Technologies for E-Services : second international workshop, TES 2001, Rome, Italy, September 14-15, 2001 : proceedings / Fabio Casati, Dimitrios Georgakopoulos, Ming-Chien Shan (eds.).
By: TES 2001 (2001 : Rome, Italy)
Contributor(s): Casati, Fabio
| Georgakopoulos, Dimitrios
| Shan, Ming-Chien
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e-Library
Electronic Book@IST |
EBook | Available |
Includes bibliographical references and index.
This book constitutes the refereed proceedings of the Second International Workshop on Technologies for E-Services, TES 2001, held in Rome, Italy, in September 2001. The 15 revised full papers presented were carefully reviewed and selected for inclusion in the book. Among the topics addressed are b2b protocols, inter-enterprise process execution, business logic, cooperative multiplatform environments, session-oriented telecommunication services, cross-organizational workflow environments, Internet-based workflow, composite e-services, transactional business processes, e-service security, distributed e-services, mobile commerce, e-commerce, pervasive services infrastructure, and mobile Internet agents.
Laminar Free Convection -- Basic Conservation Equations for Laminar Free Convection -- Brief Review of Previous Method for Analysis of Laminar Free Convection -- Laminar Free Convection of Monatomic and Diatomic Gases, Air, and Water Vapor -- Laminar Free Convection of Polyatomic Gas -- Laminar Free Convection of Liquid -- Heat Transfer Deviation of Laminar Free Convection Caused by Boussinesq Approximation -- Experimental Measurements of Free Convection with Large Temperature Difference -- Relationship on Laminar Free Convection and Heat Transfer Between Inclined and Vertical Cases -- Film Boiling and Condensation -- Laminar Film Boiling of Saturated Liquid -- Laminar Film Boiling of Subcooled Liquid -- Laminar Film Condensation of Saturated Vapor -- Effects of Various Physical Conditions on Film Condensations -- Laminar Film Condensation of Superheated Vapor -- Falling Film Flow of Non-Newtonian Fluids -- Hydrodynamics of Falling Film Flow of Non-Newtonian Power-Law Fluids -- Pseudosimilarity and Boundary Layer Thickness for Non-Newtonian Falling Film Flow -- Heat Transfer of the Falling Film Flow.
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