Abstract
The nature of Web information is clarified and modeled as the adjunction space model.. Practical Web information management requires Web information to be modeled in such a way that the model captures the dynamic changes, present the dynamism visually, and validate the results formally. As the mathematical ground of the model, we have adopted algebraic topology, cellular spatial structures in the homotopic framework and adjunction spaces in particular. The results have been applied successfully to typical Web information systems such e-finance and e-manufacturing to validate the advantages of our Web information modeling over the popular relational model, the entity relationship model, UML, and XML.
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Tosiyasu L. Kunii and Annie Luciani, Eds., “Cyberworlds”, Springer-Verlag, 1998.
Tosiyasu L. Kunii, “Discovering Cyberworlds”, Vision 2000 of the January/ February, 2000 issue of IEEE Computer Graphics and Applications, pp. 64–65.
Tosiyasu L. Kunii and Hideko S. Kunii, “A Cellular Model for Information Systems on the Web — Integrating Local and Global Information-”, 1999 International Symposium on Database Applications in Non-Traditional Environments (DANTE’99), November 28-30, 1999, Heian Shrine, Kyoto, Japan, Organized by Research Project on Advanced Databases, in cooperation with Information Processing Society of apan, ACM Japan, ACM SIGMOD Japan, pp. 19–24, IEEE Computer Society Press, Los Alamitos, California, U. S. A.
Tosiyasu L. Kunii, “Cyber Graphics”, Proceedings of the First International Symposium on Cyber Worlds (CW2002), November 6-8 2002 Tokyo, Japan, in press, IEEE Computer Society Press, Los Alamitos, California, November 2002.
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Kunii, T.L. (2002). Web Information Modeling: The Adjunction Space Model. In: Bhalla, S. (eds) Databases in Networked Information Systems. DNIS 2002. Lecture Notes in Computer Science, vol 2544. Springer, Berlin, Heidelberg. https://doi.org/10.1007/3-540-36233-9_5
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DOI: https://doi.org/10.1007/3-540-36233-9_5
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