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Nuclei Far from Stability and Atomic Masses and Fundamental Constants 1992 presents a collection of 200 papers presented at two conferences that were held concurrently. Particular attention is paid to developments in the field of nuclear physics with energetic secondary beams and the increase of precision in the determination of atomic masses. Topics covered include nuclear spectroscopy and nuclear shapes, the heaviest elements, fission and cluster radioactivity, beta decay, coupling constants, neutrino mass, moments and radii, nuclei near the drip line and their structure, atomic masses, nuclear aspects in astrophysics, and experimental developments.
This handbook on basic nuclear properties and particle decay modes is the result of new theoretical and experimental data on nuclear properties; its aim is to combine the newest developments from advanced research laboratories with background information on such topics as masses, deformations, and energy conversion factors. These findings, along with the most recently updated tables, make this a valuable reference for researchers, practitioners, and students of nuclear and particle physics who are interested in basic nuclear properties.
The monograph describes the properties of the lightest nuclei with large excess of neutrons. The results of theoretical and experimental studies of neutron-rich isotopes with 1 ≤ Z ≤ 20 are presented while also changes in the structure of nuclei when going away from the line of β-stability are discussed. Information presented is on the mass, radii of distribution of nuclear matter, energy levels for excited states of these nuclei, the possibility of manifestation of a halo, as well as the deformation of nuclei and the quantum properties of ground states. The position of the boundary of nucleon stability for these nuclei is considered. The effects associated with weakening and even the disappearing influence of standard magic numbers and the appearance of new ones are discussed.The results presented in the book will be useful in other fields of science as well, including astrophysics.
With this volume, Methods of Experimental Physics becomes Experimental Methods in the Physical Sciences, a name change which reflects the evolution of todays science. This volume is the first of three which will provide a comprehensive treatment of the key experimental methods of atomic, molecular, and optical physics; the three volumes as a set will form an excellent experimental handbook for the field. The wide availability of tunable lasers in the pastseveral years has revolutionized the field and lead to the introduction of many new experimental methods that are covered in these volumes. Traditional methods are also included to ensure that the volumes will be a complete reference source for the field.
The International Nuclear Physics Conference, held every three years, is the most pretigeous meeting of nuclear physics. Its programme covers the whole range of nuclear physics and some application, such as relativistic nuclear collisions, mesons and baryons in nuclei, hadron structure and quarks in nuclei, formation and properties of hot nuclei, nuclear reactions at low and intermediate energy, nuclear structure, radioactive nuclear beams, nuclear astrophysics, fundamental interaction and symmetries, experimental technique and new facilities, and applied nuclear physics.The proceedings is a collection of all invited talks on the plenary and parallel sessions. Presented by the leading scientists in their fields, these talks summarized the most recent progress and future prospects in all the aspects of nuclear physics.
The International Conference on Exotic Nuclei and Atomic Masses (ENAM) has gained the status of the premier meeting for the physics of nuclei far from stability. The selected and refereed papers presenting the main results constitute valuable proceedings that offer everyone working in this field an authoritative and comprehensive source of reference.
Sixty internationally well-known physicist from 15 countries will reflect on past accomplishments in nuclear physics to current challenges and future directions in nuclear physics. Topics range from neutrino physics and grand unification; physics of compressed and hot nuclear matter, the nuclear equation of state, expected phase transition to quark-gluon plasma, meson condensates, etc., the tremendous potential of high energy heavy ion physics to nuclear structure. Recent developments in nuclear instrumentation for studying nuclei far from stability and applications of nuclear physics will also be discussed.
This proceedings volume includes 66 papers on the latest developments in heavy ion collisions, the synthesis of new elements and nuclei far from stability, nuclear structure, physics with radioactive beams, and applications of heavy ion beams.