How Circuits Work


Book Description

Have you ever wondered how electricity powers your home or school? What about how that electricity travels? In any device that uses electricity, inside is a small path called a circuit through which electricity travels. Whether we see them in these devices or not, circuits are constantly at work. But how do circuits work? How were they invented? Explore the key concepts that make up a circuit, including the power source, conducting path, and load. Learn how circuits power devices of all sizes, from computers to the lights in your home to satellites in outer space!




Brain Circuitry and Signaling in Psychiatry


Book Description

The 1990s, appropriately termed "the decade of the brain," witnessed unprecedented advances in our knowledge of psychiatric neuroscience. Yet with every advance, we realized afresh that we were still in the beginning stages of a much longer journey. This text chronicles the next step of that journey. Structured around a proven teaching methodology that uniquely integrates the clinical aspects of psychiatric disorders with their neurobiology, this volume begins with two introductory chapters on functional neural circuitry and neural signaling pathways. The remaining six chapters present current knowledge on the neuroanatomic and neurochemical mechanisms underlying schizophrenia, addiction, anxiety, depression, bipolar disorder, and dementia/Alzheimer's disease. For clarity and consistency, each chapter features the same four divisions -- clinical presentation, neural circuitry, signaling pathways, and psychopharmacology -- as they relate to Schizophrenia, which reviews studies of the neural basis of schizophrenia and describes how the cortex, the thalamus, the basal ganglia, and the medial temporal lobe work together during normal brain function and then how each is perturbed in psychosis. Addiction, which focuses on the consequences of psychoactive substance use, including compulsive practices (e.g., eating, sex, Internet browsing) that might also involve the same brain circuits and signaling pathways. Of exceptional value are two unique illustrations that capture -- for the first time -- much of what we know about the anatomy and neurochemistry underlying the behavioral symptoms of addiction. Anxiety, which presents current hypotheses regarding neurocircuitry and signaling pathways for the three best-studied (from a neurobiologic perspective) anxiety disorders: panic disorder, posttraumatic stress disorder, and obsessive-compulsive disorder. Depression, which offers evidence for the involvement of highly interconnected cortical and limbic structures such as the prefrontal cortex, medial thalamus, amygdala, ventral striatum, hippocampus, and the hypothalamic-pituitary-adrenal axis in unipolar major depression, and suggests target areas (such as the cAMP pathway) for study in the development of new antidepressants. Bipolar disorder, which shows that specific abnormalities in signal transduction pathways, including protein kinase activity, G protein levels, and gene expression, are unique to bipolar patients, concluding that the actions of lithium and anticonvulsants on intracellular signaling pathways provide a new paradigm for novel pharmacological interventions. Dementia and Alzheimer's disease, which details current findings on neurofibrillary degeneration, relevant genes and proteins, pathogenesis (metabolic decline, defective cell repair, and Aß toxicity), and treatment strategies (neurotransmitter replacement, and neuroprotective and regenerative approaches). Discusses frontotemporal dementia, dementia with Lewy bodies, Parkinson's disease, and vascular dementia. Meticulously researched and clearly written by 15 contributors -- all recognized experts from leading research and teaching institutions in the United States -- this compact and extensively illustrated volume stands out in the literature because it combines readability and practicality with the breadth and depth typically found only in far lengthier works. Psychiatric practitioners, residents, and students alike will welcome this informative, easy-to-read text, which will also be of special interest to mental health and pharmaceutical industry professionals, and of general interest to anyone who wants to know more about the biology of psychiatric illness.




The Circuitry of the Human Spinal Cord


Book Description

Studies of human movement have proliferated in recent years, and there have been many studies of spinal pathways in humans, their role in movement, and their dysfunction in neurological disorders. This comprehensive reference surveys the literature related to the control of spinal cord circuits in human subjects, showing how they can be studied, their role in normal movement, and how they malfunction in disease states. Chapters are highly illustrated and consistently organised, reviewing, for each pathway, the experimental background, methodology, organisation and control, role during motor tasks, and changes in patients with CNS lesions. Each chapter concludes with a helpful resume that can be used independently of the main text to provide practical guidance for clinical studies. This will be essential reading for research workers and clinicians involved in the study, treatment and rehabilitation of movement disorders.




A Beginner's Guide to Circuits


Book Description

A Beginner's Guide to Circuits is the perfect first step for anyone ready to jump into the world of electronics and circuit design. After finishing the book's nine graded projects, readers will understand core electronics concepts which they can use to make their own electrifying creations! First, you'll learn to read circuit diagrams and use a breadboard, which allows you to connect electrical components without using a hot soldering iron! Next, you'll build nine simple projects using just a handful of readily available components, like resistors, transistors, capacitors, and other parts. As you build, you'll learn what each component does, how it works, and how to combine components to achieve new and interesting effects. By the end of the book, you'll be able to build your own electronic creations. With easy-to-follow directions, anyone can become an inventor with the help of A Beginner's Guide to Circuits! Build These 9 Simple Circuits! Steady-Hand Game: Test your nerves using a wire and a buzzer to create an Operation-style game! Touch-Enabled Light: Turn on a light with your finger! Cookie Jar Alarm: Catch cookie thieves red-handed with this contraption. Night-Light: Automatically turn on a light when it gets dark. Blinking LED: This classic circuit blinks an LED. Railroad Crossing Light: Danger! Don't cross the tracks if this circuit's pair of lights is flashing. Party Lights: Throw a party with these charming string lights. Digital Piano: Play a tune with this simple synthesizer and learn how speakers work. LED Marquee: Put on a light show and impress your friends with this flashy finale.




Elegant Circuits: Simple Chaotic Oscillators


Book Description

Chaos is the study of the underlying determinism in the seemingly random phenomena that occur all around us. One of the best experimental demonstrations of chaos occurs in electrical circuits when the parameters are chosen carefully. We will show you how to construct such chaotic circuits for use in your own studies and demonstrations while teaching you the basics of chaos.This book should be of interest to researchers and hobbyists looking for a simple way to produce a chaotic signal. It should also be useful to students and their instructors as an engaging way to learn about chaotic dynamics and electronic circuits. The book assumes only an elementary knowledge of calculus and the ability to understand a schematic diagram and the components that it contains.You will get the most out of this book if you can construct the circuits for yourself. There is no substitute for the thrill and insight of seeing the output of a circuit you built unfold as the trajectory wanders in real time across your oscilloscope screen. A goal of this book is to inspire and delight as well as to teach.




Introduction to Logic Circuits & Logic Design with Verilog


Book Description

This textbook for courses in Digital Systems Design introduces students to the fundamental hardware used in modern computers. Coverage includes both the classical approach to digital system design (i.e., pen and paper) in addition to the modern hardware description language (HDL) design approach (computer-based). Using this textbook enables readers to design digital systems using the modern HDL approach, but they have a broad foundation of knowledge of the underlying hardware and theory of their designs. This book is designed to match the way the material is actually taught in the classroom. Topics are presented in a manner which builds foundational knowledge before moving onto advanced topics. The author has designed the presentation with learning goals and assessment at its core. Each section addresses a specific learning outcome that the student should be able to “do” after its completion. The concept checks and exercise problems provide a rich set of assessment tools to measure student performance on each outcome.




Circuitry


Book Description

Like the human beings it describes, Human Design is a mutative knowledge - constantly changing, developing and adapting as it meets all kinds of new minds who test it and shape it. Human Design is not only for the esoteric, but contains simple truths that can be so helpful to so many human beings in the world at large. Circuitry has come about as a response to the needs of both students and laypeople who take an interest in the Human Design system, laid out in a clear and simple way. The purpose is to serve as inspiration for people to understand both themselves and those around them in the world.




Circuits


Book Description

This high-interest informational text will help students gain science content knowledge while building their literacy skills and nonfiction reading comprehension. This appropriately leveled nonfiction science reader features hands-on, simple science experiments and full-color images and graphics. Fourth grade students will learn all about the importance of circuits through this engaging text that is aligned to the Next Generation Science Standards and supports STEM education.




The Circuitry of the Human Spinal Cord


Book Description

Studies of human movement have proliferated in recent years. This greatly expanded and thoroughly updated reference surveys the literature on the corticospinal control of spinal cord circuits in human subjects, showing how different circuits can be studied, their role in normal movement and how they malfunction in disease states. Chapters are highly illustrated and consistently organised, reviewing, for each pathway, the experimental background, methodology, organisation and control, role during motor tasks and changes in patients with CNS lesions. Each chapter concludes with a helpful résumé that can be used independently of the main text to provide practical guidance for clinical studies. The final four chapters bring together the changes in transmission in spinal and corticospinal pathways during movement and how they contribute to the desired movement. This book is essential reading for research workers and clinicians involved in the study, treatment and rehabilitation of movement disorders.




Circuits for Electronic Instrumentation


Book Description

This book is an up-to-date text on electronic circuit design. The subject is dealt with from an experimental point of view, but this has not restricted the author to well-known or simple circuits. Indeed, some very recent and quite advanced circuit ideas are put forward for experimental work. Each chapter takes up a particular type of circuit, and then leads the reader on to gain an understanding of how these circuits work by proposing experimental circuits for the reader to build and make measurements on. This is the first book to take such a practical approach to this level. The book will be useful to final year undergraduates and postgraduates in electronics, practising engineers, and workers in all fields where electronic instrumentation is used and there is a need to understand electronics and the interface between the instrument and the user's own experimental system. The book's references will also be a very helpful guide to the literature.