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A lab-on-a-chip device is a microscale laboratory on a credit-card sized glass or plastic chip with a network of microchannels, electrodes, sensors and electronic circuits. These labs on a chip can duplicate the specialized functions as performed by their room-sized counterparts, such as clinical diagnoses, PCR and electrophoretic separation. The advantages of these labs on a chip include significant reduction in the amounts of samples and reagents, very short reaction and analysis time, high throughput and portability. Generally, a lab-on-a-chip device must perform a number of mic
537.36 --- 537.36 Electrokinetics --- Electrokinetics --- Electrokinetics. --- Chemical laboratories. --- Microelectronics.
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Artificial Intelligence in Textile Engineering explains Artificial Intelligence techniques from first principles in the perfect way for textiles materials scientists and engineers.Advances in Artificial Intelligence technology have made a substantial impact across the textiles supply chain, making products more efficient, flexible and reliable. In this book techniques such as artificial neural network, support vector machine, fuzzy logic, rough set, evolutionary algorithm, and hybrid intelligence systems are described with application to textiles. Readers are supported throughout with step by step mathematical derivations of AI techniques, case studies, as well as MATLAB codes, giving readers from different backgrounds the perfect entry to AI solutions.Includes MATLAB® codes for solving various artificial intelligence techniquesProvides case studies, practical examples of textile engineering problems and self-study problems in each chapterPresents step-by-step mathematical derivations of artificial intelligence techniques throughout
Chemical laboratories --- Safety measures. --- Industrial Safety --- Chemical Engineering --- Technology & Engineering
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"Here's a groundbreaking book that introduces and discusses the important aspects of lab-on-a-chip, including the practical techniques, circuits, microsystems, and key applications in the biomedical, biology, and life science fields. Moreover, this volume covers ongoing research in lab-on-a-chip integration and electric field imaging. Presented in a clear and logical manner, the book provides you with the fundamental underpinnings of lab-on-a-chip, presents practical results, and brings you up to date with state-of-the-art research in the field. This unique resource is supported with over 160 illustrations that clarify important topics throughout."--Publisher's description.
Microelectromechanical systems. --- Chemical laboratories --- Biomedical engineering. --- Electronic equipment.
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This textbook provides a unique instructional resource in experimental Physical Chemistry with case studies based on data taken from the scientific literature. Platform-independent software that generates individualized data sets for student practice and assessment is included. Case Studies in the Virtual Physical Laboratory can be used to • Create online virtual laboratory courses in Physical Chemistry. • Supplement instruction in the lecture hall. • Complement hands-on projects in face-to-face laboratory courses. The case studies cover states of matter, thermochemistry, phase equilibria, reaction equilibria, chemical kinetics, electrolyte solutions, and activity coefficients. They are written to be self-contained to give flexibility in the choice of projects. The pedagogical approach in each case study is to use the given data in direct instruction followed by the analysis of the synthetic data as individualized tasks. Only open-source software tools are needed to analyze data. Each case study contains a thorough discussion of the theoretical principles underlying the experiment and data, the character of the data to be analyzed, and methods appropriate for the analysis of the data. The accompanying software has been written to allow the production of many data sets without risking duplication, yet the synthetic data can be regenerated if the files are lost or become corrupted. Software programs were written in Fortran 95 and are distributed as a suite of executable programs for Intel-based computers running Windows, MacOS, or Linux. This book will be of particular interest and usefulness to students and instructors in upper-division undergraduate physical chemistry courses. .
Physical chemistry. --- Thermodynamics. --- Chemical kinetics. --- Spectrum analysis. --- Sampling (Statistics). --- Physical Chemistry. --- Reaction Kinetics. --- Spectroscopy. --- Methodology of Data Collection and Processing. --- Chemical laboratories. --- Chemical laboratories --- Automation.
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Vers un nouveau « business model » de la biologie médicale La réforme de la biologie et son corollaire – l’accréditation – a provoqué une concentration du secteur de la biologie médicale, marquée par une forte réduction du nombre des entités juridiques et une augmentation de leur taille moyenne. Les regroupements sont en effet apparus aux acteurs de la biologie médicale comme inévitables pour faire face aux enjeux futurs du secteur, à savoir : conformité médicale et efficience de la gestion dans un cadre tarifaire contraint. Dans cet ouvrage, biologistes, syndicats, avocats, financiers, experts-comptables et banquiers livrent leurs expertises. Ils partagent les clés de leurs réussites mais aussi les échecs auxquels ils ont été confrontés. Dans ces nouvelles structures nées de processus de fusions/acquisitions complexes, mettant en oeuvre l’ingénierie juridique, financière, fiscale d’autres secteurs d’activité, les biologistes comprennent qu’ils quittent leur ancien mode d’exercice libéral. La mise en place d’une gouvernance dynamique avec son organigramme définissant responsabilités et obligations devient essentielle pour assurer le management des laboratoires multisites. Ainsi, organiser la gouvernance du laboratoire revient à s’accorder sur les fonctions de(s) dirigeant(s), se répartir l’exercice des pouvoirs de gestion et de management, favoriser la circulation de l’information au sein de la structure et rechercher l’adhésion des biologistes et du personnel, en vue de la création de valeur de l’entité : un défi, une révolution auxquels ne prépare pas la formation universitaire médicale. Dans ce livre qui se veut tout à la fois témoignage et vade-mecum à l’usage des biologistes, les auteurs évoquent aussi les perspectives d’évolution de la biologie médicale française. Les contours du nouveau « business model » du secteur ne sont en effet, à ce jour, pas encore totalement tracés. La première étape touchait, le regroupement des structures juridiques. Il était ainsi essentiellement quantitatif. La seconde étape sera cette fois plus qualitative ; comment concilier le respect des normes de l’accréditation, les baisses successives de nomenclatures, la maîtrise des coûts de production et de services proposées par les techniques du Lean Management et l’évolution de la discipline médicale notamment permise par le Big Data et enjeux de recherche des biotech et laboratoires mondiaux ? Mais si l’efficience est désormais indispensable au sein du laboratoire de biologie médicale, chacun doit cependant garder en tête que le coeur du métier de biologiste n’est pas « la course aux tubes », mais bien la réponse à une demande de diagnostic en vue de rendre le meilleur service médical aux patients.
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Quality assurance (QA) for environmental analysis is a growing feature of the nineties as is illustrated by the number of QA guidelines and systems which are being implemented nowadays. There is, however, often a huge gap between the implementation and respect of QA guidelines and the technical approach undertaken to improve and validate new analytical methods. This is particularly true for complex determinations involving multi-step methodologies such as those used in speciation and organic analyses. Quality assurance may also be considered from the technical point of view, which is the foc
Environmental protection. Environmental technology --- Chemical laboratories --- Chemistry, Analytic --- Basic Sciences. Chemistry --- Quality control. --- Technique. --- Analytical Chemistry. --- Analysis, Chemical --- Analytic chemistry --- Chemical analysis --- Chemistry --- Chemistry laboratories --- Laboratories
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All pathology residents must have a good command of clinical chemistry, toxicology, immunology, and laboratory statistics to be successful pathologists, as well as to pass the American Board of Pathology examination. Clinical chemistry, however, is a topic in which many senior medical students and pathology residents face challenges. Clinical Chemistry, Immunology and Laboratory Quality Control meets this challenge head on with a clear and easy-to-read presentation of core topics and detailed case studies that illustrate the application of clinical chemistry knowledge to everyday pat
Clinical chemistry. --- Clinical chemistry laboratories --- Quality control. --- Clinical biochemistry laboratories --- Chemical laboratories --- Pathological laboratories --- Chemistry, Clinical --- Diagnostic biochemistry --- Diagnostic chemistry --- Medical chemistry --- Biochemistry --- Diagnosis, Laboratory --- Clinical chemistry
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The customer of the analytical services relies on the quality assurance and quality control procedures adopted by the laboratory. It is the totality of the QA effort that gives the customer confidence in the result. QA in the Analytical Chemistry Laboratory takes the reader through all aspects of QA, from the statistical basics and quality control tools to becoming accredited to international standards. Concepts such as measurement uncertainty and metrological traceability are explained for a working chemist or her client. How to design experiments to optimise an analytical process is included, together with the necessary statistics to analyse the results. All numerical manipulation and examples are given as Microsoft Excel spreadsheets. Different kinds of interlaboratory studies are explained, and how a laboratory is judged in proficiency testing schemes is described.
Chemical laboratories --- Analytical chemistry --- Chemometrics. --- Chemistry, Analytic --- Chemistry --- Chemistry laboratories --- Laboratories --- Analysis, Chemical --- Analytic chemistry --- Chemical analysis --- Quality control. --- Technique. --- Mathematics --- Measurement --- Statistical methods
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