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Transformational Plane Geometry

Transformational Plane Geometry

Designed for a one-semester course at the junior undergraduate level Transformational Plane Geometry takes a hands-on interactive approach to teaching plane geometry. The book is self-contained defining basic concepts from linear and abstract algebra gradually as needed. The text adheres to the National Council of Teachers of Mathematics Principles and Standards for School Mathematics and the Common Core State Standards Initiative Standards for Mathematical Practice. Future teachers will acquire the skills needed to effectively apply these standards in their classrooms. Following Felix Klein’s Erlangen Program the book provides students in pure mathematics and students in teacher training programs with a concrete visual alternative to Euclid’s purely axiomatic approach to plane geometry. It enables geometrical visualization in three ways: Key concepts are motivated with exploratory activities using software specifically designed for performing geometrical constructions such as Geometer’s Sketchpad. Each concept is introduced synthetically (without coordinates) and analytically (with coordinates). Exercises include numerous geometric constructions that use a reflecting instrument such as a MIRA. After reviewing the essential principles of classical Euclidean geometry the book covers general transformations of the plane with particular attention to translations rotations reflections stretches and their compositions. The authors apply these transformations to study congruence similarity and symmetry of plane figures and to classify the isometries and similarities of the plane.

GBP 56.99
1

Plane and Geodetic Surveying

Data Plane Development Kit (DPDK) A Software Optimization Guide to the User Space-Based Network Applications

Pencils of Cubics and Algebraic Curves in the Real Projective Plane

Pencils of Cubics and Algebraic Curves in the Real Projective Plane

Pencils of Cubics and Algebraic Curves in the Real Projective Plane thoroughly examines the combinatorial configurations of n generic points in RP². Especially how it is the data describing the mutual position of each point with respect to lines and conics passing through others. The first section in this book answers questions such as can one count the combinatorial configurations up to the action of the symmetric group? How are they pairwise connected via almost generic configurations? These questions are addressed using rational cubics and pencils of cubics for n = 6 and 7. The book’s second section deals with configurations of eight points in the convex position. Both the combinatorial configurations and combinatorial pencils are classified up to the action of the dihedral group D8. Finally the third section contains plentiful applications and results around Hilbert’s sixteenth problem. The author meticulously wrote this book based upon years of research devoted to the topic. The book is particularly useful for researchers and graduate students interested in topology algebraic geometry and combinatorics. Features: Examines how the shape of pencils depends on the corresponding configurations of points Includes topology of real algebraic curves Contains numerous applications and results around Hilbert’s sixteenth problem About the Author: Séverine Fiedler-le Touzé has published several papers on this topic and has been invited to present at many conferences. She holds a Ph. D. from University Rennes1 and was a post-doc at the Mathematical Sciences Research Institute in Berkeley California.

GBP 115.00
1

Advanced Structural Mechanics

Electronic Circuit Analysis using LTSpice XVII Simulator A Practical Guide for Beginners

Concrete Structures Subjected to Impact and Blast Loadings and Their Combinations

Concrete Structures Subjected to Impact and Blast Loadings and Their Combinations

Although much research focuses on investigating the responses of reinforced concrete (RC) structures under sole impact or blast loads the responses of RC structures under a combination of impact and blast loads currently represent a gap in our knowledge. The combined actions of impact and blast loadings may be applied to RC structures during accidental or intentional collision of vessels vehicles etc. carrying explosive materials. A comprehensive study on the vulnerability of various structural members is carried out using finite element (FE) simulations under combination of impact and blast loads with the variations of various loading- and structural-related parameters and key parameters. This book introduces various structural analysis approaches for concrete structures when subjected to extreme loads such as impact and blast loadings. The theory of the combinations of impact and blast loads is proposed that can provide primary insights to the specific readers to develop new ideas in impact and blast engineering including combined actions of extreme loads arising from real-world intentional or accidental events. This book will be of value to students (undergraduate or postgraduate) engineers and researchers in structural and civil engineering and specifically those who are studying and investigating the performances of concrete structures under extreme loads. | Concrete Structures Subjected to Impact and Blast Loadings and Their Combinations

GBP 82.99
1

ANSYS Tutorial Release 2023 Structural & Thermal Analysis Using the ANSYS Mechanical APDL Release 2023 Environment

Structural Analysis Fundamentals

Structural Analysis Fundamentals

Structural Analysis Fundamentals presents fundamental procedures of structural analysis necessary for teaching undergraduate and graduate courses and structural design practice. It applies linear analysis of structures of all types including beams plane and space trusses plane and space frames plane and eccentric grids plates and shells and assemblage of finite-elements. It also treats plastic and time-dependent responses of structures to static loading as well as dynamic analysis of structures and their response to earthquakes. Geometric nonlinearity in analysis of cable nets and membranes are examined. This is an ideal text for basic and advanced material for use in undergraduate and higher courses. A companion set of computer programs assist in a thorough understanding and application of analysis procedures. The authors provide a special program for each structural system or each procedure. Unlike commercial software the user can apply any program of the set without a manual or training period. Students lecturers and engineers internationally employ the procedures presented in in this text and its companion website. Ramez B. Gayed is a Civil Engineering Consultant and Adjunct Professor at the University of Calgary. He is expert on analysis and design of concrete and steel structures. Amin Ghali is Emeritus Professor at the University of Calgary. He is consultant on major international structures. He is inventor of several reinforcing systems for concrete. He has authored over 300 papers and eight patents. His books include Concrete Structures (2012) Circular Storage Tanks and Silos (CRC Press 2014) and Structural Analysis (CRC Press 2017).

GBP 48.99
1

Spherical Geometry and Its Applications

Nonlinear Dynamics and Chaos With Applications to Physics Biology Chemistry and Engineering Second Edition

Knot Projections

An Introduction to Metamaterials and Waves in Composites

An Introduction to Metamaterials and Waves in Composites

Requiring no advanced knowledge of wave propagation An Introduction to Metamaterials and Waves in Composites focuses on theoretical aspects of metamaterials periodic composites and layered composites. The book gives novices a platform from which they can start exploring the subject in more detail. After introducing concepts related to elasticity acoustics and electrodynamics in media the text presents plane wave solutions to the equations that describe elastic acoustic and electromagnetic waves. It examines the plane wave expansion of sources as well as scattering from curved interfaces specifically spheres and cylinders. The author then covers electrodynamic acoustic and elastodynamic metamaterials. He also describes examples of transformations aspects of acoustic cloaking and applications of pentamode materials to acoustic cloaking. With a focus on periodic composites the text uses the Bloch-Floquet theorem to find the effective behavior of composites in the quasistatic limit presents the quasistatic equations of elastodynamic and electromagnetic waves and investigates Brillouin zones and band gaps in periodic structures. The final chapter discusses wave propagation in smoothly varying layered media anisotropic density of a periodic layered medium and quasistatic homogenization of laminates. This book provides a launch pad for research into elastic and acoustic metamaterials. Many of the ideas presented have yet to be realized experimentally—the book encourages readers to explore these ideas and bring them to technological maturity.

GBP 44.99
1

Mathematical Methods for Physics 45th anniversary edition

Mathematical Methods for Physics 45th anniversary edition

From classical mechanics and classical electrodynamics to modern quantum mechanics many physical phenomena are formulated in terms of similar partial differential equations while boundary conditions determine the specifics of the problem. This 45th anniversary edition of the advanced book classic Mathematical Methods for Physics demonstrates how many physics problems resolve into similar inhomogeneous partial differential equations and the mathematical techniques for solving them. The text has three parts: Part I establishes solving the homogenous Laplace and Helmholtz equations in the three main coordinate systems rectilinear cylindrical and spherical and develops the solution space for series solutions to the Sturm-Liouville equation indicial relations and the expansion of orthogonal functions including spherical harmonics and Fourier series Bessel and Spherical Bessel functions. Many examples with figures are provided including electrostatics wave guides and resonant cavities vibrations of membranes heat flow potential flow in fluids and plane and spherical waves. In Part II the inhomogeneous equations are addressed where source terms are included for Poisson's equation the wave equation and the diffusion equation. Coverage includes many examples from averaging approaches for electrostatics and magnetostatics from Green function solutions for time independent and time dependent problems and from integral equation methods. In Part III complex variable techniques are presented for solving integral equations involving Cauchy Residue theory contour methods analytic continuation and transforming the contour; for addressing dispersion relations; for revisiting special functions in the complex plane; and for transforms in the complex plane including Green’s functions and Laplace transforms. Key Features: · Mathematical Methods for Physics creates a strong solid anchor of learning and is useful for reference. · Lecture note style suitable for advanced undergraduate and graduate students to learn many techniques for solving partial differential equations with boundary conditions · Many examples across various subjects of physics in classical mechanics classical electrodynamics and quantum mechanics · Updated typesetting and layout for improved clarity This book in lecture note style with updated layout and typesetting is suitable for advanced undergraduate graduate students and as a reference for researchers. It has been edited and carefully updated by Gary Powell. | Mathematical Methods for Physics 45th anniversary edition

GBP 48.99
1

Handbook of Conformal Mappings and Applications

Medical Infrared Imaging Principles and Practices

Medical Infrared Imaging Principles and Practices

The evolution of technological advances in infrared sensor technology image processing smart algorithms knowledge-based databases and their overall system integration has resulted in new methods of research and use in medical infrared imaging. The development of infrared cameras with focal plane arrays no longer requiring cooling added a new dimension to this modality. Medical Infrared Imaging: Principles and Practices covers new ideas concepts and technologies along with historical background and clinical applications. The book begins by exploring worldwide advances in the medical applications of thermal imaging systems. It covers technology and hardware including detectors detector materials un-cooled focal plane arrays high performance systems camera characterization electronics for on-chip image processing optics and cost-reduction designs. It then discusses the physiological basis of the thermal signature and its interpretation in a medical setting. The book also covers novel and emerging techniques the complexities and importance of protocols for effective and reproducible results storage and retrieval of thermal images and ethical obligations. Of interest to both the medical and biomedical engineering communities the book explores many opportunities for developing and conducting multidisciplinary research in many areas of medical infrared imaging. These range from clinical quantification to intelligent image processing for enhancement of the interpretation of images and for further development of user-friendly high-resolution thermal cameras. These would enable the wide use of infrared imaging as a viable noninvasive low-cost first-line detection modality. | Medical Infrared Imaging Principles and Practices

GBP 56.99
1

Ultrasonic Nondestructive Testing of Materials Theoretical Foundations

Ultrasonic Nondestructive Testing of Materials Theoretical Foundations

Ultrasonic Nondestructive Testing of Materials: Theoretical Foundations explores the mathematical foundations and emerging applications of this testing process which is based on elastic wave propagation in isotropic and anisotropic solids. In covering ultrasonic nondestructive testing methods the book emphasizes the engineering point of view yet it relies on the physics and mathematics aspects involved in elastic wave propagation theory. As a result this resource becomes a missing link in the literature by combining coverage of the theoretical aspects of testing and providing intuitive assessments of numerous standard problems to illustrate fundamental assertions. Content includes a brief description of the theory of acoustic and electromagnetic fields to underline the similarities and differences as compared to elastodynamics. It also covers vector algebra and analysis elastic plane and Rayleigh surface waves and ultrasonic beams as well as transducer radiation inverse scattering and ultrasonic nondestructive imaging. Includes numerical computations to explain wave propagation phenomena and compare results of analytical formulations Although ultrasonic nondestructive testing can often be roughly understood in terms of plane waves and beams this book addresses the key issues of transducer radiation and defect scattering and imaging respectively. The authors physically formulate point source synthesis and in mathematical terms they use representation integrals with Green functions always including intuitive interpretations with mathematical evaluations. Replacing cumbersome index notation with a coordinate-free version this reference offers step-by-step documentation of relevant tensorial elastodynamic cases involving isotropic and anisotropic materials. It provides all necessary mathematical tools readers require to understand the mathematical and physical basis for ultrasonic nondestructive testing. | Ultrasonic Nondestructive Testing of Materials Theoretical Foundations

GBP 94.99
1

Infrared Detectors

Infrared Detectors

Completely revised and reorganized while retaining the approachable style of the first edition Infrared Detectors Second Edition addresses the latest developments in the science and technology of infrared (IR) detection. Antoni Rogalski an internationally recognized pioneer in the field covers the comprehensive range of subjects necessary to understand modern IR detector theory and technology. He presents each topic with a brief summary of historical background followed by summary of principles underlying performance an overview of properties and analysis of the state of the art. Divided into four sections the book covers fundaments of IR detection IR thermal detectors IR photon detectors and focal plane arrays. It begins with a tutorial introduction to essential of different types of IR detectors and systems. The author explores the theory and technology of different thermal detectors and then moves on to the theory and technology of photon detectors. He concludes his treatment with a discussion of IR focal plane arrays where relations between performance of detector array and infrared system quality are considered. New to the Second Edition:Fundamentals of IR detection radiometry and flux-transfer issues needed for IR detector and system analysisMajor achievements and trends in the development of IR detectors Novel uncooled detectors such as cantilever antenna and optically coupled detectorsType II superlattice detectorsQuantum dot IR detectorsTerahertz (THz) arrays and new generation of IR detectors so-called third generation detectorsThe author accomplishes the difficult task of making the information accessible to a wide readership. A comprehensive analysis of the latest developments in IR detector technology and basic insight into the fundamental processes important to evolving detection techniques the book provides the most complete and up-to-date resource of its kind including a summary of useful data guide to the literature and overview of applications.

GBP 44.99
1

International Family Therapy A Guide for Multilateral Systemic Practice in Mental Health and Psychosocial Support

Modelling with Ordinary Differential Equations

3D Origami Art

Signal Processing A Mathematical Approach Second Edition

Signal Processing A Mathematical Approach Second Edition

Signal Processing: A Mathematical Approach is designed to show how many of the mathematical tools the reader knows can be used to understand and employ signal processing techniques in an applied environment. Assuming an advanced undergraduate- or graduate-level understanding of mathematics—including familiarity with Fourier series matrices probability and statistics—this Second Edition: Contains new chapters on convolution and the vector DFT plane-wave propagation and the BLUE and Kalman filtersExpands the material on Fourier analysis to three new chapters to provide additional background informationPresents real-world examples of applications that demonstrate how mathematics is used in remote sensingFeaturing problems for use in the classroom or practice Signal Processing: A Mathematical Approach Second Edition covers topics such as Fourier series and transforms in one and several variables; applications to acoustic and electro-magnetic propagation models transmission and emission tomography and image reconstruction; sampling and the limited data problem; matrix methods singular value decomposition and data compression; optimization techniques in signal and image reconstruction from projections; autocorrelations and power spectra; high-resolution methods; detection and optimal filtering; and eigenvector-based methods for array processing and statistical filtering time-frequency analysis and wavelets. | Signal Processing A Mathematical Approach Second Edition

GBP 44.99
1

Electricity and Magnetism

Developing a Data Warehouse for the Healthcare Enterprise Lessons from the Trenches Third Edition

A Key for Identification of Rock-Forming Minerals in Thin Section