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The legal system is awash with excessive and incomprehensible information. Yet many of us assume that the unrelenting torrent of information pouring into various legal programs is both inevitable and unstoppable. We have become complacent; but it does not have to be this way. Incomprehensible! argues that surrendering to incomprehensibility is a bad mistake. Drawing together evidence from diverse fields such as consumer protection, financial regulation, patents, chemical control, and administrative and legislative processes, this book identifies a number of important legal programs that are built on the foundational assumption that 'more information is better'. Each of these legal processes have been designed in ways that ignore the imperative of meaningful communication. To rectify this systemic problem, the law must be re-designed to pay careful attention to the problem of incomprehensibility.
This Element describes child sexual abuse and the formal organizations in which it can occur, reviews extant perspectives on child abuse, and explains how an organization theory approach can advance understanding of this phenomenon. It then elaborates the main paths through which organizational structures can influence child sexual abuse in organizations and analyze how these structures operate through these paths to impact the perpetration, detection, and response to abuse. The analysis is illustrated throughout with reports of child sexual abuse published in a variety of sources. The Element concludes with a brief discussion of the policy implications of this analysis.
A straightforward, enjoyable guide to the mathematics of Einstein's relativity To really understand Einstein's theory of relativity – one of the cornerstones of modern physics – you have to get to grips with the underlying mathematics. This self-study guide is aimed at the general reader who is motivated to tackle that not insignificant challenge. With a user-friendly style, clear step-by-step mathematical derivations, many fully solved problems and numerous diagrams, this book provides a comprehensive introduction to a fascinating but complex subject. For those with minimal mathematical background, the first chapter gives a crash course in foundation mathematics. The reader is then taken gently by the hand and guided through a wide range of fundamental topics, including Newtonian mechanics; the Lorentz transformations; tensor calculus; the Einstein field equations; the Schwarzschild solution (which gives a good approximation of the spacetime of our Solar System); simple black holes, relativistic cosmology and gravitational waves. Special relativity helps explain a huge range of non-gravitational physical phenomena and has some strangely counter-intuitive consequences. These include time dilation, length contraction, the relativity of simultaneity, mass-energy equivalence and an absolute speed limit. General relativity, the leading theory of gravity, is at the heart of our understanding of cosmology and black holes. "I must observe that the theory of relativity resembles a building consisting of two separate stories, the special theory and the general theory. The special theory, on which the general theory rests, applies to all physical phenomena with the exception of gravitation; the general theory provides the law of gravitation and its relations tothe other forces of nature." – Albert Einstein, 1919 Understand even the basics of Einstein's amazing theory and the world will never seem the same again. Contents: Preface Introduction 1 Foundation mathematics 2 Newtonian mechanics 3 Special relativity 4 Introducing the manifold 5 Scalars, vectors, one-forms and tensors 6 More on curvature 7 General relativity 8 The Newtonian limit 9 The Schwarzschild metric 10 Schwarzschild black holes 11 Cosmology 12 Gravitational waves Appendix: The Riemann curvature tensor Bibliography Acknowledgements January 2019. This third edition has been revised to make the material even more accessible to the enthusiastic general reader who seeks to understand the mathematics of relativity.
Understanding Reading revolutionized reading research and theory when the first edition appeared in 1971 and continues to be a leader in the field. In the sixth edition of this classic text, Smith's purpose remains the same: to shed light on fundamental aspects of the complex human act of reading--linguistic, physiological, psychological, and social--and on what is involved in learning to read. The text critically examines current theories, instructional practices, and controversies, covering a wide range of disciplines but always remaining accessible to students and classroom teachers. Careful attention is given to the ideological clash that continues between whole language and direct instruction and currently permeates every aspect of theory and research into reading and reading instruction. To aid readers in making up their own minds, each chapter concludes with a brief statement of "Issues." Understanding Reading: A Psycholinguistic Analysis of Reading and Learning to Read, Sixth Edition is designed to serve as a handbook for language arts teachers, a college text for basic courses on the psychology of reading, a guide to relevant research on reading, and an introduction to reading as an aspect of thinking and learning. It is matchless in integrating a wide range of topics relative to reading while, at the same time, being highly readable and user-friendly for instructors, students, and practitioners.
By neglecting the ‘human’ factor in the process of research analysis, much has been lost and researchers are now looking for new ways to broaden the social reality in their research. In this volume, originally published in 1993, the research perspective adopted shows new methods of dealing with the world of education, including ethnographic studies and action research. The ‘voices’ offer a critical insight into both the scientific rationale and the methodological application of their individual approaches. This book provides a rich source of material for students and researchers doing qualitative analysis.
In "Overcomplicated," complexity scientist Samuel Arbesman offers a fresh, insightful field guide to living with complex technologies that defy human comprehension. As technology grows more complex, Arbesman argues, its behavior mimics the vagaries of the natural world more than it conforms to a mathematical model. If we are to survive and thrive in this new age, we must abandon our need for governing principles and rules and accept the chaos. By embracing and observing the freak accidents and flukes that disrupt our lives, we can gain valuable clues about how our algorithms really work. What's more, we will become better thinkers, scientists, and innovators as a result.