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Books > Science & Mathematics > Physics > Thermodynamics & statistical physics

Microstates, Entropy and Quanta - An Introduction to Statistical Mechanics (Hardcover, 1st ed. 2018): Don Koks Microstates, Entropy and Quanta - An Introduction to Statistical Mechanics (Hardcover, 1st ed. 2018)
Don Koks
R2,527 Discovery Miles 25 270 Ships in 18 - 22 working days

Statistical mechanics: the bane of many a physics student, and traditionally viewed as a long parade of ensembles, partition functions, and partial derivatives. But the subject needn't be arcane. When pared back to its underlying concepts and built from the ground up, statistical mechanics takes on a charm of its own, and sheds light on all manner of physical phenomena. This book presents a straightforward introduction to the key concepts in statistical mechanics, following the popular style of the author's highly successful textbook "Explorations in Mathematical Physics". Offering a clear, conceptual approach to the subject matter, the book presents a treatment that is mathematically complete, while remaining very accessible to undergraduates. It commences by asking: why does an ink drop spread out in a bathtub of water? This showcases the importance of counting configurations, which leads naturally to ideas of microstates, energy, entropy, thermodynamics, and physical chemistry. With this foundation, the Boltzmann distribution writes itself in its fullest form, and this opens the door to the Maxwell distribution and related areas of thermal conductivity and viscosity. Quantum ideas then appear: bosons via Einstein's and Debye's theories of heat capacity, and fermions via electrical conduction and low-temperature heat capacity of metals. The text ends with a detailed derivation of blackbody radiation, and uses this to discuss the greenhouse effect, lasers, and cosmology. Suitable for use with core undergraduate courses in statistical mechanics and thermodynamics, this book concentrates on using solid mathematics, while avoiding cumbersome notation. All the necessary mathematical steps are included in the body of the text and in the worked examples. Reviews of Explorations in Mathematical Physics by Don Koks, 2006 "With enjoyable and sometimes surprising excursions along the way, the journey provides a fresh look at many familiar topics, as it takes us from basic linear mathematics to general relativity... look forward to having your geometric intuition nourished and expanded by the author's intelligent commentaries." (Eugen Merzbacher, University of North Carolina) "... an interesting supplement to standard texts for teaching mathematical methods in physics, as it will add alternative views that could serve as additional material." (S. Marcelja, Australian Journal of Physics) "... a tour through the main ideas forming the language of modern mathematical physics ...it is a difficult task for the author to decide what is a good balance between the topics and their presentation, but in this case it has been achieved. ...for those physicists who would like to be exposed to clear motivation and careful explanation of the basics of the present-day apparatus of mathematical physics." (Ivailo Mladenov, Mathematical Reviews).

Statistical Thermodynamics - Understanding the Properties of Macroscopic Systems (Paperback): Lukong Cornelius Fai, Gary... Statistical Thermodynamics - Understanding the Properties of Macroscopic Systems (Paperback)
Lukong Cornelius Fai, Gary Matthew Wysin
R2,017 Discovery Miles 20 170 Ships in 10 - 15 working days

Statistical thermodynamics and the related domains of statistical physics and quantum mechanics are very important in many fields of research, including plasmas, rarefied gas dynamics, nuclear systems, lasers, semiconductors, superconductivity, ortho- and para-hydrogen, liquid helium, and so on. Statistical Thermodynamics: Understanding the Properties of Macroscopic Systems provides a detailed overview of how to apply statistical principles to obtain the physical and thermodynamic properties of macroscopic systems. Intended for physics, chemistry, and other science students at the graduate level, the book starts with fundamental principles of statistical physics, before diving into thermodynamics. Going further than many advanced textbooks, it includes Bose-Einstein, Fermi-Dirac statistics, and Lattice dynamics as well as applications in polaron theory, electronic gas in a magnetic field, thermodynamics of dielectrics, and magnetic materials in a magnetic field. The book concludes with an examination of statistical thermodynamics using functional integration and Feynman path integrals, and includes a wide range of problems with solutions that explain the theory.

The Thermophysics of Porous Media (Paperback): T.J.T. Spanos The Thermophysics of Porous Media (Paperback)
T.J.T. Spanos
R2,031 Discovery Miles 20 310 Ships in 10 - 15 working days

Models for the mechanical behavior of porous media introduced more than 50 years ago are still relied upon today, but more recent work shows that, in some cases, they may violate the laws of thermodynamics. In The Thermophysics of Porous Media, the author shows that physical consistency requires a unique description of dynamic processes that involve porous media, and that new dynamic variables-porosity, saturation, and megascale concentration-naturally enter into the large-scale description of porous media. The new degrees of freedom revealed in this study predict new dynamic processes that are not associated with compressional motions. The book details the construction of a Lorentz invariant thermodynamic lattice gas model and shows how the associated nonrelativistic, Galilean invariant model can be used to describe flow in porous media. The author develops the equations of seismic wave propagation in porous media, the associated boundary conditions, and surface waves. He also constructs the equations for both immiscible and miscible flows in porous media and their related instability problems. The implications of the physical theory presented in this book are significant, particularly in applications in geophysics and the petroleum industry. The Thermophysics of Porous Media offers a unique opportunity to examine the dynamic role that porosity plays in porous materials.

Origin of Temporal (t > 0) Universe - Connecting with Relativity, Entropy, Communication, and Quantum Mechanics (Hardcover):... Origin of Temporal (t > 0) Universe - Connecting with Relativity, Entropy, Communication, and Quantum Mechanics (Hardcover)
Thomas N. Corns
R5,054 Discovery Miles 50 540 Ships in 10 - 15 working days

The essence of temporal universe creation is that any analytical solution has to comply with the boundary condition of our universe; dimensionality and causality constraints. The essence of this book is to show that everything has a price within our temporal (t > 0) universe; energy and time. In mathematics, every postulation needs proof; there exists a solution before searching for the solution. Yet science does not have seem to have a criterion as mathematics does; to prove first that a postulated science exists within our temporal universe. Without such a criterion, fictitious science emerges, as already have been happening in every day's event. In this book, the author has shown there exists a criterion for a postulated science whether or not it is existed within our universe. The author started this book from Einstein's relativity to the creation of our temporal universe. He has shown that every subspace within our universe is created by energy and time, in which subspace and time are coexisted. The important aspect is that every science has to satisfy the boundary condition of our universe; causality and dimensionality. Following up with temporal universe, the author has shown a profound relationship with the second law of thermodynamics. He examines the relationship between entropy with science as well as communication with quantum limited subspace throughout the book. The author discusses the paradox of Schroedinger's Cat (which has been debated by Einstein, Bohr, Schroedinger and many others since 1935) that triggered his discovering that Schroedinger's quantum mechanics is a timeless machine, in which he has disproved the fundamental principle of superposition within our universe. Since quantum mechanics is a virtual mathematics, he has shown that a temporal quantum machine can, in principle, be built on the top of a temporal platform. This book is intended for cosmologists, particle physicists, astrophysicists, quantum physicists, computer scientists, engineers, professors and students as a reference and research-oriented book.

Crowd Dynamics, Volume 1 - Theory, Models, and Safety Problems (Hardcover, 1st ed. 2018): Livio Gibelli, Nicola Bellomo Crowd Dynamics, Volume 1 - Theory, Models, and Safety Problems (Hardcover, 1st ed. 2018)
Livio Gibelli, Nicola Bellomo
R3,996 Discovery Miles 39 960 Ships in 10 - 15 working days

This volume explores the complex problems that arise in the modeling and simulation of crowd dynamics in order to present the state-of-the-art of this emerging field and contribute to future research activities. Experts in various areas apply their unique perspectives to specific aspects of crowd dynamics, covering the topic from multiple angles. These include a demonstration of how virtual reality may solve dilemmas in collecting empirical data; a detailed study on pedestrian movement in smoke-filled environments; a presentation of one-dimensional conservation laws with point constraints on the flux; a collection of new ideas on the modeling of crowd dynamics at the microscopic scale; and others. Applied mathematicians interested in crowd dynamics, pedestrian movement, traffic flow modeling, urban planning, and other topics will find this volume a valuable resource. Additionally, researchers in social psychology, architecture, and engineering may find this information relevant to their work.

Information Loss in Deterministic Signal Processing Systems (Hardcover, 1st ed. 2018): Bernhard C. Geiger, Gernot Kubin Information Loss in Deterministic Signal Processing Systems (Hardcover, 1st ed. 2018)
Bernhard C. Geiger, Gernot Kubin
R3,236 Discovery Miles 32 360 Ships in 18 - 22 working days

This book introduces readers to essential tools for the measurement and analysis of information loss in signal processing systems. Employing a new information-theoretic systems theory, the book analyzes various systems in the signal processing engineer's toolbox: polynomials, quantizers, rectifiers, linear filters with and without quantization effects, principal components analysis, multirate systems, etc. The user benefit of signal processing is further highlighted with the concept of relevant information loss. Signal or data processing operates on the physical representation of information so that users can easily access and extract that information. However, a fundamental theorem in information theory-data processing inequality-states that deterministic processing always involves information loss. These measures form the basis of a new information-theoretic systems theory, which complements the currently prevailing approaches based on second-order statistics, such as the mean-squared error or error energy. This theory not only provides a deeper understanding but also extends the design space for the applied engineer with a wide range of methods rooted in information theory, adding to existing methods based on energy or quadratic representations.

Statistical Mechanics: Lecture notes (Hardcover, Revised Ed): Konstantin K. Likharev Statistical Mechanics: Lecture notes (Hardcover, Revised Ed)
Konstantin K. Likharev
R2,727 Discovery Miles 27 270 Ships in 10 - 15 working days
Safety of Sodium-Cooled Fast Reactors - Particle-Bed-Related Phenomena in Severe Accidents (Hardcover, 1st ed. 2021): Songbai... Safety of Sodium-Cooled Fast Reactors - Particle-Bed-Related Phenomena in Severe Accidents (Hardcover, 1st ed. 2021)
Songbai Cheng, Ruicong Xu
R4,045 Discovery Miles 40 450 Ships in 18 - 22 working days

This book highlights the advances and trends in the safety analysis of sodium-cooled fast reactors, especially from the perspective of particle bed-related phenomena during core disruptive accidents. A sodium-cooled fast reactor (SFR) is an optimized candidate of the next-generation nuclear reactor systems. Its safety is a critical issue during its R&D process. The book elaborates on research progresses in particle bed-related phenomena in terms of the molten-pool mobility, the molten-pool sloshing motion, the debris bed formation behavior, and the debris bed self-leveling behavior. The book serves as a good reference for researchers, professionals, and postgraduate students interested in sodium-cooled fast reactors. Knowledge provided is also useful for those who are engaging in severe accident analysis for lead-cooled fast reactors and light water reactors.

Thermal Management of Electronics, Volume II - Phase Change Material-Based Composite Heat Sinks-An Experimental Approach... Thermal Management of Electronics, Volume II - Phase Change Material-Based Composite Heat Sinks-An Experimental Approach (Paperback)
Rajesh Baby, C. Balaji
R1,040 R869 Discovery Miles 8 690 Save R171 (16%) Ships in 18 - 22 working days
Thermal Management of Electronics, Volume I - Phase Change Material-Based Composite Heat Sinks-An Experimental Approach... Thermal Management of Electronics, Volume I - Phase Change Material-Based Composite Heat Sinks-An Experimental Approach (Paperback)
Rajesh Baby, C. Balaji
R1,042 R871 Discovery Miles 8 710 Save R171 (16%) Ships in 18 - 22 working days
Phonon Raman Scattering in Semiconductors, Quantum Wells and Superlattices - Basic Results and Applications (Hardcover, 1998... Phonon Raman Scattering in Semiconductors, Quantum Wells and Superlattices - Basic Results and Applications (Hardcover, 1998 ed.)
Tobias Ruf
R4,031 Discovery Miles 40 310 Ships in 18 - 22 working days

This book presents recent results of basic research in the field of Raman scattering by optic and acoustic phonons in semiconductors, quantum wells and superlattices. It also describes various new applications for analytical materials research which have emerged alongside with scientific progress. Trends in Raman techniques and instrumentation and their implications for future developments are illustrated.

My Journey with Shock Waves (Hardcover, 1st ed. 2022): Yasuyuki Horie My Journey with Shock Waves (Hardcover, 1st ed. 2022)
Yasuyuki Horie
R3,333 Discovery Miles 33 330 Ships in 18 - 22 working days

This book compiles historical notes and a review of the work of the author and his associates on shock compression of condensed matter (SCCM). The work includes such topics as foundational aspects of SCCM, thermodynamics, thermodynamics of defects, and plasticity as they relate to shock compression, shock-induced phase transition, and shock compaction. Also included are synthesis of refractory and hard ceramic compounds such as Ni aluminides, SiC and diamonds, method of characteristics, discrete element methods, the shock compression process at the grain scale, and modeling shock-to-detonation transition in high explosives. The book tells the story of how the author's view of shock physics came to be where it is now. and analytically discusses how the author's appreciation of shock waves has evolved in time. It offers a personal but pedagogical perspective on SCCM for young scientists and engineers who are starting their careers in the field. For experts it offers materials to nudge them reflect on their own stories, with the hope of planting a seed of motivation to write them down to be published.

Extended Non-Equilibrium Thermodynamics - From Principles to Applications in Nanosystems (Hardcover): Hatim Machrafi Extended Non-Equilibrium Thermodynamics - From Principles to Applications in Nanosystems (Hardcover)
Hatim Machrafi
R4,496 Discovery Miles 44 960 Ships in 10 - 15 working days

Extended Non-Equilibrium Thermodynamics provides powerful tools departing not from empirical or statistical considerations but from fundamental thermodynamic laws, proposing final solutions that are readily usable and recognizable for students, researchers and industry. The book deals with methods that allow combining easily the present theory with other fields of science, such as fluid and solid mechanics, heat and mass transfer processes, electricity and thermoelectricity, and so on. Not only are such combinations facilitated, but they are incorporated into the developments in such a way that they become part of the theory. This book aims at providing for a systematic presentation of Extended Non-Equilibrium Thermodynamics in nanosystems with a high degree of applicability. Furthermore, the book deals with how physical properties of systems behave as a function of their size. Moreover, it provides for a systematic approach to understand the behavior of thermal, electrical, thermoelectric, photovoltaic and nanofluid properties in nanosystems. Experimental results are used to validate the theory, the comparison is analysed, justified and discussed, and the theory is then again used to understand better experimental observations. The new developments in this book, being recognizable in relation with familiar concepts, should make it appealing for academics and researchers to teach and apply and graduate students to use. The text in this book is intended to bring attention to how the theory can be applied to real-life applications in nanoscaled environments. Case studies, and applications of theories, are explored including thereby nanoporous systems, solar panels, nanomedicine drug permeation and properties of nanoporous scaffolds. Explores new generalized thermodynamic models Provides introductory context of Extended Non-Equilibrium Thermodynamics within classical thermodynamics, theoretical fundamentals and several applications in nanosystems Provides for a systematic approach to understand the behavior of thermal, electric, thermoelectric and viscous properties as a function of several parameters in nanosystems Includes reflections to encourage the reader to think further and put the information into context Examines future developments of new constitutive equations and theories and places them in the framework of real-life applications in the energetic and medical sectors, such as photovoltaic and thermoelectric devices, nanoporous media, drug delivery and scaffolds

Developments in Mathematical and Experimental Physics, v. B - Statistical Physics and Beyond (Hardcover): Alfredo Macias,... Developments in Mathematical and Experimental Physics, v. B - Statistical Physics and Beyond (Hardcover)
Alfredo Macias, Francisco Uribe, Enrique Diaz
R2,452 Discovery Miles 24 520 Ships in 18 - 22 working days

The first part is devoted to colloidal particles and stochastic dynamics, mainly concerned with recent authoritative results in the study of interactions between colloidal particles and transport properties in colloids and ferrocolloids. Recent advances in non-equilibrium statistical physics, such as stochastic resonance, Brownian motors, ratchets and noise-induced transport are also reported. The second part deals with biological systems and polymers. Here, standard simulation methodology to treat diffusional dynamics of multi-protein systems and proton transport in macromolecules is presented. Results of nervous system, spectroscopy of biological membrane models, and Monte Carlo simulations of polymers chains are also discussed. The third part is concerned with granular materials and quantum systems, in particular an effective-medium theory for a random system is reported. Additionally, a comprehensive treatment of spin and charge order in the vortex lattice of the cuprates, both theoretical and experimental, is included. Thermodynamics analogies between Bose-Einstein condensation and black-body radiation are also presented. The last part of the book contains recent developments of certain topics of liquid crystals and molecular fluids, including nonequilibrium thermal light scattering from nematic liquid crystals, relaxation in the kinetic Ising model on the periodic in homogeneous chain, models for thermotropic liquid-crystals, thermodynamic properties of fluids with discrete potentials as well as of fluids determined from the speed of sound effective potentials, and second viral coefficient for polar fluids.

Competitive Physics: Thermodynamics, Electromagnetism And Relativity (Hardcover): Jinhui Wang, Bernard Ricardo Widjaja Competitive Physics: Thermodynamics, Electromagnetism And Relativity (Hardcover)
Jinhui Wang, Bernard Ricardo Widjaja
R2,936 Discovery Miles 29 360 Ships in 18 - 22 working days

Written by a former Olympiad student, Wang Jinhui, and a Physics Olympiad national trainer, Bernard Ricardo, Competitive Physics delves into the art of solving challenging physics puzzles. This book not only expounds a multitude of physics topics from the basics but also illustrates how these theories can be applied to problems, often in an elegant fashion. With worked examples that depict various problem-solving sleights of hand and interesting exercises to enhance the mastery of such techniques, readers will hopefully be able to develop their own insights and be better prepared for physics competitions. Ultimately, problem-solving is a craft that requires much intuition. Yet this intuition, perhaps, can only be honed by trudging through an arduous but fulfilling journey of enigmas.This is the second part of a two-volume series and will mainly analyze thermodynamics, electromagnetism and special relativity. A brief overview of geometrical optics is also included.

Statistical Thermodynamics and Properties of Matter (Hardcover): L. Couture, R. Zitoun Statistical Thermodynamics and Properties of Matter (Hardcover)
L. Couture, R. Zitoun
R7,208 Discovery Miles 72 080 Ships in 18 - 22 working days

Statistical Thermodynamics and Properties of Matter is written with the advanced undergraduate and graduate student in mind. Its aim is to familiarize the student with the approach that a physicist would take, for example, when tackling problems related to quantum mechanics or thermodynamics.

Organic Computing (Hardcover, 2008 ed.): Rolf P. Wurtz Organic Computing (Hardcover, 2008 ed.)
Rolf P. Wurtz
R4,070 Discovery Miles 40 700 Ships in 18 - 22 working days

In this book, the major ideas behind Organic Computing are delineated, together with a sparse sample of computational projects undertaken in this new field. Biological metaphors include evolution, neural networks, gene-regulatory networks, networks of brain modules, hormone system, insect swarms, and ant colonies. Applications are as diverse as system design, optimization, artificial growth, task allocation, clustering, routing, face recognition, and sign language understanding.

Fractional Dynamics In Comb-like Structures (Hardcover): Alexander Iomin, Vicenc Mendez, Werner Horsthemke Fractional Dynamics In Comb-like Structures (Hardcover)
Alexander Iomin, Vicenc Mendez, Werner Horsthemke
R2,370 Discovery Miles 23 700 Ships in 18 - 22 working days

Random walks often provide the underlying mesoscopic mechanism for transport phenomena in physics, chemistry and biology. In particular, anomalous transport in branched structures has attracted considerable attention. Combs are simple caricatures of various types of natural branched structures that belong to the category of loopless graphs. The comb model was introduced to understand anomalous transport in percolation clusters. Comb-like models have been widely adopted to describe kinetic processes in various experimental applications in medical physics and biophysics, chemistry of polymers, semiconductors, and many other interdisciplinary applications.The authors present a random walk description of the transport in specific comb geometries, ranging from simple random walks on comb structures, which provide a geometrical explanation of anomalous diffusion, to more complex types of random walks, such as non-Markovian continuous-time random walks. The simplicity of comb models allows to perform a rigorous analysis and to obtain exact analytical results for various types of random walks and reaction-transport processes.

Synthesis, Structure and Properties of Poly(lactic acid) (Hardcover, 1st ed. 2018): Maria Laura Di Lorenzo, Rene Androsch Synthesis, Structure and Properties of Poly(lactic acid) (Hardcover, 1st ed. 2018)
Maria Laura Di Lorenzo, Rene Androsch
R8,072 Discovery Miles 80 720 Ships in 18 - 22 working days

The series Advances in Polymer Science presents critical reviews of the present and future trends in polymer and biopolymer science. It covers all areas of research in polymer and biopolymer science including chemistry, physical chemistry, physics, material science.The thematic volumes are addressed to scientists, whether at universities or in industry, who wish to keep abreast of the important advances in the covered topics.Advances in Polymer Science enjoys a longstanding tradition and good reputation in its community. Each volume is dedicated to a current topic, and each review critically surveys one aspect of that topic, to place it within the context of the volume. The volumes typically summarize the significant developments of the last 5 to 10 years and discuss them critically, presenting selected examples, explaining and illustrating the important principles, and bringing together many important references of primary literature. On that basis, future research directions in the area can be discussed. Advances in Polymer Science volumes thus are important references for every polymer scientist, as well as for other scientists interested in polymer science - as an introduction to a neighboring field, or as a compilation of detailed information for the specialist.Review articles for the individual volumes are invited by the volume editors. Single contributions can be specially commissioned.Readership: Polymer scientists, or scientists in related fields interested in polymer and biopolymer science, at universities or in industry, graduate students

Principles of Statistical Physics and Numerical Modeling (Hardcover): Valeriy A Ryabov Principles of Statistical Physics and Numerical Modeling (Hardcover)
Valeriy A Ryabov
R2,710 Discovery Miles 27 100 Ships in 10 - 15 working days
Differential Scanning Calorimetry (Hardcover, 2nd rev. a. enlarged ed. 2003): Gunther Hoehne, Wolfgang F. Hemminger, H.-J... Differential Scanning Calorimetry (Hardcover, 2nd rev. a. enlarged ed. 2003)
Gunther Hoehne, Wolfgang F. Hemminger, H.-J Flammersheim
R8,243 Discovery Miles 82 430 Ships in 10 - 15 working days

In this updated and fully revised second edition, the authors provide the newcomer and the experienced practitioner with a balanced and comprehensive insight into all important methods and aspects of Differential Scanning Calorimetry (DSC), including a sound presentation of the theoretical basis of DSC thermal analysis and temperature-modulated DSC (TMDCS). Emphasis is placed on modern evaluation techniques, instrumentation, the underlying measurement principles, metrologically correct calibrations, factors influencing the measurement process, and on the exact interpretation of the results. The information enables the research scientist, the analyst and experienced laboratory staff to choose the most suitable equipment, to apply DSC methods successfully, to interpret the measurement curve, and thus to measure key properties precisely. In addition, the new edition includes improved instrumental techniques such as Tzerotm and StepScantm, new evaluation techniques, more applications, and the latest references.

Statistical Physics of Dense Plasmas - Elementary Processes and Phase Transitions (Paperback): Setsuo Ichimaru Statistical Physics of Dense Plasmas - Elementary Processes and Phase Transitions (Paperback)
Setsuo Ichimaru
R2,336 Discovery Miles 23 360 Ships in 10 - 15 working days

This authoritative text offers a complete overview on the statistical mechanics and electrodynamics of physical processes in dense plasma systems. The author emphasizes laboratory-based experiments and astrophysical observations of plasma phenomena, elucidated through the fundamentals. The coverage encompasses relevant condensed matter physics, atomic physics, nuclear physics, and astrophysics, including such key topics as phase transitions, transport, optical and nuclear processes. This essential resource also addresses exciting, cutting edge topics in the field, including metallic hydrogen, stellar and planetary magnetisms, pycnonuclear reactions, and gravitational waves. Scientists, researchers, and students in plasma physics, condensed matter physics, materials science, atomic physics, nuclear physics, and astrophysics will benefit from this work. Setsuo Ichimaru is a distinguished professor at the University of Tokyo, and has been a visiting member at The Institute for Advanced Study in Princeton, New Jersey, at the University of California, San Diego (UCSD), the Institute for Theoretical Physics at Johannes Kepler University, and the Max Planck Institute for Quantum Optics. He is a recipient of the Subramanyan Chandrasekhar Prize of Plasma Physics from the Association of Asia-Pacific Physical Societies and the Humboldt Research Award from the Alexander von Humboldt Foundation.

Communication-Protocol-Based Filtering and Control of Networked Systems (Hardcover, 1st ed. 2022): Lei Zou, Zidong Wang,... Communication-Protocol-Based Filtering and Control of Networked Systems (Hardcover, 1st ed. 2022)
Lei Zou, Zidong Wang, Jinling Liang
R3,665 Discovery Miles 36 650 Ships in 10 - 15 working days

Communication-Protocol-Based Filtering and Control of Networked Systems is a self-contained treatment of the state of the art in communication-protocol-based filtering and control; recent advances in networked systems; and the potential for application in sensor networks. This book provides new concepts, new models and new methodologies with practical significance in control engineering and signal processing. The book first establishes signal-transmission models subject to different communication protocols and then develops new filter design techniques based on those models and preset requirements for filtering performance. The authors then extend this work to finite-horizon H-infinity control, ultimately bounded control and finite-horizon consensus control. The focus throughout is on three typical communications protocols: the round-robin, random-access and try-once-and-discard protocols, and the systems studied are drawn from a variety of classes, among them nonlinear systems, time-delayed and time-varying systems, multi-agent systems and complex networks. Readers are shown the latest techniques-recursive linear matrix inequalities, backward recursive difference equations, stochastic analysis and mapping methods. The unified framework for communication-protocol-based filtering and control for different networked systems established in the book will be of interest to academic researchers and practicing engineers working with communications and other signal-processing systems. Senior undergraduate and graduate students looking to increase their knowledge of current methods in control and signal processing of networked systems will also find this book valuable.

Statistical Physics of Dense Plasmas - Elementary Processes and Phase Transitions (Hardcover): Setsuo Ichimaru Statistical Physics of Dense Plasmas - Elementary Processes and Phase Transitions (Hardcover)
Setsuo Ichimaru
R5,482 Discovery Miles 54 820 Ships in 10 - 15 working days

This authoritative text offers a complete overview on the statistical mechanics and electrodynamics of physical processes in dense plasma systems. The author emphasizes laboratory-based experiments and astrophysical observations of plasma phenomena, elucidated through the fundamentals. The coverage encompasses relevant condensed matter physics, atomic physics, nuclear physics, and astrophysics, including such key topics as phase transitions, transport, optical and nuclear processes. This essential resource also addresses exciting, cutting edge topics in the field, including metallic hydrogen, stellar and planetary magnetisms, pycnonuclear reactions, and gravitational waves. Scientists, researchers, and students in plasma physics, condensed matter physics, materials science, atomic physics, nuclear physics, and astrophysics will benefit from this work. Setsuo Ichimaru is a distinguished professor at the University of Tokyo, and has been a visiting member at The Institute for Advanced Study in Princeton, New Jersey, at the University of California, San Diego (UCSD), the Institute for Theoretical Physics at Johannes Kepler University, and the Max Planck Institute for Quantum Optics. He is a recipient of the Subramanyan Chandrasekhar Prize of Plasma Physics from the Association of Asia-Pacific Physical Societies and the Humboldt Research Award from the Alexander von Humboldt Foundation.

Entropy Beyond the Second Law - Thermodynamics and statistical mechanics for equilibrium, non-equilibrium, classical, and... Entropy Beyond the Second Law - Thermodynamics and statistical mechanics for equilibrium, non-equilibrium, classical, and quantum systems (Hardcover)
Phil Attard
R2,740 Discovery Miles 27 400 Ships in 10 - 15 working days
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