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to ill-posed aspects of nuclear scattering.- Ill-posed nature of inverse problems and their regularization (stability ¿ estimates).- Statistical regularization.- The Bayesian approach to the analysis of scattering data.- Linear and nonlinear least squares computing.- The maximum entropy method.- Planning and evaluation of neutron diffraction experiments based on statistical considerations.- Jet analysis in electron-positron annihilation experiments.- Model independent densities from electron scattering.- Model-independent DWBA-analysis of inelastic electron scattering data.- Partial wave analyses of elastic meson-nucleon scattering.- Low energy proton-proton phase shift analysis.- Optimal polynomial expansions in the nucleon-nucleon phase shift analysis.- Phase-shift analysis in heavy-ion scattering.- Amplitude reconstruction in charged particles scattering.- Resonances and surface waves in nuclear and particle physics.- The regularization method in heavy-ion optical-potential analyses.- Determination of nuclear optical potentials by inversion.- Comparison of model-independent optical potential analyses.- Inversion as a means of understanding nuclear potentials.- Model-independent vs. model-dependent potentials for low energy ? and $$\bar p$$ scattering by nuclei.- Impact of Fourier-Bessel analyses on studies of composite particle scattering.- Fourier-Bessel analysis of polarized deuteron scattering.- Modeling direct reactions.- Summary Talk on Advanced methods in the evaluation of nuclear scattering data.
to ill-posed aspects of nuclear scattering.- Ill-posed nature of inverse problems and their regularization (stability ¿ estimates).- Statistical regularization.- The Bayesian approach to the analysis of scattering data.- Linear and nonlinear least squares computing.- The maximum entropy method.- Planning and evaluation of neutron diffraction experiments based on statistical considerations.- Jet analysis in electron-positron annihilation experiments.- Model independent densities from electron scattering.- Model-independent DWBA-analysis of inelastic electron scattering data.- Partial wave analyses of elastic meson-nucleon scattering.- Low energy proton-proton phase shift analysis.- Optimal polynomial expansions in the nucleon-nucleon phase shift analysis.- Phase-shift analysis in heavy-ion scattering.- Amplitude reconstruction in charged particles scattering.- Resonances and surface waves in nuclear and particle physics.- The regularization method in heavy-ion optical-potential analyses.- Determination of nuclear optical potentials by inversion.- Comparison of model-independent optical potential analyses.- Inversion as a means of understanding nuclear potentials.- Model-independent vs. model-dependent potentials for low energy ? and $$\bar p$$ scattering by nuclei.- Impact of Fourier-Bessel analyses on studies of composite particle scattering.- Fourier-Bessel analysis of polarized deuteron scattering.- Modeling direct reactions.- Summary Talk on Advanced methods in the evaluation of nuclear scattering data.
Inhaltsverzeichnis
to ill-posed aspects of nuclear scattering.- Ill-posed nature of inverse problems and their regularization (stability - estimates).- Statistical regularization.- The Bayesian approach to the analysis of scattering data.- Linear and nonlinear least squares computing.- The maximum entropy method.- Planning and evaluation of neutron diffraction experiments based on statistical considerations.- Jet analysis in electron-positron annihilation experiments.- Model independent densities from electron scattering.- Model-independent DWBA-analysis of inelastic electron scattering data.- Partial wave analyses of elastic meson-nucleon scattering.- Low energy proton-proton phase shift analysis.- Optimal polynomial expansions in the nucleon-nucleon phase shift analysis.- Phase-shift analysis in heavy-ion scattering.- Amplitude reconstruction in charged particles scattering.- Resonances and surface waves in nuclear and particle physics.- The regularization method in heavy-ion optical-potential analyses.- Determination of nuclear optical potentials by inversion.- Comparison of model-independent optical potential analyses.- Inversion as a means of understanding nuclear potentials.- Model-independent vs. model-dependent potentials for low energy ? and $$\bar p$$ scattering by nuclei.- Impact of Fourier-Bessel analyses on studies of composite particle scattering.- Fourier-Bessel analysis of polarized deuteron scattering.- Modeling direct reactions.- Summary Talk on Advanced methods in the evaluation of nuclear scattering data.
Details
Erscheinungsjahr: | 1985 |
---|---|
Fachbereich: | Technik allgemein |
Genre: | Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Taschenbuch |
Reihe: | Lecture Notes in Physics |
Inhalt: |
vi
368 S. 9 s/w Illustr. 368 p. 9 illus. |
ISBN-13: | 9783540159902 |
ISBN-10: | 3540159908 |
Sprache: | Englisch |
Ausstattung / Beilage: | Paperback |
Einband: | Kartoniert / Broschiert |
Redaktion: |
Krappe, Hans J.
Institut Für Kernphysik Lipperheide, Reinhard |
Herausgeber: | Hans J Krappe/Reinhard Lipperheide/Institut für Kernphysik |
Hersteller: |
Springer-Verlag GmbH
Springer Berlin Heidelberg Lecture Notes in Physics |
Maße: | 244 x 170 x 21 mm |
Von/Mit: | Hans J. Krappe (u. a.) |
Erscheinungsdatum: | 01.10.1985 |
Gewicht: | 0,648 kg |
Inhaltsverzeichnis
to ill-posed aspects of nuclear scattering.- Ill-posed nature of inverse problems and their regularization (stability - estimates).- Statistical regularization.- The Bayesian approach to the analysis of scattering data.- Linear and nonlinear least squares computing.- The maximum entropy method.- Planning and evaluation of neutron diffraction experiments based on statistical considerations.- Jet analysis in electron-positron annihilation experiments.- Model independent densities from electron scattering.- Model-independent DWBA-analysis of inelastic electron scattering data.- Partial wave analyses of elastic meson-nucleon scattering.- Low energy proton-proton phase shift analysis.- Optimal polynomial expansions in the nucleon-nucleon phase shift analysis.- Phase-shift analysis in heavy-ion scattering.- Amplitude reconstruction in charged particles scattering.- Resonances and surface waves in nuclear and particle physics.- The regularization method in heavy-ion optical-potential analyses.- Determination of nuclear optical potentials by inversion.- Comparison of model-independent optical potential analyses.- Inversion as a means of understanding nuclear potentials.- Model-independent vs. model-dependent potentials for low energy ? and $$\bar p$$ scattering by nuclei.- Impact of Fourier-Bessel analyses on studies of composite particle scattering.- Fourier-Bessel analysis of polarized deuteron scattering.- Modeling direct reactions.- Summary Talk on Advanced methods in the evaluation of nuclear scattering data.
Details
Erscheinungsjahr: | 1985 |
---|---|
Fachbereich: | Technik allgemein |
Genre: | Technik |
Rubrik: | Naturwissenschaften & Technik |
Medium: | Taschenbuch |
Reihe: | Lecture Notes in Physics |
Inhalt: |
vi
368 S. 9 s/w Illustr. 368 p. 9 illus. |
ISBN-13: | 9783540159902 |
ISBN-10: | 3540159908 |
Sprache: | Englisch |
Ausstattung / Beilage: | Paperback |
Einband: | Kartoniert / Broschiert |
Redaktion: |
Krappe, Hans J.
Institut Für Kernphysik Lipperheide, Reinhard |
Herausgeber: | Hans J Krappe/Reinhard Lipperheide/Institut für Kernphysik |
Hersteller: |
Springer-Verlag GmbH
Springer Berlin Heidelberg Lecture Notes in Physics |
Maße: | 244 x 170 x 21 mm |
Von/Mit: | Hans J. Krappe (u. a.) |
Erscheinungsdatum: | 01.10.1985 |
Gewicht: | 0,648 kg |
Warnhinweis