, D. and H. Shahnasser (1982) Adaptive Finite Element Mesh Generation Using the Delaunay Algorithm

3 p. : ill. Pittsburgh: Design Research Center, CMU, December, 1982 https://papers.cumincad.org/cgi-bin/works/Show?89e4
60. Cohen, Paol R. and Feigenbaum, Edward A. (editors) (1982) The Handbook of Artificial Intelligence

xviii, 639 p. Stanford, California: HeurisTech Press, 1982. vol. 3: See The Handbook of Artificial intelligence edited by Avron, Barr and Feigenbaum, Edward. Includes bibliography p. 565-586 and cumulative indexes https://papers.cumincad.org/cgi-bin/works/Show?adcd

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