Based on extensive research, The Tidal Model charts the development of this model of care, outlining its theoretical basis and including clinical examples to show the benefits of encouraging the client's greater involvement in their treatment.
Pioneering Theories in Nursing traces the origins of nursing theories through their founders. Unlike other nursing theory texts, this book provides the personal story on some of the greatest nursing leaders, clinicians and theorists to date so the reader can understand the context within which the nursing pioneer developed their theory. It will attempt to explain the theories and practice of nursing and provide food for thought for students and practitioners, encouraging reflective thinking. Each section begins with an overview of the chapters and identifies common themes. Designed to be highly user-friendly, each chapter follows a standard structure with a short biography, a summary on their special interests and an outline of their writings before each theory is examined in detail. The chapter then looks at instances of how this theory has been put into practice and what influence this process has had on the wider nursing community. Further links to other theorists are provided as well as key dates in the life of the theorists and a brief profile.
The concept of "the craft of caring" dictates that the basis of good nursing practice is a combination of both art and science, encouraging nurses to take a holistic approach to the practice of psychiatric and mental health nursing. Supported by relevant theory, research, policy, and philosophy, this volume reflects current developments in nursing practice and the understanding of mental health disorders. The book includes case studies of patients with anxiety, schizophrenia, and bipolar disorder as well as victims of sexual abuse, those with an eating disorder, homeless patients, and those with dementia and autism.
This book presents selected articles from the International Conference on Asian and Pacific Coasts (APAC 2019), an event intended to promote academic and technical exchange on coastal related studies, including coastal engineering and coastal environmental problems, among Asian and Pacific countries/regions. APAC is jointly supported by the Chinese Ocean Engineering Society (COES), the Coastal Engineering Committee of the Japan Society of Civil Engineers (JSCE), and the Korean Society of Coastal and Ocean Engineers (KSCOE). APAC is jointly supported by the Chinese Ocean Engineering Society (COES), the Coastal Engineering Committee of the Japan Society of Civil Engineers (JSCE), and the Korean Society of Coastal and Ocean Engineers (KSCOE).
Published by the American Geophysical Union as part of the Coastal and Estuarine Studies, Volume 47. There can be little doubt that estuarine, coastal and shelf circulation modeling will assume increasing importance in the immediate future, as we work through the implications of industrialization for oceanic systems. These issues will place new and serious operational demands on available models, and the rapid increase in computational power we now enjoy makes it possible to respond with detailed simulations in many categories. As a result, we are witnessing an explosive growth in the quantity of model-generated information. Lacking, however, is a concomitant increase in its quality or even in quality control procedures. A single simulation exercise is easily capable of generating gigabytes of output in a matter of hours. Most of the data will necessarily go unexamined by its progenitors. Yet it is highly likely that disks full of simulation output will be used extensively as learning tools for students and researchers, as criteria for engineering design, as a basis for operational decision?]making, and in the formulation of public policy. The purpose of this volume is to assemble and present what is known about the intrinsic quality of simulation output: its "correctness" for various purposes. We have operated on the twin premises that (1) every simulation has some intrinsic value and (2) every simulation has serious drawbacks. Between these two extremes lies a vast gulf of uncertainty and potential error, which must be bridged in a professional way if modeling is to achieve its potential in the coastal ocean. This is the basic challenge put to the authors of this volume. Essentially we seek to describe and consolidate approaches, theories, and practices for extracting information from models, and to understand the limits of their proper use.
This volume provides an overview of the fast-developing field of tidal disruption events. For several decades, astronomers speculated that a hapless star could wander too close to a massive black hole and be torn apart by tidal forces. Yet it is only with the recent advent of wide-field transient surveys that such events have been detected. Written by a team of prominent researchers, the chapters detail the discoveries made so far in this burgeoning field of study across the entire electromagnetic spectrum, from gamma-rays through X-rays, ultra-violet, optical, infrared, and radio. In addition, they show how tidal disruption events can be used to study the properties of otherwise undetectable supermassive black holes; the populations and dynamics of stars in galactic nuclei; the physics of black hole accretion, including the potential to detect relativistic effects near a SMBH; and the physics of (radio) jet formation and evolution in a pristine environment. Finally, the book outlines important outstanding questions about TDEs. With more than 100 color images, the volume will be useful to researchers and others interested in learning more about this promising area of astrophysics. Previously published in Space Science Reviews in the Topical Collection “The Tidal Disruption of Stars by Massive Black Holes”