Bibliography of Low Energy Electron and Photon Cross Section Data, (January 1975 Through December 1977)
Author: J. W. Gallagher
Publisher:
Published: 1979
Total Pages: 124
ISBN-13:
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Author: J. W. Gallagher
Publisher:
Published: 1979
Total Pages: 124
ISBN-13:
DOWNLOAD EBOOKAuthor: Lee Joseph Kieffer
Publisher:
Published: 1976
Total Pages: 224
ISBN-13:
DOWNLOAD EBOOKAuthor:
Publisher: Elsevier
Published: 1994-07-26
Total Pages: 497
ISBN-13: 0080561446
DOWNLOAD EBOOKThe latest volume in the highly acclaimed series addresses atomic collisions, assessing the status of the current knowledge, identifying deficiencies, and exploring ways to improve the quality of cross-section data.Eleven articles, written by foremost experts, focus on cross-section determination by experiment or theory, on needs in selected applications, and on efforts toward the compilation and dissemination of data. This is the first volume edited under the additional direction of Herbert Walther. Presents absolute cross sections for atomic collisions Uses benchmark measurements and benchmark calculations Discusses needs for cross-section data in applications Contains a guide to data resources, bibliographies, and compendia
Author: United States. Energy Research and Development Administration
Publisher:
Published: 1977
Total Pages: 1072
ISBN-13:
DOWNLOAD EBOOKAuthor: Joan C. Sauerwein
Publisher:
Published: 1985
Total Pages: 148
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. National Bureau of Standards
Publisher:
Published: 1987
Total Pages: 420
ISBN-13:
DOWNLOAD EBOOKAuthor: National Institute of Standards and Technology (U.S.)
Publisher:
Published: 1987
Total Pages: 398
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. National Bureau of Standards
Publisher:
Published: 1987
Total Pages: 402
ISBN-13:
DOWNLOAD EBOOKAuthor: United States. National Bureau of Standards
Publisher:
Published: 1986
Total Pages: 396
ISBN-13:
DOWNLOAD EBOOKAuthor: Douglas McGregor
Publisher: CRC Press
Published: 2020-08-19
Total Pages: 1286
ISBN-13: 1000038580
DOWNLOAD EBOOKRadiation Detection: Concepts, Methods, and Devices provides a modern overview of radiation detection devices and radiation measurement methods. The book topics have been selected on the basis of the authors’ many years of experience designing radiation detectors and teaching radiation detection and measurement in a classroom environment. This book is designed to give the reader more than a glimpse at radiation detection devices and a few packaged equations. Rather it seeks to provide an understanding that allows the reader to choose the appropriate detection technology for a particular application, to design detectors, and to competently perform radiation measurements. The authors describe assumptions used to derive frequently encountered equations used in radiation detection and measurement, thereby providing insight when and when not to apply the many approaches used in different aspects of radiation detection. 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. Such a review necessarily entails citations to many of the important discoveries, providing a resource to find quickly additional and more detailed information. This book generally has five main themes: Physics and Electrostatics needed to Design Radiation Detectors Properties and Design of Common Radiation Detectors Description and Modeling of the Different Types of Radiation Detectors Radiation Measurements and Subsequent Analysis Introductory Electronics Used for Radiation Detectors Topics covered include atomic and nuclear physics, radiation interactions, sources of radiation, and background radiation. 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. Detectors for gamma-rays, charged-particles, and neutrons are detailed in chapters on gas-filled, scintillator, semiconductor, thermoluminescence and optically stimulated luminescence, photographic film, and a variety of other detection devices.