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Strength of materials --- materialen --- spanning --- torsie --- Mohr --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Strength of materials --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Strength of materials. --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Diese didaktisch hervorragend konzipierte Einführung in die Grundlagen der Statik, der Festigkeitslehre sowie der Kinematik und Kinetik bleibt nicht bei der reinen Wissensvermittlung stehen. Seit der ersten Auflage vermittelt das immer wieder aktualisierte und von Studenten und Studentinnen sehr geschätzte Werk ein umfassendes Verständnis der Zusammenhänge und der physikalischen Vorgänge in der Technischen Mechanik. Anhand zahlreicher Problemstellungen im Bereich Maschinenbau wird die jeweilige Bearbeitung und Lösung ausführlich erläutert. Neben der Ermittlung des Ergebnisses legen die Autoren besonderen Wert auf dessen Interpretation und Deutung. Dies ist für den angehenden Ingenieur von besonderer Bedeutung, da er über die "formelmäßige" Statik hinaus ein Gefühl für die Wirkung von Kräften an Bauteilen entwickeln kann. Die dazu erforderliche Übung erhält der Leser durch das Bearbeiten und Lösen von Übungsaufgaben. Eine Vielzahl solcher Aufgaben ist in diesem Buch enthalten und ermöglicht dem Leser, seine Fertigkeiten im Bereich Statik selbstständig zu schulen. Band 2 Festigkeitslehre befasst sich mit den verschiedenen Belastungsfällen wie zum Beispiel Zug, Druck, Abscheren, Biegung, Knickung für Geometrien und Materialien, die typisch sind für die Konstruktionen im Maschinenbau.
Strength of materials. --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Materials --- Strength of materials. --- Analysis. --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Strength of Materials provides a comprehensive overview of the latest theory of strength of materials. The unified theory presented in this book is developed around three concepts: Hooke's Law, Equilibrium Equations, and Compatibility conditions. The first two of these methods have been fully understood, but clearly are indirect methods with limitations. Through research, the authors have come to understand compatibility conditions, which, until now, had remained in an immature state of development. This method, the Integrated Force Method (IFM) couples equilibrium and compatibility conditions
Matter physics --- strength of materials --- sterkteleer --- Strength of materials. --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Strength of materials. --- Strength of materials --- #KVIV:BB --- Materialenleer --- Sterkteleer --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Strength of materials --- Mechanics, Applied --- Résistance des matériaux --- Mécanique appliquée --- Périodiques. --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Strength of materials --- Structural engineering --- Résistance des matériaux --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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Voids in Materials treats voids of different shapes and forms in various materials, and examines their effects on material properties. The book covers the origins of voids in materials, how they are sometimes introduced in the form of hollow spheres, and the resultant properties of materials containing voids. There are many books that focus on foams (which intentionally incorporate voids into materials) and that cover voids incidental to or unwanted in the fabrication of non-porous materials. In fact, all materials have voids. This book starts from the premise that voids are pervasive in a
Materials --- Strength of materials. --- Materials. --- Analysis. --- Engineering --- Engineering materials --- Industrial materials --- Engineering design --- Manufacturing processes --- Architectural engineering --- Engineering, Architectural --- Materials, Strength of --- Resistance of materials --- Building materials --- Flexure --- Mechanics --- Testing --- Elasticity --- Graphic statics --- Strains and stresses
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