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Handbuch der Radioaktivitätsanalyse, 9780124362550

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Book Title
Handbook of Radioactivity Analysis
ISBN
9780124362550

Über dieses Produkt

Product Identifiers

Publisher
Elsevier Science & Technology Books
ISBN-10
0124362559
ISBN-13
9780124362550
eBay Product ID (ePID)
289685

Product Key Features

Number of Pages
771 Pages
Language
English
Publication Name
Handbook of Radioactivity Analysis
Subject
Life Sciences / Cell Biology, Radiation, Chemistry / Analytic, Physics / General
Publication Year
1998
Type
Textbook
Subject Area
Science
Author
Michael F. L'annunziata
Format
Hardcover

Dimensions

Item Height
1.5 in
Item Weight
56.1 Oz
Item Length
10 in
Item Width
6.9 in

Additional Product Features

Intended Audience
Scholarly & Professional
LCCN
98-084367
Reviews
"...The aim of the authors--to write a practical work that includes both principles and applications of modern radio analytical techniques--has been achieved. [Recommended to] upper-division undergraduates through professionals." --CHOICE, January 1999 "This book, written by experienced specialists, covers the basic principles and, most importantly, the practical aspects of the radioanalytical methods that are in widespread use. ...The book not only serves as a reliable guide to the use of well-established methods, but also draws attention to recent developments, thus providing new and stimulating ideas for readers who may regard themselves as already knowledgeable in the field." --ANGEWANDTE CHEMIE, November 1999 "...the information in the text is exquisitely presented and very readable... . Excellent applications to current research problems are given. There is also a good index and table of radioactive isotopes, the latter being very useful in such a book. The major strength of this book is its in-depth coverage of scintillation analysis and its prolific use of figures, diagrams, and tables." --ANALYTICAL CHEMISTRY, June 1999 "This book is a practical handbook in line with the current trend of radiation measurement. The content is organized as follows. The 1st Chapter: Nuclear radiation, its interaction with matter and radioisotope decay; the 2nd Chapter: Gas ionization detectors (ion chambers, proportional detectors, GM counters); the 3rd Chapter: Semiconductor detectors; the 4th Chapter: Radiotracer liquid scintillation analysis; the 5th Chapter: Environmental liquid scintillation analysis; the 6th Chapter: Statistical computations in counting; the 7th Chapter: Sample preparation techniques for liquid scintillation analysis; the 8th Chapter: Cherenkov counting (by liquid scintillation analysis); the 9th Chapter: Solid scintillation analysis; the 10th Chapter: Flow scintillation analysis; the 11th Chapter: Radioisotope imaging; the 12th Chapter: Robotics and automation in radiochemical analysis and Appendix: Table of radioactive isotopes. As is clear from the title, the coverage of this book is limited to the analysis of radiation from radioisotopes. While it includes even very specific techniques of analysis, the content is quite easy to understand as each specific field is treated by its respective specialist. The description and explanation are well harmonized throughout the entire book and a number of articles are quoted for ease of reference to the readers. It is remarkable that liquid scintillation analysis has two separate chapters devoted to sample preparation and environmental sample analysis. Listing the latest developments extensively, this book is definitely useful not only to specialists but also to those wishing to have an overview of the current status of radioisotope analysis. --MAKOTO TAKIUE, Ph.D., Radioisotope Research Center, Jikei University School of Medicine "For the experienced scientist, and for many novices, this handbook will offer a treasure trove of advice and ideas of the anaylsis of radioactivity. . . .it is a valuable reference work and should find its way onto the shelves of university libraries." --TRENDS IN ANALYTICAL CHEMISTRY, VOLUME 18, 1999
Dewey Edition
21
Illustrated
Yes
Dewey Decimal
539.7/7
Table Of Content
Acronyms, Abbreviations, and Symbols. Foreword. Preface. M.F. L'Annunziata, Nuclear Radiation, Its Interaction with Matter and Radioisotope Decay. Introduction. Particulate Radiation. Electromagnetic Radiation. Interaction of High-energy Electromagnetic Radiation with Matter. Radioisotope Decay. Radioactivity Units and Radionuclide Mass. References. K. Buchtela, Gas Ionization Detectors. Introduction: Principles of Radiation Detection by Gas Ionization. Characterization of Gas Ionization Detectors. Definition of Operating Characteristics of Gas Ionization Detectors. Ion Chambers. Proportional Gas Ionization Detectors. Geiger-Mueller Counters. Special Types of Ionization Detectors. References. P. F. Fettweis and H. Schwenn, Semiconductor Detectors. Introduction. Ge-Detectors. The Si Detectors. Spectroscopic Analysis with Semiconductor Detectors. References. M.F. L'Annunziata and M.J. Kessler, Radiotracer Liquid Scintillation Analysis. Introduction. Basic Theory. Liquid Scintillation Counter or Analyzer (LSC or LSA). Quench in Liquid Scintillation Counting. Methods of Quench Correction in Liquid Scintillation Counting. Common Interferences in Liquid Scintillation Counting. Multiple Radionuclide Analysis. Radionuclide Standardization. Microplate Scintillation and Luminescence Counting. PERALS Spectrometry. Simultaneous a/b Analysis. Radionuclide Identification. Air Luminescence Counting. Liquid Scintillation Counter Performance. References. G.T. Cook, C.J. Passo, Jr., and B.D. Carter, Environmental Liquid Scintillation Analysis. Introduction. Low-level Liquid Scintillation Counting Theory. Alpha/Beta Discrimination. Analysis of Beta Emitting Radionuclides. Analysis of Alpha Emitting Radionuclides Using Conventional LS Spectrometers with Pulse Shape Discrimination. References. M.J. Kessler, Statistical Computations in Counting. Introduction. Statistics of Nuclear Counting. References. J. Thomson, Sample Preparation Techniques for Liquid Scintillation Analysis. Introduction. LSC Cocktail Components. Dissolution. Solubilization. Combustion. Carbon Dioxide Trapping and Counting. Biological Samples. Filter and Membrane Counting. Sample Stability Troubleshooting. Swipe Assays. References. M.F. L'Annunziata, Cherenkov Counting. Introduction. Theory. Quenching and Quench Correction. Counting Parameters. Cherenkov Counting in Microplate Format. Multiple Radionuclide Analysis. Radionuclide Standardization. Applications. Advantages and Disadvantages. Recommendations. References. M.F. L'Annunziata, Solid Scintillation Analysis. Introduction. Principle of Solid Scintillation. Solid Scintillation Analyzer. Concepts and Principles of Solid Scintillation Analysis. Automated Solid Scintillation Analyzers. Solid scintillation in Noncrystalline Media. Lucas Cell. Phoswich Detectors. Summary of Applications. References. M.F. L'Annunziata, Flow Scintillation Analysis. Introduction. Basics of Flow Scintillation Analysis Instrumentation. Principles of Flow Scintillation Counting. Flow Scintillator Selection. Applications. References. L.V. Upham and D.F. Englert, Radionuclide Imaging. Introduction. Film Autoradiography. Storage Phosphor Screen Imaging. Electronic Autoradiography. The Future of Radionuclide Imaging. References. T.J. Beugelsdijk and R.M. Hollen, Robotics and Automation in Radiochemical Analysis. Introduction. Materials Compatibility and Operational Considerations for Robot and Workcell Construction. Applications of Robotic Systems to Radiochemical Analysis. Systems Integration: Building the Fully-Automated Method. Conclusions. References. Appendix. Table of Radioactive Isotopes. Subject Index.
Synopsis
This text describes the broad scope of analytical methods available in radioactivity analysis and aims to instruct the reader on how to select the proper technique. It also explains environmental activity analysis of natural and manufactured radionuclides.
LC Classification Number
QC787.S34H36 1998

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