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Reinforced concrete construction --- Structural frames --- Structural stability --- Construction en béton armé --- Charpentes --- Constructions --- Stabilité --- Reinforced concrete construction. --- Structural frames. --- Structural stability. --- Construction en béton armé --- Stabilité
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Shells (Engineering) --- Coques (Ingénierie) --- Shells (Engineering). --- Coques (Ingénierie)
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Fluid mechanics --- Solid state physics --- General biophysics --- Engineering sciences. Technology --- materie (fysica) --- biofysica --- BIT (biochemische ingenieurstechnieken) --- ingenieurswetenschappen --- fysica --- moleculaire biologie --- vloeistoffen
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Steel, Structural --- Structural frames --- Acier de construction --- Charpentes
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Interfaces (Physical sciences) --- Fluid dynamics. --- Surface chemistry. --- Interfaces (Sciences physiques) --- Fluides, Dynamique des --- Chimie des surfaces --- Fluid dynamics --- Surface chemistry --- #KVIV:BB --- Chemistry, Surface --- Interfaces, Chemistry of --- Surface phenomena --- Surfaces (Chemistry) --- Chemistry, Physical and theoretical --- Capillarity --- Surface energy --- Surface tension --- Surfaces (Physics) --- Dynamics --- Fluid mechanics
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Interfaces (Physical sciences) --- Fluid dynamics. --- Stability. --- Transport theory. --- Interfaces (Sciences physiques) --- Fluides, Dynamique des --- Stabilité --- Transport, Théorie du
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This book presents a set of essays on interfacial instability, essays that are linked by a common question and a common focus: the question of the stability of a liquid jet and a focus on the surface tension acting at the interface between two phases. The discussion is analytic rather than numerical. The first two essays provide the necessary background; the remaining seven essays lead logically from these to the treatment of a series of applications, including inviscid and viscous fluids, the effects of rotation and the stability of freezing and melting fronts. The discussion is, for the most part, limited to problems that can be solved analytically, and thus to linear problems. The techniques used to analyze the problems can, however, be generalized to nonlinear problems and numerical methods. Intended for graduate students and researchers in fluid mechanics, the treatment assumes some knowledge of fluid mechanics. Students whose research problems involve multi-phase flows will find the concepts in this manuscript to be helpful in describing boundary conditions for their formulations.
Surface tension. --- Jets --- Stability. --- Interfaces (Physical sciences) --- Fluid dynamics. --- Hydraulic engineering. --- Engineering. --- Mathematics. --- Engineering Fluid Dynamics. --- Engineering, general. --- Classical and Continuum Physics. --- Applications of Mathematics. --- Fluid mechanics. --- Continuum physics. --- Applied mathematics. --- Engineering mathematics. --- Engineering --- Engineering analysis --- Mathematical analysis --- Classical field theory --- Continuum physics --- Physics --- Continuum mechanics --- Construction --- Industrial arts --- Technology --- Hydromechanics --- Mathematics --- Field theory (Physics)
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Given the enormous interest in surface phenomena in areas ranging from materials science to applications in life science, this volume is a very timely addition to the literature. Emphasis is on surfactants mediating interfacial and molecular aggregation phenomena, and the following topics are reviewed in particular: dissolution rates, equilibrium adsorption, mixing rules, and spreading on a solid surface of surfactants, as well as the role of surfactants in mediating a range of processes, such as the fabrication of various nanomaterials. Written and edited by leading experts, this volume is dedicated to Professor Dinesh O. Shah, one of the pioneers in this field.
Fluid mechanics --- Solid state physics --- General biophysics --- Engineering sciences. Technology --- materie (fysica) --- biofysica --- BIT (biochemische ingenieurstechnieken) --- ingenieurswetenschappen --- fysica --- moleculaire biologie --- vloeistoffen
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