Flanagan Dawn P. Essentials of Specific Learning Disability Identification

Flanagan Dawn P. Essentials of Specific Learning Disability Identification

Complete coverage on how SLD manifests in academic performance Expert advice on theory- and research-based approaches to SLD identification Conveniently formatted for rapid reference Quickly acquire the knowledge and skills you need to accurately identify specific learning disabilities Essentials of Specific Learning Disability Identification provides a brief overview examining the definitions and classification systems of—and methods for—identification of specific learning disabilities (SLDs). Focusing on descriptive efforts of the manifestations of SLDs in the academically critical areas of reading, writing, math, oral expression, and listening comprehension, this book features contributions by leading experts in the field, including Virginia Berninger, Steven Feifer, Jack Fletcher, Nancy Mather, Jack Naglieri, and more. Like all the volumes in the Essentials of Psychological Assessment series, each concise chapter features numerous callout boxes highlighting key concepts, bulleted points, and extensive illustrative material, as well as test questions that help you gauge and reinforce your grasp of the information covered. With multiple perspectives spanning several different theoretical orientations and offering various approaches to SLD identification that can be put into practice right away—from RTI methods to cognitive strengths and weaknesses approaches—this book offers important content for professionals who work with children and youth at risk for learning disabilities. With a Foreword by Cecil Reynolds, Essentials of Specific Learning Disability Identification presents rich and up-to-date information on models and methods of SLD identification.

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Valentine Tim Forensic Facial Identification. Theory and Practice of Identification from Eyewitnesses, Composites and CCTV

Valentine Tim Forensic Facial Identification. Theory and Practice of Identification from Eyewitnesses, Composites and CCTV

Forensic Facial Identification discusses the latest scientific and technical advancements in the field and their implications for practice in psychology, criminology, and law. Provides an up-to-date set of best practices for forensic facial identification Reviews current procedures for different facial identification methods and their reliability Covers eyewitness testimony, line-ups, facial composites, anthropological face reconstructions, CCTV images, and computerized automatic face recognition systems Incorporates case studies which put the latest research and technology in the proper legal context

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Kalibr RE-900/R Multifunctional woodworking tool electric tool Carpenters hand-held planer

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Kalibr MSHU-125/1200M Angle Grinder Electric Metal Cutting Tool Small Hand Held Red Power Tool High Quality

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DEKO TZ53 Household Tool Set Auto Repair Mixed Tool Combination Package Hand Tool Kit with Plastic Toolbox Storage Case 53 Pcs

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Schoukens Johan System Identification. A Frequency Domain Approach

Schoukens Johan System Identification. A Frequency Domain Approach

System identification is a general term used to describe mathematical tools and algorithms that build dynamical models from measured data. Used for prediction, control, physical interpretation, and the designing of any electrical systems, they are vital in the fields of electrical, mechanical, civil, and chemical engineering. Focusing mainly on frequency domain techniques, System Identification: A Frequency Domain Approach, Second Edition also studies in detail the similarities and differences with the classical time domain approach. It high??lights many of the important steps in the identification process, points out the possible pitfalls to the reader, and illustrates the powerful tools that are available. Readers of this Second Editon will benefit from: MATLAB software support for identifying multivariable systems that is freely available at the website http://booksupport.wiley.com State-of-the-art system identification methods for both time and frequency domain data New chapters on non-parametric and parametric transfer function modeling using (non-)period excitations Numerous examples and figures that facilitate the learning process A simple writing style that allows the reader to learn more about the theo??retical aspects of the proofs and algorithms Unlike other books in this field, System Identification, Second Edition is ideal for practicing engineers, scientists, researchers, and both master's and PhD students in electrical, mechanical, civil, and chemical engineering.

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Sondipon Adhikari Structural Dynamic Analysis with Generalized Damping Models. Identification

Sondipon Adhikari Structural Dynamic Analysis with Generalized Damping Models. Identification

Since Lord Rayleigh introduced the idea of viscous damping in his classic work «The Theory of Sound» in 1877, it has become standard practice to use this approach in dynamics, covering a wide range of applications from aerospace to civil engineering. However, in the majority of practical cases this approach is adopted more for mathematical convenience than for modeling the physics of vibration damping. Over the past decade, extensive research has been undertaken on more general “non-viscous” damping models and vibration of non-viscously damped systems. This book, along with a related book Structural Dynamic Analysis with Generalized Damping Models: Analysis, is the first comprehensive study to cover vibration problems with general non-viscous damping. The author draws on his considerable research experience to produce a text covering: parametric senistivity of damped systems; identification of viscous damping; identification of non-viscous damping; and some tools for the quanitification of damping. The book is written from a vibration theory standpoint, with numerous worked examples which are relevant across a wide range of mechanical, aerospace and structural engineering applications. Contents 1. Parametric Sensitivity of Damped Systems. 2. Identification of Viscous Damping. 3. Identification of Non-viscous Damping. 4. Quantification of Damping. About the Authors Sondipon Adhikari is Chair Professor of Aerospace Engineering at Swansea University, Wales. His wide-ranging and multi-disciplinary research interests include uncertainty quantification in computational mechanics, bio- and nanomechanics, dynamics of complex systems, inverse problems for linear and nonlinear dynamics, and renewable energy. He is a technical reviewer of 97 international journals, 18 conferences and 13 funding bodies.He has written over 180 refereed journal papers, 120 refereed conference papers and has authored or co-authored 15 book chapters.

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Masich A. U.S. Dollars: Genuibe or Counterfeit? A Practical Guide for Identification of Banknotes

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GOOD HAND Калейдоскоп (21a-led )с подсветкой.

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