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The aim of this volume is to collect original contributions by the best specialists from the area of proof theory, constructivity, and computation and discuss recent trends and results in these areas. Some emphasis will be put on ordinal analysis, reductive proof theory, explicit mathematics and type-theoretic formalisms, and abstract computations. The volume is dedicated to the 60th birthday of Professor Gerhard Jager, who has been instrumental in shaping and promoting logic in Switzerland for the last 25 years. It comprises contributions from the symposium "Advances in Proof Theory", which was held in Bern in December 2013. Proof theory came into being in the twenties of the last century, when it was inaugurated by David Hilbert in order to secure the foundations of mathematics. It was substantially influenced by Goedel's famous incompleteness theorems of 1930 and Gentzen's new consistency proof for the axiom system of first order number theory in 1936. Today, proof theory is a well-established branch of mathematical and philosophical logic and one of the pillars of the foundations of mathematics. Proof theory explores constructive and computational aspects of mathematical reasoning; it is particularly suitable for dealing with various questions in computer science.
The aim of this volume is to collect original contributions by the best specialists from the area of proof theory, constructivity, and computation and discuss recent trends and results in these areas. Some emphasis will be put on ordinal analysis, reductive proof theory, explicit mathematics and type-theoretic formalisms, and abstract computations. The volume is dedicated to the 60th birthday of Professor Gerhard Jager, who has been instrumental in shaping and promoting logic in Switzerland for the last 25 years. It comprises contributions from the symposium "Advances in Proof Theory", which was held in Bern in December 2013. Proof theory came into being in the twenties of the last century, when it was inaugurated by David Hilbert in order to secure the foundations of mathematics. It was substantially influenced by Goedel's famous incompleteness theorems of 1930 and Gentzen's new consistency proof for the axiom system of first order number theory in 1936. Today, proof theory is a well-established branch of mathematical and philosophical logic and one of the pillars of the foundations of mathematics. Proof theory explores constructive and computational aspects of mathematical reasoning; it is particularly suitable for dealing with various questions in computer science.
Dieses Buch erlautert Theorie und Praxis zu relationalen Datenbanken Was sind relationale Datenbanken? Die Antwort darauf geben die theoretischen Grundlagen und Praxisbeispiele in diesem Buch. Zunachst erlautert Thomas Studer die mathematisch prazise Darstellung des relationalen Modells und die relationale Algebra. Daneben widmet er sich der Datenbanksprache SQL und schafft damit den Praxisbezug. Die zahlreichen Beispiele auf Basis der open-source Datenbank PostgreSQL erleichtern die Anwendung. Dieses Buch erklart die grundlegenden Prinzipien des Schemaentwurfs und Normalformen fundiert und praxisnah und verbindet die relationale Datenbanktheorie mit Datenbankdesign. Studer hat aktuelle Entwicklungen im Blick Die vorliegende Auflage ist umfassend aktualisiert und dem aktuellen Kenntnisstand angepasst. Studer widmet sich in diesem Buch den folgenden Teilaspekten relationaler Datenbanken: Logische und physische Query-Optimierung Isolation von serializable Snapshots Zerlegung der dritten Normalform in die Boyce-Codd Normalform Rollen und Berechtigungen SQL als Sprache zur Datendefinition und Datenmanipulation Sicherheitsrichtlinien auf Zeilenebene Durch die nachhaltige Verbindung von Theorie und Praxis eignet sich das Buch "Relationale Datenbanken" fur: Studierende aus den Bereichen (Wirtschafts-)Informatik Praktiker wie Softwareentwickler, Systemadministratoren oder Fachinformatiker Besuchen Sie uns online und entdecken Sie die zahlreichen Begleitmaterialien zu diesem Buch, die alle frei zuganglich sind.
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