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This book is an attempt to present under one cover the current state of knowledge concerning the potential lightning effects on aircraft and that means that are available to designers and operators to protect against these effects. The impetus for writing this book springs from two sources- the increased use of nonmetallic materials in the structure of aircraft and the constant trend toward using electronic equipment to handle flight-critical control and navigation function.
The Fourth Conference on Fibrous Composites in Structural Design was a successor to the First-to-Third Conferences on Fibrous Composites in Flight Vehicle Design sponsored by the Air Force (First and Second Conferences, September 1973 and May 1974) and by NASA (Third Conference, November 1975) which were aimed at focusing national attention on flight vehicle applications of a new class of fiber reinforced materials, the advanced com posites, which afforded weight savings and other advantages which had not been previously available. The Fourth Conference, held at San Diego, California, 14-17 November 1978, was the fi rst of these conferences to be jointly sponsored by the Army, Navy and Ai r Force together with NASA, as well as being the first to give attention to non-aerospace applications of fiber reinforced composites. While the design technology for aerospace applications has reached a state of relative maturity, other areas of application such as mi litary bridging, flywheel energy storage systems, ship and surface vessel components and ground vehicle components are in an early stage of development, and it was an important objective to pinpoint where careful attention to structural design was needed in such applications to achfeve maximum structural performance payoff together with a high level of reliability and attractive economics.
Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.
Timber construction is one of the most prevalent methods of constructing buildings in North America and an increasingly significant method of construction in Europe and the rest of the world. Timber Engineering deals not only with the structural aspects of timber construction, structural components, joints and systems based on solid timber and engineered wood products, but also material behaviour and properties on a wood element level. Produced by internationally renowned experts in the field, this book represents the state of the art in research on the understanding of the material behaviour of solid wood and engineered wood products. There is no comparable compendium currently available on the topic - the subjects represented include the most recent phenomena of timber engineering and the newest development of practice-related research. Grouped into three different sections, 'Basic properties of wood-based structural elements', 'Design aspects on timber structures' and 'Joints and structural assemblies', this book focuses on key issues in the understanding of: timber as a modern engineered construction material with controlled and documented properties the background for design of structural systems based on timber and engineered wood products the background for structural design of joints in structural timber systems Furthermore, this invaluable book contains advanced teaching material for all technical schools and universities involved in timber engineering. It also provides an essential resource for timber engineering students and researchers, as well as practicing structural and civil engineers.
Recent neuroscience research makes it clear that human biology is cultural biology - we develop and live our lives in socially constructed worlds that vary widely in their structure values, and institutions. This integrative volume brings together interdisciplinary perspectives from the human, social, and biological sciences to explore culture, mind, and brain interactions and their impact on personal and societal issues. Contributors provide a fresh look at emerging concepts, models, and applications of the co-constitution of culture, mind, and brain. Chapters survey the latest theoretical and methodological insights alongside the challenges in this area, and describe how these new ideas are being applied in the sciences, humanities, arts, mental health, and everyday life. Readers will gain new appreciation of the ways in which our unique biology and cultural diversity shape behavior and experience, and our ongoing adaptation to a constantly changing world.
Shock wave-boundary-layer interaction (SBLI) is a fundamental phenomenon in gas dynamics that is observed in many practical situations, ranging from transonic aircraft wings to hypersonic vehicles and engines. SBLIs have the potential to pose serious problems in a flowfield; hence they often prove to be a critical - or even design limiting - issue for many aerospace applications. This is the first book devoted solely to a comprehensive, state-of-the-art explanation of this phenomenon. It includes a description of the basic fluid mechanics of SBLIs plus contributions from leading international experts who share their insight into their physics and the impact they have in practical flow situations. This book is for practitioners and graduate students in aerodynamics who wish to familiarize themselves with all aspects of SBLI flows. It is a valuable resource for specialists because it compiles experimental, computational and theoretical knowledge in one place.
Intro -- Foreword -- Acknowledgements -- Contents -- Part I: Nutritional Care in Geriatrics -- 1: Overview of Nutrition Care in Geriatrics and Orthogeriatrics -- 1.1 Defining Malnutrition -- 1.2 Nutrition Care in Older Adults: A Complex and Necessary Challenge -- 1.3 Malnutrition: A Truly Wicked Problem -- 1.4 Building the Rationale for Integrated Nutrition Care -- 1.5 Managing the Wicked Nutrition Problems with a SIMPLE Approach (or Other Tailored Models) -- 1.5.1 Keep It SIMPLE When Appropriate -- 1.5.2 A SIMPLE Case Example -- 1.5.2.1 S-Screen for Malnutrition -- 1.5.2.2 I-Interdisciplinary Assessment -- 1.5.2.3 M-Make the Diagnosis (es) -- 1.5.2.4 P-Plan with the Older Adult -- 1.5.2.5 L-Implement Interventions -- 1.5.2.6 E-Evaluate Ongoing Care Requirements -- 1.6 Bringing It All Together: Integrated Nutrition Care Across the Four Pillars of (Ortho) Geriatric Care -- 1.7 Summary: Finishing Off with a List of New Questions -- References -- Recommended Reading -- 2: Nutritional Requirements in Geriatrics -- 2.1 Nutritional Recommendations for Older Adults, Geriatric and Orthogeriatric Patients -- 2.2 Nutritional Recommendations for Older Adults -- 2.2.1 Energy Requirement and Recommended Intake -- 2.2.2 Protein Requirement and Recommended Intake -- 2.2.3 Micronutrients and Dietary Fibers -- 2.3 Nutritional Risk Factors in Older Adults -- 2.4 Estimating Intake in Older Adults -- 2.5 Nutritional Status of Older Adults, Geriatric and Orthogeriatric Patients -- 2.6 Summary -- References -- Recommended Reading -- 3: Nutritional Assessment, Diagnosis, and Treatment in Geriatrics -- 3.1 The Nutrition Care Process -- 3.2 Nutritional Screening/Risk Detection -- 3.3 Nutritional Assessment and Diagnosis -- 3.3.1 Nutrition Impact Symptoms -- 3.3.2 Nutritional Diagnosis -- 3.3.3 Etiologic Criteria.