![]() A versatile coincidence circuit arrangementĦ. Computer analysis of scintillation spectraĥ. Determination of energies and intensitiesĩ. Analysis of a spectrum by the peeling methodĦ. Measurement of γ-ray scintillation spectraĤ. Examples of some disintegration schemesģ. Determination of internal conversion coefficientsġ0. Determination of comparative half-lives ftĩ. The Fermi plot end points and β-ray groupsĨ. The determination of the relative intensity of γ-raysħ. The search for γ-rays and the measurement of their energyĥ. Multi-sealer applications of analyzersĬhapter VIII Procedures for the Investigation of Disintegration SchemesĢ. Description of a typical analyzer with magnetic-core storageĨ. Computer storage techniques applied to analyzersĦ. (C) Multi-Channel Pulse-Amplitude Analyzersĥ. (B) Intensity Determination of Photographically Recorded Conversion Lines Απ counters for absolute activity measurements ![]() Other applications of proportional countersġ2. Proportional counters for beta and gamma-ray spectroscopyĩ. Proportional-counter alpha-spectroscopyĦ. Ion chambers for alpha-particle spectroscopyĥ. Statistical fluctuations in pulse size and resolutionĤ. (A) Proportional Counters and Pulse Ion Chambersģ. Methods for charged particle spectrometry Theory of crystal diffraction spectrometersĢ. Some proposed high transmission instrumentsĬhapter IV Crystal Diffraction Spectroscopy of Nuclear γ-RaysĢ. Nuclear interactions and Delbrück scatteringĬhapter III Beta-Ray Spectrometer Theory and Design. Elastic scattering of electrons by atomic nucleiĬhapter II Interaction of γ-Radiation with Matterĥ. Table of ContentsĪlpha-, Beta- and Gamma-Ray Spectroscopy, IntroductionĬhapter I Interaction of Electrons and α-Particles with Matterġ. Experimentalists will find this book extremely useful. The emissions of gamma-radiation during charged particle bombardment and from fission fragments, as well as the neutron-capture radiation spectroscopy, are also explained. In addition, it covers the nuclear shell model collective nuclear motion and the unified model and alpha-decay conservation laws. ![]() Moreover, the book discusses the applications of the scintillation counter proportional counting in gases and the general processes and procedures used in determining disintegration schemes through a study of the beta- and gamma-rays emitted. It then introduces topic on beta-ray spectrometer theory and design and crystal diffraction spectroscopy of nuclear gamma rays. The book explains the elastic scattering of electrons by atomic nuclei and the interaction between gamma-radiation and matter. It begins with a discussion of the interaction of electrons and alpha particles with matter. Comprised of 14 chapters, the book presents experimental methods and theoretical discussions and calculations to maintain the link between experiment and theory. It summarizes progress in the field of alpha-, beta- and gamma-ray spectroscopy, including the discovery of the non-conservation of parity, as well as new experimental methods that elucidate the processes of weak interactions in general and beta-decay in particular. Alpha-, Beta- and Gamma-Ray Spectroscopy Volume 1 offers a comprehensive account of radioactivity and related low-energy phenomena.
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