Martin Odersky heads the programming research group at EPFL. His research interests cover fundamental as well as applied aspects of programming languages. They include semantics, type systems, programming language design, and compiler construction. The main focus if his work lies in the integration of object-oriented and functional programming. His research thesis is that the two paradigms are just two sides of the same coin and should be unified as much as possible. To prove this he has experimented a number of language designs, from Pizza to GJ to Functional Nets. He has also influenced the development of Java as a co-designer of Java generics and as the original author of the current javac reference compiler. His current work concentrates on the Scala programming language, which unifies FP and OOP, while staying completely interoperable with Java and .NET.Martin Odersky got his doctorate from ETHZ, in 1989. He held research positions at the IBM T.J. Watson Research Center from 1989 and at Yale University from 1991. He was then a professor at the University of Karlsruhe from 1993 and at the University of South Australia from 1997. He joined EPFL as full professor in 1999. He is associate editor of the Journal of Functional Programming and member of IFIP WG 2.8. He was conference chair for ICFP 2000, and program chair for ECOOP 2004 as well as ETAPS/CC 2007.
Viktor Kunčak joined EPFL in 2007, after receiving a PhD degree from MIT. Since then has been leading the Laboratory for Automated Reasoning and Analysis and supervised at least 12 completed PhD theses. His works on languages, algorithms and systems for verification and automated reasoning. He served as an initiator and one of the coordinators of a European network (COST action) in the area of automated reasoning, verification, and synthesis. In 2012 he received a 5-year single-investigator European Research Council (ERC) grant of 1.5M EUR. His invited talks include those at Lambda Days, Scala Days, NFM, LOPSTR, SYNT, ICALP, CSL, RV, VMCAI, and SMT. A paper on test generation he co-authored received an ACM SIGSOFT distinguished paper award at ICSE. A PLDI paper he co-authored was published in the Communications of the ACM as a Research Highlight article. His Google Scholar profile reports an over-approximate H-index of 38. He was an associate editor of ACM Transactions on Programming Languages and Systems (TOPLAS) and served as a co-chair of conferences on Computer-Aided Verification (CAV), Formal Methods in Computer Aided Design (FMCAD), Workshop on Synthesis (SYNT), and Verification, Model Checking, and Abstract Interpretation (VMCAI). At EPFL he teaches courses on functional and parallel programming, compilers, and verification. He has co-taught the MOOC "Parallel Programming" that was visited by over 100'000 learners and completed by thousands of students from all over the world.
Cette page est générée automatiquement et peut contenir des informations qui ne sont pas correctes, complètes, à jour ou pertinentes par rapport à votre recherche. Il en va de même pour toutes les autres pages de ce site. Veillez à vérifier les informations auprès des sources officielles de l'EPFL.
Learn how to design and implement reliable, maintainable, and efficient software using a mix of programming skills (declarative style, higher-order functions, inductive types, parallelism) and
fundamental software construction concepts (reusability, abstr ...
Un diagnostic infirmier est un jugement clinique concernant une réaction humaine aux problèmes de santé / aux processus de vie, ou une prédisposition à cette réaction d’une personne, d’un proche aidant, d’une famille, d’un groupe ou d’une collectivité. Un diagnostic infirmier sert de base pour choisir des interventions de soins visant l’atteinte des résultats dont l'infirmière a la responsabilité.
Le diagnostic différentiel est une méthode permettant de différencier une maladie d'autres pathologies qui présentent des symptômes proches ou similaires. Ce processus vise à établir un diagnostic plus sûr via une approche méthodique qui prend en considération tant les éléments permettant d'exclure une maladie plutôt que ceux permettant de la confirmer. Le diagnostic différentiel peut aboutir à plusieurs hypothèses impossibles à départager à un instant donné, mais qui seront infirmées ou confirmées au cours du temps (évolution de la maladie) ou à l'aide d'examens complémentaires.
The Java language has undergone several changes since JDK 1.0 as well as numerous additions of classes and packages to the standard library. Since J2SE 1.4, the evolution of the Java language has been governed by the Java Community Process (JCP), which uses Java Specification Requests (JSRs) to propose and specify additions and changes to the Java platform. The language is specified by the Java Language Specification (JLS); changes to the JLS are managed under JSR 901.
vignette|alt=Carte rectangulaire beige clair avec dans le sens de la longueur 10 lignes constituées chacune d'une suite de chiffre identique, de 1 à 10. Des perforations verticales font disparaître certains de ces chiffres|Carte perforée à 80 colonnes, sur laquelle est codé le texte de programmation « CALL RCLASS (AAA, 21, NNC, PX3, PX4) ».
Scala est un langage de programmation multi-paradigme conçu à l'École polytechnique fédérale de Lausanne (EPFL) pour exprimer les modèles de programmation courants dans une forme concise et élégante. Son nom vient de l'anglais Scalable language qui signifie à peu près « langage adaptable » ou « langage qui peut être mis à l'échelle ». Il peut en effet être vu comme un métalangage. Scala intègre les paradigmes de programmation orientée objet et de programmation fonctionnelle, avec un typage statique.
Couvre les concepts d'interfaces Comparable et Comparator en Java, en expliquant comment les classes implémentent ces interfaces pour permettre la comparaison d'objets.
Couvre les techniques de débogage des logiciels, mettant l'accent sur le diagnostic efficace des problèmes, la collecte d'information et les processus de débogage structurés.