968 resultados para Web Search
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Conférencier invité - Keynote Speaker
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Le présent mémoire cherche à comprendre et à cerner le lien entre la stratégie de recherche d’information par le journaliste sur le web et les exigences de sa profession. Il vise à appréhender les précautions que prend le journaliste lors de sa recherche d’information sur le web en rapport avec les contraintes que lui imposent les règles de sa profession pour assurer la qualité des sources d’informations qu’il exploite. Nous avons examiné cette problématique en choisissant comme cadre d’étude Radio-Canada où nous avons rencontré quelques journalistes. Ceux-ci ont été suivis en situation de recherche d’information puis questionnés sur leurs expériences de recherche. L’arrivée d’internet et la révolution technologique qui en a découlé ont profondément bouleversé les pratiques journalistiques. La recherche d’information représente ainsi une zone importante de cette mutation des pratiques. Cette transformation amène surtout à s’interroger sur la façon dont la nouvelle façon de rechercher les sources d’information influence le travail du journaliste, et surtout les balises que se donne celui-ci pour résister aux pièges découlant de sa nouvelle méthode de travail.
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Scholarly communication over the past 10 to 15 years has gained a tremendous momentum with the advent of Internet and the World Wide Web. The web has transformed the ways by which people search, find, use and communicate information. Innovations in web technology since 2005 have brought out an array of new services and facilities and an enhanced version of the web named Web 2.0. Web 2.0 facilitates a collaborative environment in which the information users can interact with the information. Web 2.0 enables its users to create, annotate, review, share re-use and represent the information in new ways thereby optimizing the information dissemination
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Science is search for the laws of underlying phenomena of the nature. Engineering constructs the nature as we wish. Interestingly the huge engineering infrastructure like world wide web has grown in such a complex structure such that we need to see the fundamental science behind the structure and behaviour of these networks. This talk covers the science behind the complex networks like web, biological, social etc. The talk aim to discuss the basic theories that govern the static as well as the dynamics of such interesting networks
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Page 1. Web 2.0 Technologies for Education G. Santhosh Kumar Dept. Of Computer Science Cochin University Page 2. What is Internet? CUSAT is linked to this Web through 10 Mbps leased line connectivity Page 3. Size of the Web? GYWA = Sorted on Google, Yahoo!, Windows Live Search (Msn Search) and Ask YGWA = Sorted on Yahoo!, Google, Windows Live Search (Msn Search) and Ask www.worldwidewebsize.com Page 4. The Machine is Us/ing Us ■ http://in.youtube.com/watch?v=NLlGopyXT_g&feature=channel Page 5. ..
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This report gives a detailed discussion on the system, algorithms, and techniques that we have applied in order to solve the Web Service Challenges (WSC) of the years 2006 and 2007. These international contests are focused on semantic web service composition. In each challenge of the contests, a repository of web services is given. The input and output parameters of the services in the repository are annotated with semantic concepts. A query to a semantic composition engine contains a set of available input concepts and a set of wanted output concepts. In order to employ an offered service for a requested role, the concepts of the input parameters of the offered operations must be more general than requested (contravariance). In contrast, the concepts of the output parameters of the offered service must be more specific than requested (covariance). The engine should respond to a query by providing a valid composition as fast as possible. We discuss three different methods for web service composition: an uninformed search in form of an IDDFS algorithm, a greedy informed search based on heuristic functions, and a multi-objective genetic algorithm.
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Lecture 3: Contributions of Pre WWW Research: Spatial Hypertext and Temporal Hypertext Contains Powerpoint Lecture slides and Hypertext Research Papers: Spatial [SPATIAL] VIKI: spatial hypertext supporting emergent structure (Marshall, 94); Towards Geo-Spatial Hypermedia: Concepts and Prototype Implementation, (Gronbaek et al. 2002); Cyber Geography and Better Search Engines; [TEMPORAL] Anticipating SMIL 2.0: The Developing Cooperative Infrastructure for Multimedia on the Web (Rutledge 1999); Its About Time: Link Streams as Continuous Metadata (Page et al., 2001); Everything You Wanted to Know About MPEG-7:Part 1 (Nack & Lindsay 1999)
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Programming Assignment on Search Engines
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In this lecture, we will focus on analyzing user goals in search query logs. Readings: M. Strohmaier, P. Prettenhofer, M. Lux, Different Degrees of Explicitness in Intentional Artifacts - Studying User Goals in a Large Search Query Log, CSKGOI'08 International Workshop on Commonsense Knowledge and Goal Oriented Interfaces, in conjunction with IUI'08, Canary Islands, Spain, 2008.
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Slides and an essay on the Web Graph, search engines and how Google calculates Page Rank
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En este trabajo se realiza una descripción y análisis del esquema de funcionamiento detrás del emergente mercado de las compras colectivas y los cupones online desde una perspectiva tanto teórica como empírica. Inicialmente, se desarrolla un marco teórico teniendo en cuenta elementos de: teoría económica, e-marketing y comercio electrónico en los que se basa éste mercado. Posteriormente, se muestra el proyecto de implementación de una plataforma virtual y un sistema de incentivos basado en el esquema de cupones online desarrollado por el autor para la franquicia de tarjetas de crédito Diners Club International del Banco Davivienda S.A. en Colombia
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Esta dissertação resulta de uma investigação que levou a cabo um estudo webométrico sobre a presença das universidades portuguesas na Web, avaliando a visibilidade das instituições através do cálculo de um indicador webométrico, o Web Impact Factor. A World Wide Web é, na atualidade, um dos principais meios de difusão de Informação. Os Estudos Métricos da Informação visam quantificar e avaliar a produção de Informação, objeto de estudo de disciplinas como a Infometria, a Cienciometria e a Bibliometria. Recentemente, surgiram a Cibermetria e a Webometria como novas disciplinas que estudam a produção e difusão da Informação no contexto do Ciberespaço e da World Wide Web, respetivamente. As universidades, enquanto polos privilegiados de produção e difusão de conhecimento, são o objeto de estudo natural da Webometria e a avaliação da sua presença na World Wide Web contribui para a análise do desempenho destas instituições. Para a realização deste trabalho foi adotada a metodologia proposta por Noruzi, que calcula três categorias de Web Impact Factor: o WIF Total, o WIF Revisto e o Selflink WIF. De modo a calcular estas categorias, foram recolhidos dados quantitativos de inlinks, selflinks, número total de páginas e número de páginas indexadas pelo motor de pesquisa. O motor de pesquisa utilizado foi o Altavista, tendo sido realizadas pesquisas de expressões booleanas durante o primeiro semestre de 2009. Após a recolha, os dados foram tratados estatisticamente e procedeu-se ao cálculo das categorias do WIF. Conclui-se que existe uma maior visibilidade das universidades públicas portuguesas porque obtêm melhores resultados ao nível de duas categorias do Web Impact Factor: o WIF Revisto e o Selflink WIF.
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Currently many ontologies are available for addressing different domains. However, it is not always possible to deploy such ontologies to support collaborative working, so that their full potential can be exploited to implement intelligent cooperative applications capable of reasoning over a network of context-specific ontologies. The main problem arises from the fact that presently ontologies are created in an isolated way to address specific needs. However we foresee the need for a network of ontologies which will support the next generation of intelligent applications/devices, and, the vision of Ambient Intelligence. The main objective of this paper is to motivate the design of a networked ontology (Meta) model which formalises ways of connecting available ontologies so that they are easy to search, to characterise and to maintain. The aim is to make explicit the virtual and implicit network of ontologies serving the Semantic Web.
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GODIVA2 is a dynamic website that provides visual access to several terabytes of physically distributed, four-dimensional environmental data. It allows users to explore large datasets interactively without the need to install new software or download and understand complex data. Through the use of open international standards, GODIVA2 maintains a high level of interoperability with third-party systems, allowing diverse datasets to be mutually compared. Scientists can use the system to search for features in large datasets and to diagnose the output from numerical simulations and data processing algorithms. Data providers around Europe have adopted GODIVA2 as an INSPIRE-compliant dynamic quick-view system for providing visual access to their data.
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In general, ranking entities (resources) on the Semantic Web (SW) is subject to importance, relevance, and query length. Few existing SW search systems cover all of these aspects. Moreover, many existing efforts simply reuse the technologies from conventional Information Retrieval (IR), which are not designed for SW data. This paper proposes a ranking mechanism, which includes all three categories of rankings and are tailored to SW data.