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Mechanics, Applied --- Structural analysis (Engineering) --- Elastic solids --- Mécanique appliquée --- Constructions, Théorie des --- Solides élastiques --- Périodiques. --- Elastic solids. --- Mechanics, Applied. --- Continuum mechanics --- Mechanics --- Solids --- Statics --- Architectural engineering --- Engineering, Architectural --- Structural mechanics --- Structures, Theory of --- Structural engineering --- Applied mechanics --- Engineering, Mechanical --- Engineering mathematics
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Strains and stresses --- Strains and stresses. --- Architectural engineering --- Engineering, Architectural --- Stresses and strains --- Architecture --- Elastic solids --- Flexure --- Mechanics --- Statics --- Structural analysis (Engineering) --- Deformations (Mechanics) --- Elasticity --- Engineering design --- Graphic statics --- Strength of materials --- Stress waves --- Structural design
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This book covers recent advances in the method used in testing, especially in the case of structural integrity that includes fatigue and fracture tests, vibrations test and surface engineering tests that are extremely crucial and widely used by engineers and industries. The book will provide you with information on how to apply the advanced formulation, advanced theory and advanced method of testing that are relevant to all engineering fields: mechanical, electrical, civil, materials and surface engineering. The topics are explained comprehensively, including the reliable test that one should perform in order to effectively investigate the strength and validation of the developed theory or model. I hope that the material is not too theoretical and that the reader finds the case study, formulation, testing method and the analysis helpful for tackling their own engineering and science based studies.
Strains and stresses. --- Architectural engineering --- Engineering, Architectural --- Stresses and strains --- Architecture --- Elastic solids --- Flexure --- Mechanics --- Statics --- Structural analysis (Engineering) --- Deformations (Mechanics) --- Elasticity --- Engineering design --- Graphic statics --- Strength of materials --- Stress waves --- Structural design --- Engineering Mechanics --- Engineering --- Physical Sciences --- Engineering and Technology --- Mechanical Engineering
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Currently strain engineering is the main technique used to enhance the performance of advanced silicon-based metal-oxide-semiconductor field-effect transistors (MOSFETs). Written from an engineering application standpoint, Strain-Engineered MOSFETs introduces promising strain techniques to fabricate strain-engineered MOSFETs and to methods to assess the applications of these techniques. The book provides the background and physical insight needed to understand new and future developments in the modeling and design of n- and p-MOSFETs at nanoscale. This book fo
Integrated circuits --- Metal oxide semiconductor field-effect transistors --- Strains and stresses. --- Fault tolerance. --- Reliability. --- Architectural engineering --- Engineering, Architectural --- Stresses and strains --- Architecture --- Elastic solids --- Flexure --- Mechanics --- Statics --- Structural analysis (Engineering) --- Deformations (Mechanics) --- Elasticity --- Engineering design --- Graphic statics --- Strength of materials --- Stress waves --- Structural design --- MOSFET --- Field-effect transistors --- Metal oxide semiconductors --- Fault tolerance (Engineering) --- Reliability
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Materials --- Materials science --- Manufacturing processes --- Deformations (Mechanics) --- Fracture mechanics --- Mechanics, Applied --- Mechanical properties --- Technological innovations --- Failure of solids --- Fracture of materials --- Fracture of solids --- Mechanics, Fracture --- Solids --- Industrial processing --- Manufacture --- Process engineering (Manufactures) --- Processes, Manufacturing --- Processing, Industrial --- Production processes --- Material science --- Engineering --- Engineering materials --- Industrial materials --- Fracture --- Theoretical and Applied Mechanics --- Structural Materials --- Computational Science and Engineering --- Fracture mechanics. --- Mechanics, Applied. --- Technological innovations. --- Mechanical properties. --- Applied mechanics --- Engineering, Mechanical --- Mechanical behavior of materials --- Mechanical properties of materials --- Mechanical behavior --- Engineering mathematics --- Mechanics --- Strength of materials --- Brittleness --- Penetration mechanics --- Structural failures --- Elastic solids --- Rheology --- Strains and stresses --- Industrial arts --- Production engineering --- Machine-tools --- Physical sciences --- Engineering design --- Fatigue --- experimental mechanics --- advanced materials --- materials science --- Materials Science
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