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The Laboratory Computer: A Practical Guide for Physiologists and Neuroscientists introduces the reader to both the basic principles and the actual practice of recording physiological signals using the computer. It describes the basic operation of the computer, the types of transducers used to measure physical quantities such as temperature and pressure, how these signals are amplified and converted into digital form, and the mathematical analysis techniques that can then be applied. It is aimed at the physiologist or neuroscientist using modern computer data acquisition systems in the laboratory, providing both an understanding of how such systems work and a guide to their purchase and implementation. The key facts and concepts that are vital for the effective use of computer data acquisition systems A unique overview of the commonly available laboratory hardware and software, including both commercial and free software A practical guide to designing one's own or choosing commercial data acquisition hardware and software
The Use of Computers for Laboratory Automation gives readers sufficient knowledge of computer systems and automation to enable them to read, and evaluate critically, technical literature and system specifications, thereby allowing the active participation in the selection, implementation, use and maintenance of computer systems in laboratories. The Use of Computers for Laboratory Automation addresses the fundamental concepts in computer engineering, software engineering and automation. It places the emphasis on principles of operation rather than on `product specific' details, which makes it independent and to a large degree `future-proof'. Particular attention is given to Laboratory Information Management Systems (LIMS) and the associated verification and valuation of computers in regulated (GLP) environments. The book is written in an approachable style, using simple technical language, making it easily accessible to scientists at all professional levels (licentiate, graduate, practising professional) and capacities (technician, analyst, technical manager etc.), and from many different disciplines.
The proliferation of information and communication technology tools in recent years has led many educators to revise the way they teach and structure their learning environments. The growth of technology applications in teaching and training is not only gaining momentum, it is becoming a significant part of today's educational scene. This book presents research and case studies to explain how these technology-rich learning environments can be structured and positive results can be achieved. The authors, based on their extensive research data present the pedagogical and organizational implications of technology-rich learning environments and, more importantly, they provide practical models, ideas and exemplars for educators to actualize the full potential of technology in the future.
These attractively priced, four-color guides offer dozens of neighborhood and thematic tours, complete with hundreds of photos and bulleted maps that lead the way from sight to sight. Day by Days are the only guides that help travelers organize their time to get the most out of a trip. Full-color package at an affordable priceStar ratings for all hotels, restaurants, and attractionsFoldout front covers with maps and quick-reference informationTear-resistant map in a handy, reclosable plastic walletHandy pocket-sized trim "Features: Paris with Kids, Exploring the Louvre, On the Trail of the da Vinci Code, and more" "Paris Day by Day" is the perfect answer for travelers who want to know the best places to visit and the best way to see the city. This attractively priced, four-color guide offers dozens of itineraries that show you how to see the best of Paris in a short time--with bulleted maps that lead the way from sight to sight. Featuring a full range of thematic and neighborhood tours, plus dining, lodging, shopping, nightlife, and practical visitor info, "Paris Day by Day" is the only guide that helps travelers organize their time to get the most out of a trip. Inside this book you'll find: Full color throughout with hundreds of photos and dozens of mapsSample one- to three-day itineraries that include Paris with Kids, Exploring the Louvre, On the Trail of "The" "Da Vinci Code," and moreStar ratings for all hotels, restaurants and attractions clue readers in on great finds and valuesTear-resistant foldout map in a handy, reclosable plastic walletFoldout front cover, with at-a-glance maps and quick-reference info
Universal Design in Higher Education looks at the design of physical and technological environments at institutions of higher education; at issues pertaining to curriculum and instruction; and at the full array of student services. Universal Design in Higher Education is a comprehensive guide for researchers and practitioners on creating fully accessible college and university programs. It is founded upon, and contributes to, theories of universal design in education that have been gaining increasingly wide attention in recent years. As greater numbers of students with disabilities attend postsecondary educational institutions, administrators have expressed increased interest in making their programs accessible to all students. This book provides both theoretical and practical guidance for schools as they work to turn this admirable goal into a reality. It addresses a comprehensive range of topics on universal design for higher education institutions, thus making a crucial contribution to the growing body of literature on special education and universal design. This book will be of unique value to university and college administrators, and to special education researchers, practitioners, and activists.
The Massachusetts Institute of Technology's Laboratory for Computer Science (LCS) hasbeen responsible for some of the most significant technological achievements of the past fewdecades. Much of the hardware and software driving the information revolution has been, andcontinues to be, created at LCS. Anyone who sends and receives email, communicates with colleaguesthrough a LAN, surfs the Web, or makes decisions using a spreadsheet is benefiting from thecreativity of LCS members.LCS is an interdepartmental laboratory that brings together faculty,researchers, and students in a broad program of study, research, and experimentation. Theirprincipal goal is to pursue innovations in information technology that will improve people's lives.LCS members have been instrumental in the development of ARPAnet, the Internet, the Web, Ethernet,time-shared computers, UNIX, RSA encryption, the X Windows system, NuBus, and many othertechnologies.This book, published in celebration of LCS's thirty-fifth anniversary, chronicles itshistory, achievements, and continued importance to computer science. The essays are complemented byhistorical photographs.
There are many books on educational technology, but few specifically for the computer lab teacher. As in any other subject, learning technology requires structure and lessons aligned to standards. And like in other subjects, students need a strong foundation and understanding of technology in order to succeed in school and in their future careers. The Computer Lab Teacher's Survival Guide speaks directly to computer lab teachers, advising on set up, lab management, Internet security, ergonomics, and other important components of an effective computer lab, one that provides the materials needed to create life-long technology learners. Other educators who lack computer lab teacher training, but are responsible for technology education, will find this book a helpful resource to lead them through a whole year of instruction.
Science undergraduates have come to accept the use of computers as commonplace. The daily use of portable sophisticated electronic calculators (some of them rivaling general-purpose minicomputers in their capa bi li ti es) has hastened this development. Over the past several years, computer assisted experimentation has assumed an important role in the experimental laboratory. Mini- and microcomputer systems have become an important part of the physical scientist's array of analytical instruments. Prompted by our beliefthat this was an inevitable development, we began several years aga to develop the curricular materials presented in this manual. At the outset, several objectives seemed important to uso First, insofar as possible, the experiments included should be thoroughly tested and error free. Second, they should be compatible with a variety of laboratory computer, data-acquisition, and control systems. Third, little or no previous background in either electronics or programming should be necessary. (Of course, such background would be advantageous. ) To satisfy these objectives, we decided to adopt a widespread high-level computer language, BASIC, suitably modified for the purpose. Furthermore, we have purposely avoided specifying any particular system or equipment. Rather, the functional characteristics of both hardware and software required are stipulated. The experiments have been developed using Varian 620 and Hewlett-Packard 2100 series computers, but we believe they are readily transferable to other commonly available computer systems with a minimum of difficulty.
Microcomputer-based labs, the use of real-time data capture and display in teaching, give the learner new ways to explore and understand the world. As this book shows, the international effort over a quarter-century to develop and understand microcomputer-based labs (MBL) has resulted in a rich array of innovative implementations and some convincing evidence for the value of computers for learning. The book is a sampler of MBL work by an outstanding international group of scientists and educators, based on papers they presented at a seminar held as part of the NATO Special Programme on Advanced Educational Technology. The story they tell of the development of MBL offers valuable policy lessons on how to promote educational innovation. The book will be of interest to a wide range of educators and to policy makers.