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Phase change memory --- Chalcogenides. --- Phase change memory. --- C-RAM (Chalcogenide RAM) --- Chalcogenide RAM --- Chalcogenide random access memory --- Memory, Ovonic unified --- Memory, Phase change --- Ovonic unified memory --- PCM memory --- PCME (Phase change memory) --- PCRAM (Phase change RAM) --- Phase change RAM --- Phase change random access memory --- PRAM (Phase change RAM) --- Unified memory, Ovonic --- Random access memory --- Semiconductor storage devices --- Research
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Histology. Cytology --- Molecular biology --- Cells --- Chromosomes --- Cellules --- Periodicals --- Périodiques --- Cell division --- Cell Division. --- Cell division. --- physiology. --- Biology. --- Division of cells --- Cell Division Phase --- Cell Divisions --- M Phase --- Division Phase, Cell --- Division, Cell --- Divisions, Cell --- M Phases --- Phase, Cell Division --- Phase, M --- Phases, M --- Cell proliferation --- Cleavage Stage, Ovum --- moleculaire biologie --- Cytology --- Divisió cel·lular.
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Condensed matter --- Matière condensée --- Periodicals. --- Périodiques --- Condensed matter. --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Matter --- Solids --- Condensed Matter Physics. --- Atomic Physics
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This book is an introduction to a comprehensive and unified dynamic transition theory for dissipative systems and to applications of the theory to a range of problems in the nonlinear sciences. The main objectives of this book are to introduce a general principle of dynamic transitions for dissipative systems, to establish a systematic dynamic transition theory, and to explore the physical implications of applications of the theory to a range of problems in the nonlinear sciences. The basic philosophy of the theory is to search for a complete set of transition states, and the general principle states that dynamic transitions of all dissipative systems can be classified into three categories: continuous, catastrophic and random. The audience for this book includes advanced graduate students and researchers in mathematics and physics as well as in other related fields.
Partial differential equations --- Differential equations --- Mathematics --- Fluid mechanics --- vloeistofstroming --- differentiaalvergelijkingen --- aerodynamica --- wiskunde --- Phase transformations (Statistical physics)
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The eigenvalue densities in various matrix models in quantum chromodynamics (QCD) are ultimately unified in this book by a unified model derived from the integrable systems. Many new density models and free energy functions are consequently solved and presented. The phase transition models including critical phenomena with fractional power-law for the discontinuities of the free energies in the matrix models are systematically classified by means of a clear and rigorous mathematical demonstration. The methods here will stimulate new research directions such as the important Seiberg-Witten differential in Seiberg-Witten theory for solving the mass gap problem in quantum Yang-Mills theory. The formulations and results will benefit researchers and students in the fields of phase transitions, integrable systems, matrix models and Seiberg-Witten theory.
Mathematics --- Algebraic geometry --- Mathematical physics --- functies (wiskunde) --- wiskunde --- fysica --- Phase transformations (Statistical physics) --- Statistical physics.
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This book conducts a systematic study on internal flow characteristics and performance of centrifugal pump for solid–liquid mixed transportation. First, the applicability of the computational model for two-phase flow is analyzed. Then the relationship between the two-phase flow characteristics and wall wear in the pipeline is revealed. And the flow characteristics in centrifugal pumps are analyzed in relation to conveying performance and wall wear. Finally, the engineering application calculation of the mixed transportation pump with different impeller structures is carried out. The target audience of this book is researchers who perform calculations and engineering applications of solid–liquid two-phase pumps. This book considers the influence of the particle size on the force magnitude of the particles and analyzes the applicability of different solid–liquid two-phase calculation models. Considering the different motion trajectories of particles colliding with dry wall, wet wall, stationary wall, and moving wall, visual experiments are used to study the collision rebound model of different walls. The collision rebound model is applied to the numerical simulation of solid–liquid mixed transport.
Fluid mechanics --- Production management --- productie --- ingenieurswetenschappen --- vloeistoffen --- Centrifugal pumps. --- Two-phase flow.
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Human histology. Human cytology --- Cell Division --- Cell division --- Cell cycle --- Eukaryotic cells --- Cellules --- Cycle cellulaire --- Cellules eucaryotes --- Periodicals. --- Periodicals --- Division --- Périodiques --- Cell Division. --- Cell division. --- Division of cells --- Cell Division Phase --- Cell Divisions --- M Phase --- Division Phase, Cell --- Division, Cell --- Divisions, Cell --- M Phases --- Phase, Cell Division --- Phase, M --- Phases, M --- cell cycle control --- cancer biology --- cell growth --- Cell proliferation --- Cleavage Stage, Ovum --- Biology. --- Histology. Cytology --- Oncology. Neoplasms --- Cytology --- Divisió cel·lular
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Industrial economics --- Chemistry --- Chromatography, Liquid --- Chromatography, Gas --- Liquid chromatography --- Gas chromatography --- Chromatographie en phase liquide --- Chromatographie en phase gazeuse --- Periodicals. --- Périodiques --- Chemie. --- Health Sciences --- Life Sciences --- Analytical Chemistry --- Applied Chemistry --- Biochemistry --- General and Others --- Diagnostics --- Micro and Molecular Biology
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physics of solid --- liquid and amorphous systems --- phase equilibria and phase transitions --- soft matter --- computer simulations --- Physics --- Condensed Matter Physics --- General and Others --- Magnetism --- Mechanics --- Particle Physics --- Thermodynamics and Heat Transfer
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