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Solving Practical Engineering Mechanics Problems: Statics, Sayavur I. Bakhtiyarov


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Автор: Sayavur I. Bakhtiyarov
Название:  Solving Practical Engineering Mechanics Problems: Statics
ISBN: 9781681731889
Издательство: Mare Nostrum (Eurospan)
Классификация:


ISBN-10: 1681731886
Обложка/Формат: Paperback
Страницы: 125
Вес: 0.33 кг.
Дата издания: 30.10.2017
Серия: Synthesis lectures on mechanical engineering
Язык: English
Размер: 279 x 216 x 7
Читательская аудитория: General (us: trade)
Ключевые слова: Classical mechanics,Technology: general issues,Mechanical engineering, SCIENCE / Mechanics / General,TECHNOLOGY & ENGINEERING / General,TECHNOLOGY & ENGINEERING / Mechanical
Подзаголовок: Statics
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Поставляется из: Англии
Описание: Part of a four-book series designed to supplement the engineering mechanics courses. This first book contains seven topics in statics, the branch of mechanics concerned with the analysis of forces acting on construction systems without an acceleration (a state of the static equilibrium). The book is targeted at undergraduate students majoring in science and engineering.

Theory and Computation in Hydrodynamic Stability

Автор: W. O. Criminale, T. L. Jackson, R. D. Joslin
Название: Theory and Computation in Hydrodynamic Stability
ISBN: 1108475337 ISBN-13(EAN): 9781108475334
Издательство: Cambridge Academ
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Цена: 111930.00 T
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Описание: Covering both classical and modern techniques for the stability of fluid motion, this second edition is enriched with many exercises with solutions, illustrations and an extensive bibliography. The result is a book that can be used with courses on hydrodynamic stability or as an authoritative reference for researchers.

Optimal Structural Design: Contact Problems and High-Speed Penetration

Автор: Nikolay V. Banichuk, Svetlana Yu. Ivanova
Название: Optimal Structural Design: Contact Problems and High-Speed Penetration
ISBN: 3110530805 ISBN-13(EAN): 9783110530803
Издательство: Walter de Gruyter
Цена: 123910.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание:

This monograph studies optimization problems for rigid punches in elastic media and for high-speed penetration of rigid strikers into deformed elastoplastic, concrete, and composite media using variational calculations, tools from functional analysis, and stochastic and min-max (guaranteed) optimization approaches with incomplete data. The book presents analytical and numerical results developed by the authors during the last ten years.

Contents
Part I: Quasi-statics of contact interaction
Optimal contact pressure and optimal punch shape
Influence of forces applied outside contact region
Shape optimization of punch moving with friction
Optimization in contact problems under incomplete data
Application of probabilistic data
Minimization of material wear
Multiobjective optimization of contact pressure, wear of material, and energy dissipation

Part II: High-speed penetration into deformable medium
Optimization of impactor shape
Strikers of nonaxisymmetric optimal shape
Multiobjective optimization of rigid shell
Optimization of truncated rotating strikers
Penetration into solid medium under strength constraints
Some problems of global multipurpose structural optimization
Analytical and numerical estimations of optimal parameters of layered slab
Striker shape optimization using condition of minimal ballistic limit velocity for layered slabs

Part III: Appendices
Nonadditive functionals and extremum conditions
Multivariant estimation of functionals and their sensitivity
Basic ideas of multicriteria optimization
Evolutionary algorithm of global optimization


Engineering Mechanics - Statics 8e SI Version

Автор: Meriam
Название: Engineering Mechanics - Statics 8e SI Version
ISBN: 1119044677 ISBN-13(EAN): 9781119044673
Издательство: Wiley
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Цена: 50680.00 T
Наличие на складе: Поставка под заказ.
Описание: Known for its accuracy, clarity, and dependability, Meriam, Kraige, and Bolton`s Engineering Mechanics: Statics, 8th Edition has provided a solid foundation of mechanics principles for more than 60 years.

Think Before You Compute: A Prelude to Computational Fluid Dynamics

Автор: E. J. Hinch
Название: Think Before You Compute: A Prelude to Computational Fluid Dynamics
ISBN: 1108479545 ISBN-13(EAN): 9781108479547
Издательство: Cambridge Academ
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Цена: 122460.00 T
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Описание: This guide to computational fluid mechanics is for any beginning graduate student who is thinking of computing a flow. The text starts with a quick introduction to enable students to solve numerically a simple problem by a simple method, before detailing all the key essentials and discussing optional advanced topics.

Think Before You Compute: A Prelude to Computational Fluid Dynamics

Автор: E. J. Hinch
Название: Think Before You Compute: A Prelude to Computational Fluid Dynamics
ISBN: 1108789994 ISBN-13(EAN): 9781108789998
Издательство: Cambridge Academ
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Цена: 40130.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: This guide to computational fluid mechanics is for any beginning graduate student who is thinking of computing a flow. The text starts with a quick introduction to enable students to solve numerically a simple problem by a simple method, before detailing all the key essentials and discussing optional advanced topics.

Waves and Mean Flows

Автор: B?hler
Название: Waves and Mean Flows
ISBN: 1107669669 ISBN-13(EAN): 9781107669666
Издательство: Cambridge Academ
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Цена: 35910.00 T
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Описание: A modern account of the nonlinear interactions between waves and mean flows such as shear flows and vortices. It can be used as a fundamental reference, a course text, or by geophysicists and physicists needing an introduction to this important area. This revised edition now also includes exercises.

Nonlinear Waves: Theory, Computer Simulation, Experiment

Автор: M.D. Todorov
Название: Nonlinear Waves: Theory, Computer Simulation, Experiment
ISBN: 1643270443 ISBN-13(EAN): 9781643270449
Издательство: Mare Nostrum (Eurospan)
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Цена: 76690.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The Boussinesq equation is the first model of surface waves in shallow water that considers the nonlinearity and the dispersion and their interaction as a reason for wave stability known as the Boussinesq paradigm. This balance bears solitary waves that behave like quasi-particles. At present, there are some Boussinesq-like equations. The prevalent part of the known analytical and numerical solutions, however, relates to the 1d case while for multidimensional cases, almost nothing is known so far. An exclusion is the solutions of the Kadomtsev-Petviashvili equation. The difficulties originate from the lack of known analytic initial conditions and the nonintegrability in the multidimensional case. Another problem is which kind of nonlinearity will keep the temporal stability of localized solutions.The system of coupled nonlinear Schroedinger equations known as well as the vector Schroedinger equation is a soliton supporting dynamical system. It is considered as a model of light propagation in Kerr isotropic media. Along with that, the phenomenology of the equation opens a prospect of investigating the quasi-particle behavior of the interacting solitons. The initial polarization of the vector Schroedinger equation and its evolution evolves from the vector nature of the model. The existence of exact (analytical) solutions usually is rendered to simpler models, while for the vector Schroedinger equation such solutions are not known. This determines the role of the numerical schemes and approaches. The vector Schroedinger equation is a spring-board for combining the reduced integrability and conservation laws in a discrete level.The experimental observation and measurement of ultrashort pulses in waveguides is a hard job and this is the reason and stimulus to create mathematical models for computer simulations, as well as reliable algorithms for treating the governing equations. Along with the nonintegrability, one more problem appears here - the multidimensionality and necessity to split and linearize the operators in the appropriate way.

Relativistic Classical Mechanics and Electrodynamics

Автор: Martin Land, Lawrence P. Horwitz
Название: Relativistic Classical Mechanics and Electrodynamics
ISBN: 1681737086 ISBN-13(EAN): 9781681737089
Издательство: Mare Nostrum (Eurospan)
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Цена: 66530.00 T
Наличие на складе: Невозможна поставка.
Описание: Presents classical relativistic mechanics and electrodynamics in the Feynman-Stueckelberg event-oriented framework formalized by Horwitz and Piron. The full apparatus of classical analytical mechanics is generalized to relativistic form by replacing Galilean covariance with manifest Lorentz covariance.

Engineering Dynamics

Автор: Cho W.S. To
Название: Engineering Dynamics
ISBN: 1681733722 ISBN-13(EAN): 9781681733722
Издательство: Mare Nostrum (Eurospan)
Рейтинг:
Цена: 97950.00 T
Наличие на складе: Невозможна поставка.
Описание: Engineering Dynamics is an introductory textbook covering the kinematics and dynamics of particles, systems of particles, and kinematics and dynamics of rigid bodies. It has been developed from lecture notes given by the author since 1982. It includes sufficient topics normally covered in a single-semester three credit hour course taken by sophomores in an undergraduate degree program majoring in various engineering disciplines.The primary focus of the book is on kinematics and dynamics of particles, kinematics and dynamics of systems of particles, and kinematics and dynamics of rigid bodies in two- and three-dimensional spaces. It aims at providing a short book, relative to many available in literature, but with detailed solutions to representative examples. Exercise questions are included.

Nonlinear Waves: Theory, Computer Simulation, Experiment

Автор: M.D. Todorov
Название: Nonlinear Waves: Theory, Computer Simulation, Experiment
ISBN: 1643270486 ISBN-13(EAN): 9781643270487
Издательство: Mare Nostrum (Eurospan)
Рейтинг:
Цена: 97950.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: The Boussinesq equation is the first model of surface waves in shallow water that considers the nonlinearity and the dispersion and their interaction as a reason for wave stability known as the Boussinesq paradigm. This balance bears solitary waves that behave like quasi-particles. At present, there are some Boussinesq-like equations. The prevalent part of the known analytical and numerical solutions, however, relates to the 1d case while for multidimensional cases, almost nothing is known so far. An exclusion is the solutions of the Kadomtsev-Petviashvili equation. The difficulties originate from the lack of known analytic initial conditions and the nonintegrability in the multidimensional case. Another problem is which kind of nonlinearity will keep the temporal stability of localized solutions.The system of coupled nonlinear Schroedinger equations known as well as the vector Schroedinger equation is a soliton supporting dynamical system. It is considered as a model of light propagation in Kerr isotropic media. Along with that, the phenomenology of the equation opens a prospect of investigating the quasi-particle behavior of the interacting solitons. The initial polarization of the vector Schroedinger equation and its evolution evolves from the vector nature of the model. The existence of exact (analytical) solutions usually is rendered to simpler models, while for the vector Schroedinger equation such solutions are not known. This determines the role of the numerical schemes and approaches. The vector Schroedinger equation is a spring-board for combining the reduced integrability and conservation laws in a discrete level.The experimental observation and measurement of ultrashort pulses in waveguides is a hard job and this is the reason and stimulus to create mathematical models for computer simulations, as well as reliable algorithms for treating the governing equations. Along with the nonintegrability, one more problem appears here - the multidimensionality and necessity to split and linearize the operators in the appropriate way.

Lattice Boltzmann Modeling of Complex Flows for Engineering Applications

Автор: Andrea Montessori, Giacomo Falcucci
Название: Lattice Boltzmann Modeling of Complex Flows for Engineering Applications
ISBN: 1681746735 ISBN-13(EAN): 9781681746739
Издательство: Mare Nostrum (Eurospan)
Рейтинг:
Цена: 50820.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Nature continuously presents a huge number of complex and multi-scale phenomena, which in many cases, involve the presence of one or more fluids flowing, merging and evolving around us. Since its appearance on the surface of Earth, Mankind has tried to exploit and tame fluids for their purposes, probably starting with Hero's machinery to open the doors of the Temple of Serapis in Alexandria to arrive to modern propulsion systems and actuators. Today we know that fluid mechanics lies at the basis of countless scientific and technical applications from the smallest physical scales (nanofluidics, bacterial motility, and diffusive flows in porous media), to the largest (from energy production in power plants to oceanography and meteorology). It is essential to deepen the understanding of fluid behaviour across scales for the progress of Mankind and for a more sustainable and efficient future.Since the very first years of the Third Millennium, the Lattice Boltzmann Method (LBM) has seen an exponential growth of applications, especially in the fields connected with the simulation of complex and soft matter flows. LBM, in fact, has shown a remarkable versatility in different fields of applications from nanoactive materials, free surface flows, and multiphase and reactive flows to the simulation of the processes inside engines and fluid machinery. LBM is based on an optimized formulation of Boltzmann's Kinetic Equation, which allows for the simulation of fluid particles, or rather quasi-particles, from a mesoscopic point of view thus allowing the inclusion of more fundamental physical interactions in respect to the standard schemes adopted with Navier-Stokes solvers, based on the continuum assumption.In this book, the authors present the most recent advances of the application of the LBM to complex flow phenomena of scientific and technical interest with particular focus on the multi-scale modeling of heterogeneous catalysis within nano-porous media and multiphase, multicomponent flows.

Lattice Boltzmann Modeling of Complex Flows for Engineering Applications

Автор: Andrea Montessori, Giacomo Falcucci
Название: Lattice Boltzmann Modeling of Complex Flows for Engineering Applications
ISBN: 168174936X ISBN-13(EAN): 9781681749365
Издательство: Mare Nostrum (Eurospan)
Рейтинг:
Цена: 71150.00 T
Наличие на складе: Есть у поставщика Поставка под заказ.
Описание: Nature continuously presents a huge number of complex and multi-scale phenomena, which in many cases, involve the presence of one or more fluids flowing, merging and evolving around us. Since its appearance on the surface of Earth, Mankind has tried to exploit and tame fluids for their purposes, probably starting with Hero's machinery to open the doors of the Temple of Serapis in Alexandria to arrive to modern propulsion systems and actuators. Today we know that fluid mechanics lies at the basis of countless scientific and technical applications from the smallest physical scales (nanofluidics, bacterial motility, and diffusive flows in porous media), to the largest (from energy production in power plants to oceanography and meteorology). It is essential to deepen the understanding of fluid behaviour across scales for the progress of Mankind and for a more sustainable and efficient future.Since the very first years of the Third Millennium, the Lattice Boltzmann Method (LBM) has seen an exponential growth of applications, especially in the fields connected with the simulation of complex and soft matter flows. LBM, in fact, has shown a remarkable versatility in different fields of applications from nanoactive materials, free surface flows, and multiphase and reactive flows to the simulation of the processes inside engines and fluid machinery. LBM is based on an optimized formulation of Boltzmann's Kinetic Equation, which allows for the simulation of fluid particles, or rather quasi-particles, from a mesoscopic point of view thus allowing the inclusion of more fundamental physical interactions in respect to the standard schemes adopted with Navier-Stokes solvers, based on the continuum assumption.In this book, the authors present the most recent advances of the application of the LBM to complex flow phenomena of scientific and technical interest with particular focus on the multi-scale modeling of heterogeneous catalysis within nano-porous media and multiphase, multicomponent flows.


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