Showing posts with label Mathematics (sc). Show all posts
Showing posts with label Mathematics (sc). Show all posts

Aug 24, 2019

* Modeling of Atmospheric Chemistry

Modeling of Atmospheric Chemistry by Guy P. Brasseur (Author), Daniel J. Jacob (Author)

Mathematical modeling of atmospheric composition is a formidable scientific and computational challenge. This comprehensive presentation of the modeling methods used in atmospheric chemistry focuses on both theory and practice, from the fundamental principles behind models, through to their applications in interpreting observations.

Aug 9, 2019

453 - Applied Mathematics for Physical Chemistry

A how to do it review and learn book on advanced mathematics necessary to physical chemistry. Coordinate systems, functions and graphs, logarithms, differential calculus, integral calculus, infinite series, differential equations, scalars and vectors, matrices and determinants, operators, numerical methods and the use of the computer, and mathematical methods in the laboratory. Educators, Technicians, and other professionals using mathematics in physical chemistry.

Jul 30, 2019

Rarefied Gas Dynamics: Fundamentals for Research and Practice by Felix Sharipov

Aimed at both researchers and professionals who deal with this topic in their routine work, this introduction provides a coherent and rigorous access to the field including relevant methods for practical applications. No preceding knowledge of gas dynamics is assumed.

Jul 23, 2019

Statistical Methods in Psychiatry and Related Fields

Statistical Methods in Psychiatry and Related Fields: Longitudinal, Clustered, and Other Repeated Measures Data (Chapman & Hall/CRC Interdisciplinary Statistics) by Ralitza Gueorguieva (Author)

Data collected in psychiatry and related fields are complex because outcomes are rarely directly observed, there are multiple correlated repeated measures within individuals, there is natural heterogeneity in treatment responses and in other characteristics in the populations. Simple statistical methods do not work well with such data.

Sound Propagation through the Stochastic Ocean by John A. Colosi (Author), 1st Edition

The ocean is opaque to electromagnetic radiation and transparent to low frequency sound, so acoustical methodologies are an important tool for sensing the undersea world. Stochastic sound-speed fluctuations in the ocean, such as those caused by internal waves, result in a progressive randomisation of acoustic signals as they traverse the ocean environment. This signal randomisation imposes a limit to the effectiveness of ocean acoustic remote sensing, navigation and communication.

Strong and Superstrong Pulsed Magnetic Fields Generation

Strong and Superstrong Pulsed Magnetic Fields Generation (de Gruyter Studies in Mathematical Physics) by German A. Shneerson (Author), Mikhail I. Dolotenko (Author), Sergey I. Krivosheev (Author)

Strong pulsed magnetic fields are important for several fields in physics and engineering, such as power generation and accelerator facilities.

A Smooth and Discontinuous Oscillator

A Smooth and Discontinuous Oscillator: Theory, Methodology and Applications (Springer Tracts in Mechanical Engineering) by Qingjie Cao (Author), Alain Léger (Author)

This is the first book to introduce the irrational elliptic function series, providing a theoretical treatment for the smooth and discontinuous system and opening a new branch of applied mathematics.

Jul 22, 2019

Advanced Finite Element Technologies

Advanced Finite Element Technologies (CISM International Centre for Mechanical Sciences) by Jörg Schröder (Editor), Peter Wriggers (Editor)

The book presents an overview of the state of research of advanced finite element technologies. Besides the mathematical analysis, the finite element development and their engineering applications are shown to the reader. The authors give a survey of the methods and technologies concerning efficiency, robustness and performance aspects.

Permutation Polynomial Interleavers for Turbo Codes

Permutation Polynomial Interleavers for Turbo Codes (Signals and Communication Technology) by Lucian Trifina (Author), Daniela Tarniceriu (Author)

This book investigates the permutation polynomial (PP) based interleavers for turbo codes, including all the main theoretical and practical findings related to topics such as full coefficient conditions for PPs up to fifth; the number of all true different PPs up to fifth degree; the number of true different PPs under Zhao and Fan sufficient conditions,

Potential Game Theory: Applications in Radio Resource Allocation

Potential Game Theory: Applications in Radio Resource Allocation by Quang Duy Lã (Author), Yong Huat Chew (Author), Boon-Hee Soong (Author)

This book offers a thorough examination of potential game theory and its applications in radio resource management for wireless communications systems and networking.

Mathematical Modelling of Physical Systems

Comprehensive and thorough, this monograph emphasizes the main role differential geometry and convex analysis play in the understanding of physical, chemical, and mechanical notions. Central focus is placed on specifying the agreement between the functional framework and its physical necessity and on making clear the intrinsic character of physical elements, independent from specific charts or frames.

The Monte Carlo Ray-Trace Method in Radiation Heat Transfer and Applied Optics

The Monte Carlo Ray-Trace Method in Radiation Heat Transfer and Applied Optics (Wiley-ASME Press Series) 1st Edition by J. Robert Mahan (Author)

A groundbreaking guide dedicated exclusively to the MCRT method in radiation heat transfer and applied optics The Monte Carlo Ray-Trace Method in Radiation Heat Transfer and Applied Optics offers the most modern and up-to-date approach to radiation heat transfer modelling and performance evaluation of optical instruments.

Tensor-Valued Random Fields for Continuum Physics

Tensor-Valued Random Fields for Continuum Physics (Cambridge Monographs on Mathematical Physics) by Anatoliy Malyarenko (Author), Martin Ostoja-Starzewski (Author)

Many areas of continuum physics pose a challenge to physicists. What are the most general, admissible statistically homogeneous and isotropic tensor-valued random fields (TRFs)? Previously, only the TRFs of rank 0 were completely described. This book assembles a complete description of such fields in terms of one- and two-point correlation functions for tensors of ranks 1 through 4.

Physics Student Book Aqa Gcse 9-1 by Nick England (Author)

AQA approved. Apply and develop your students' knowledge and understanding of Physics with this textbook that builds mathematical skills, provides practical assessment guidance and supports all the required practicals.

Jul 21, 2019

Smoothed Particle Hydrodynamics

Smoothed Particle Hydrodynamics: Fundamentals and Basic Applications in Continuum Mechanics by Carlos Alberto Dutra Fraga Filho (Author)

This book is based on results obtained over a decade of study and research. It questions the use of dynamic molecular models in the continuum scale providing alternative solutions to open problems in the literature. It provides a physical-mathematical understanding of the differential equations that govern fluid flow and energy transport, serving as a reference to the application of smoothed particle hydrodynamics in continuum fluid mechanics and transport phenomena.

Superstring Theory: 25th Anniversary Edition, Volume 1

Superstring Theory: 25th Anniversary Edition (Cambridge Monographs on Mathematical Physics) (Volume 1) by Michael B. Green (Author), John H. Schwarz (Author), Edward Witten (Author)

Twenty-five years ago, Michael Green, John Schwarz, and Edward Witten wrote two volumes on string theory. Published during a period of rapid progress in this subject, these volumes were highly influential for a generation of students and researchers. Despite the immense progress that has been made in the field since then, the systematic exposition of the foundations of superstring theory presented in these volumes is just as relevant today as when first published.

Control of Turbulent and Magnetohydrodynamic Channel Flows

Control of Turbulent and Magnetohydrodynamic Channel Flows: Boundary Stabilization and State Estimation (Systems & Control: Foundations & Applications) by Rafael Vazquez (Author), Miroslav Krstic (Author)

This monograph presents new constructive design methods for boundary stabilization and boundary estimation for several classes of benchmark problems in flow control, with potential applications to turbulence control, weather forecasting, and plasma control. One of the main features of the book is a unique "backstepping" approach to parabolic partial differential equations, which yields not only the stabilization of the flow, but also the explicit solvability of the closed-loop system.

Multifractional Stochastic Fields

Multifractional Stochastic Fields: Wavelet Strategies in Multifractional Frameworks by Antoine Ayache (Author)

In spite of the fact that FBM is a very useful model, it does not always fit to real data. This is the reason why, for at least two decades, there has been an increasing interest in the construction of new classes of random models extending it, which offer more flexibility. A paradigmatic example of them is the class of Multifractional Fields. Multifractional means that fractal properties of models, typically, roughness of paths and self-similarity of probability distributions, are locally allowed to change from place to place.

Physical Perspectives on Computation, Computational Perspectives on Physics

Physical Perspectives on Computation, Computational Perspectives on Physics by Michael E. Cuffaro (Editor), Samuel C. Fletcher (Editor)

Although computation and the science of physical systems would appear to be unrelated, there are a number of ways in which computational and physical concepts can be brought together in ways that illuminate both.

Applied Nonsingular Astrodynamics

Applied Nonsingular Astrodynamics: Optimal Low-Thrust Orbit Transfer (Cambridge Aerospace Series) by Jean Albert Kéchichian (Author)

This essential book describes the mathematical formulations and subsequent computer simulations required to accurately project the trajectory of spacecraft and rockets in space, using the formalism of optimal control for minimum-time transfer in general elliptic orbit.