Design And Operation Of Dc Ion Chambers. Incorporating these important developments, Measurement and Detection of Radiation, Fifth Edition provides the most up-to-date and accessible introduction to radiation detector materials, systems, and applications. Previous page. Detailed in many of the chapters are specific aspects of radiation detectors, including comprehensive reviews of the historical development and current state of each topic. By continuing to use the website, you consent to our use of cookies. Nuclear Forensics The new edition continues to convey the importance of understanding the basic physics underlying the operation of instruments. This book generally has five main themes: Topics covered include atomic and nuclear physics, radiation interactions, sources of radiation, and background radiation. What Can We Really Expect from 5G? Such a review necessarily entails citations to many of the important discoveries, providing a resource to find quickly additional and more detailed information. Presents new material on ROC curves, micropattern gas detectors, new sensors for scintillation light, thick film semiconductors, and digital techniques in detector pulse processing, ? moves onto the more modern scintillator and semiconductor detectors. Cancel any time. It looks like WhatsApp is not installed on your phone. Engineers will gain a strong understanding of the field with this updated book."--Includes bibliographical references and index Chapter 1 Radiation Sources -- I. He is author or co-author of over 140 technical publications, 8 patents, and 2 textbooks.He has been elected a Fellow of the American Institute for Medical and Biological Engineering, the American Nuclear Society, and the Institute of Electrical and Electronics Engineers. Prices & shipping based on shipping country. Position-Sensing Photomultiplier Tubes. Art in the Anthropocene: What Do Art and Sustainability Have in Common. If you would like IOP ebooks to be available through your institution's library, please complete this short recommendation form and we will follow up with your librarian or R&D manager on your behalf. 2. book or the Kindle These data were used to calibrate the detector and derive a phenomenological model for the detector response and the energy bin sensitivities. Gas-Filled Detectors In Self-Quenched Streamer Mode. Chapter 10 goes into the details of electron-phonon interactions in different materials and introduces the polaron. Data Analysis Methods He is one of five receiving editors of Nuclear Instruments and Methods in Physics Research, Part A, and a past or present member of the Editorial Boards for Nuclear Science and Engineering, IEEE Transaction on Medical Imaging, and Physica Medica. Additionally, the authors spent time to incorporate information on alternative detection techniques (TLDs, foil activations). Detector operation is addressed with chapters on radiation counting statistics, radiation source and detector effects, electrostatics for signal generation, solid-state and semiconductor physics, background radiations, and radiation counting and spectroscopy. The Action Of Ionizing Radiation In Semiconductors. Radiation Detection and Measurement 4th edition ISBN: 0470131489 ISBN-13: 9780470131480 Authors: Knoll, Glenn F Knoll Rent From $201.99 eTextbook Instant Access From $156.00 Buy From $287.49 Rent $201.99 Due 07/28/2023 Included with your book Feel free to highlight your book Free shipping on rental returns 21-day refund guarantee Learn more The emphasis on the underlying principles of the techniques rather than on specifics and design of instrumentation is welcomed. Product pricing will be adjusted to match the corresponding currency. The fourth edition takes into account the technical developments that continue to enhance the instruments and techniques available for the detection and spectroscopy of . Following his undergraduate education at Case Institute of Technology, he earned a Master's degree from Stanford University and a doctorate in Nuclear Engineering from the University of Michigan. By continuing to use this site you agree to our use of cookies. Cohen and Louie have done an admirable job of guiding the reader gradually from elementary concepts to advanced topics. 6. . Radiation Detection and Measurement. of interpreting the data from the detectors is explored including simple counting 9. Entdecke Optical Radiation Detectors by Eustace L. Dereniak (English) Hardcover Book in groer Auswahl Vergleichen Angebote und Preise Online kaufen bei eBay Kostenlose Lieferung fr viele Artikel! Horizon Pubs & Distributors Inc. hardcover. Informa UK Limited, an Informa Plc company. Properties Of Scintillation Gamma-Ray Spectrometers. 17. The book is expected to be used most widely for a one-semester general course on fast breeder reactors, with the extent of material covered to vary according to the interest of the instructor. You could buy lead Knoll . 5. The PSU developed two courses: Nuclear Security- Detector And Source Technologies and Nuclear Security- Applications of Detectors/Sensors/Sources for Radiation Detection and Measurements (Laboratory). Students lacking a firm footing in math will find the terrain rough after Chapter 1. Scintillation Detectors This book does not include any discussion of imaging devices, but it does contain all the necessary information on the basics of instruments and methods for the detection and measurement of ionizing radiation. The various parts of the automated unit are discussed for single-element analysis. Douglas S. McGregor is a University Distinguished Professor in Kansas State University (KSU) and holds the Boyd D. Brainard Chair in Mechanical and Nuclear Engineering. Radiation Detection: Concepts, Methods, and Devices provides a modern overview of radiation detection devices and radiation measurement methods. The book is largely intended as a textbook for a junior/senior or first-year graduate course in nuclear instrumentation and radiation, The book is divided lnto four parts. The book's timely chapter references and complete index simultaneously make the book useful to experienced radionuclide users. Chapter 2 deals with the properties of electrons in crystalline materials. New to the Fifth Edition: Expanded chapters on semiconductor detectors, data analysis methods, health physics fundamentals, and nuclear forensics. Updated references and bibliographies. New and expanded problems. it may be used as a good background reference by those interested in a refresher course in the physics underlying detection. 1 Origins1.1 A Brief History of Radiation Discovery1.2 A Brief History of Radiation Detectors, 2 Introduction to Nuclear Instrumentation2.1 Introduction2.2 The Detector2.3 Nuclear Instrumentation2.4 History of NIM Development2.5 NIM components2.6 CAMAC2.7 Nuclear Instruments other than NIM or CAMAC2.8 Cables and Connectors, 3 Basic Atomic and Nuclear Physics3.1 Modern Physics Concepts3.2 Highlights in the Evolution of Atomic Theory3.3 Development of the Modern Atom Model3.4 Quantum Mechanics3.5 The Fundamental Constituents of Ordinary Matter3.6 Nuclear Reactions3.7 Radioactivity, 4 Radiation Interactions4.1 Introduction4.2 Indirectly Ionizing Radiation4.3 Scattering Interactions4.4 Photon Cross Sections4.5 Neutron Interactions4.6 Charged-Particle Interactions, 5 Sources of Radiation5.2 Sources of Gamma Rays5.3 Sources of X Rays5.4 Sources of Neutrons5.5 Sources of Charged Particles5.6 Cosmic Rays, 6 Probability and Statistics for Radiation Counting6.1 Introduction6.2 Probability and Cumulative Distribution Functions6.3 Mode, Mean and Median6.4 Variance and Standard Deviation of a PDF6.5 Probability Data Distributions6.6 Binomial Distribution6.6.1 Radioactive Decay and the Binomial Distribution6.7 Poisson Distribution6.8 Gaussian or Normal Distribution6.9 Error Propagation6.10 Data Interpretation, 7 Source and Detector Effects7.1 Detector Efficiency7.2 Source Effects7.3 Detector Effects7.4 Geometric Effects: View Factors7.5 Geometric Corrections: Detector Parallax Effects, 8 Essential Electrostatics8.1 Electric Field8.2 Electrical Potential Energy8.3 Capacitance8.4 Current and Stored Energy8.5 Basics of Charge Induction8.6 Charge Induction for a Planar Detector8.7 Charge Induction for a Cylindrical Detector8.8 Charge Induction for Spherical and Hemispherical Detectors8.9 Concluding Remarks, 9 Gas-Filled Detectors: Ion Chambers9.1 General Operation9.2 Electrons and Ions in Gas9.3 Recombination9.4 Ion Chamber Operation9.5 Ion Chamber Designs9.6 Summary, 10 Gas-Filled Detectors: Proportional Counters10.1 Introduction10.2 General Operation10.3 Townsend Avalanche Multiplication10.4 Gas Dependence10.5 Proportional Counter Operation10.6 Selected Proportional Counter Variations, 11 Gas-Filled Detectors: Geiger-Muller Counters11.1 Geiger Discharge11.2 Basic Design11.3 Fill Gases11.4 Pulse Shape11.5 Radiation Measurements11.6 Special G-M Counter Designs11.7 Commercial G-M Counters, 12 Review of Solid State Physics 12.1 Introduction 12.2 Solid State Physics 12.3 Quantum Mechanics 12.4 Semiconductor Physics 12.5 Charge Transport 12.6 Summary, 13 Scintillation Detectors and Materials 13.1 Scintillation Detectors 13.2 Inorganic Scintillators 13.3 Organic Scintillators 13.4 Gaseous Scintillators, 14 Light Collection Devices 14.1 Photomultiplier Tubes 14.2 Semiconductor Photodetectors, 15 Basics of Semiconductor Detector Devices 15.1 Introduction 15.2 Charge Carrier Collection 15.3 Basic Semiconductor Detector Configurations 15.4 Measurements of Semiconductor Detector Properties 15.5 Charge Induction, 16.1 Introduction16.2 General Semiconductor Properties16.3 Semiconductor Detector Applications 16.4 Detectors Based on Group IV Materials 16.5 Compound Semiconductor Detectors 16.6 Additional Semiconductors of Interest 16.7 Summary, 17 Slow Neutron Detectors 17.1 Cross Sections in the 1/v Region 17.2 Slow Neutron Reactions Used for Neutron Detection 17.3 Gas-Filled Slow Neutron Detectors 17.4 Scintillator Slow Neutron Detectors 17.5 Semiconductor Slow Neutron Detectors 17.6 Neutron Diffraction 17.7 Calibration of Slow Neutron Detectors 17.8 Neutron Detection by Foil Activation 17.9 Self Powered Neutron Detectors (SPND) 17.10 Time-of-Flight Methods, 18 Fast Neutron Detectors 18.1 Detection Mechanisms 18.2 Detectors Based on Moderation 18.3 Detectors Based on Recoil Scattering 18.4 Semiconductor Fast Neutron Detectors 18.5 Detectors Based on Absorption Reactions 18.6 Summary, 19 Luminescent and Additional Detectors 19.1 Luminescent Dosimeters 19.2 Photographic Film 19.3 Track Detectors 19.4 Cryogenic Detectors 19.5 Wavelength-Dispersive Spectroscopy (WDS) 19.6 Cerenkov (Cherenkov) Detectors, 20 Radiation Measurements and Spectroscopy 20.1 Introduction 20.2 Basic Concepts 20.3 Detector Response Models 20.4 Gamma-Ray Spectroscopy 20.5 Radiation Spectroscopy Measurements 20.6 Factors Affecting Energy Resolution 20.7 Experimental Design 20.8 Gamma-Ray SpectroscopySummary 20.9 Charged-Particle Spectroscopy, 21 Mitigating Background 21.1 Sources of Background Radiation 21.2 Mitigation of the Radiation Background 21.3 Self-Absorption of Photons 21.4 Electronic Methods for Background Reduction, 22 Nuclear Electronics 22.1 Mathematical Transforms 22.2 Pulse Shaping 22.3 Components 22.4 Timing 22.5 Coincidence and Anti-Coincidence 22.6 Instrumentation Standards 22.7 Electronic Noise 22.8 Coaxial Cables, A Basic Atomic Data and Conversion Factors A.1 Fundamental Physical Constants A.2 The Periodic Table A.3 Physical Properties and Abundances of Elements A.4 SI Units A.5 Internet Data Sources, B Cross Sections and Related Data B.1 Data Tables B.1.1 Thermal Neutron Interactions B.1.2 Photon Interactions. Biblio is a registered trademark of Biblio, Inc. Help Support Independent Used Book Stores, Check out the maps, souvenirs, and other ephemera on Biblio. To learn more about our eBooks, visit the links below: As useful to students and nuclear professionals as its popular predecessors, this fifth edition provides the most up-to-date and accessible introduction to radiation detector materials, systems, and applications. The nuclear security graduate level curriculum enables the PSU to educate and train future nuclear security experts, both within the United States as well as worldwide. J. Kenneth Shultis joined the Nuclear Engineering faculty at Kansas State University in 1969 and where he presently holds the Black and Veatch Distinguished Professorship and is the Ike and Letty Conerstone teaching scholar.Besides being coauthor of this book he has coauthored the books Fundamentals of Nuclear Science and Engineering, Radiation Shielding, Radiological Assessment, Principles of Radiation Shielding, and Exploring Monte Carlo Methods.He is a Fellow of the American Nuclear Society (ANS), and has received many awards for his teaching and research, including the infrequently awarded ANS Rockwell Lifetime Achievement Award for his contributions over 50 years to the practice of radiation shielding. Crystalline materials account the technical developments that continue to enhance the instruments and techniques available the. Corresponding currency the various parts of the important discoveries, providing a resource to find quickly and... 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