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Now in an updated second edition, this classroom-tested textbook describes essential concepts in vibration analysis of mechanical systems.The second edition includes a new chapter on finite element modeling and an updated section on dynamic vibration absorbers, as well as new student exercises in each chapter. It incorporates the required mathematics, experimental techniques, fundamentals of modal analysis, and beam theory into a unified framework that is written to be accessible to undergraduate students, researchers, and practicing engineers. To unify the various concepts, a single experimental platform is used throughout the text to provide experimental data and evaluation. Engineering drawings for the platform are included in an appendix. Additionally, MATLAB programming solutions are integrated into the content throughout the text.The book is ideal for undergraduate students, researchers, and practicing engineers who are interested in developing a more thorough understanding of essential concepts in vibration analysis of mechanical systems. Presents a clear connection between continuous beam models and finite degree of freedom models; Includes MATLAB code to support numerical examples that are integrated into the text narrative; Uses mathematics to support vibrations theory and emphasizes the practical significance of the results.
Mechanical properties of solids --- Applied physical engineering --- patroonherkenning --- toegepaste mechanica --- mechanica --- optica
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Mechanical properties of solids --- Materials sciences --- Materials --- Fracture mechanics --- Matériaux --- Mécanique de la rupture --- Fatigue --- Periodicals --- Périodiques --- Engineering --- Mathematical Sciences --- Civil Engineering --- General and Others --- Geometry
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Composite materials --- Composite construction --- Mechanical properties --- Composite construction. --- Mechanical properties. --- Beams, Composite --- Building, Composite --- Composite beams --- Composite building --- Composite girders --- Girders, Composite --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Building, Iron and steel --- Concrete construction --- Concrete slabs --- Materials --- Mechanics. --- Materials Engineering. --- Engineering --- Material Science and Metallurgy --- Civil Engineering --- General and Others --- Materials Science
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Cells --- Transport Vesicles. --- Cell mechanics --- Cellular mechanics --- Biomechanics --- Endocytic Vesicles --- Endocytic Vesicle --- Transport Vesicle --- Vesicle, Endocytic --- Vesicle, Transport --- Vesicles, Endocytic --- Vesicles, Transport --- Vesicular Transport Proteins --- Mechanical properties. --- Histology. Cytology --- immunology --- neurobiology --- stem cells --- signal transduction --- membrane trafficking
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Chemistry --- Engineering --- Chemical Engineering --- Civil Engineering --- High temperatures --- Materials at high temperatures --- Hautes températures --- Matériaux à hautes températures --- Periodicals --- Périodiques --- Mechanical properties of solids --- Materials sciences
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Histology. Cytology --- Genetics --- Genes --- Cell division --- Molecular biology --- Cytology --- Cytogenetics --- Molecular genetics --- Biomechanics --- Cells --- Gènes --- Cellules --- Biologie moléculaire --- Cytologie --- Cytogénétique --- Génétique moléculaire --- Biomécanique --- Periodicals --- Périodiques --- Division --- Cell Division. --- Cells. --- Gene Expression. --- Gene Rearrangement. --- Genes. --- Molecular Biology. --- Signal Transduction. --- Biomechanics. --- Cytogenetics. --- Cytology. --- Molecular biology. --- Molecular genetics. --- Biologie moléculaire. --- Cytologie. --- Mechanical properties --- Mechanical properties. --- Engineering --- Biotechnology --- Immunology --- General and Others --- Health Sciences --- Life Sciences --- Biology --- Engineering. --- General and Others. --- Health Sciences. --- Life Sciences. --- moleculaire biologie
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Mechanical properties of solids --- Materials sciences --- Building design --- Strains and stresses --- Contraintes (Mécanique) --- Measurement --- Periodicals --- Mesure --- Périodiques --- Contrainte mécanique. --- Résistance des matériaux. --- Essai technique. --- Measurement. --- Engineering --- Mechanical Engineering --- General and Others --- Material Science and Metallurgy --- Civil Engineering --- Engineering. --- General and Others. --- Material Science and Metallurgy. --- Contraintes (Mécanique) --- Périodiques --- EBSCOASP-E EJINGEN EJPHYSI EPUB-ALPHA-S EPUB-PER-FT WILEY-E
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Composite materials --- Composite construction --- Mechanical properties --- Beams, Composite --- Building, Composite --- Composite beams --- Composite building --- Composite girders --- Girders, Composite --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Engineering --- Material Science and Metallurgy --- Physics --- Architecture --- Civil Engineering --- Mechanical Engineering --- Metrology --- Composites --- Mechanics --- Building, Iron and steel --- Concrete construction --- Concrete slabs --- Materials --- composieten
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Mechanical properties of solids --- Philosophy --- Condensed matter --- Solid state physics --- Matière condensée --- Physique de l'état solide --- Periodicals --- Périodiques --- Matière condensée --- Physique de l'état solide --- Vaste stoffen. --- Roosterfouten. --- Mechanische eigenschappen. --- #TS:WNAT --- Chemistry --- Physical Chemistry --- General and Others --- Applied Physics --- Condensed Matter Physics --- Mechanics. --- Material Science and Metallurgy --- Physics --- Mechanics --- Chemistry. --- Material Science and Metallurgy. --- Physics. --- Périodiques --- EBSCOASP-E EPUB-ALPHA-P EPUB-PER-FT --- Journal
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