• Produktbild: Geometrical Relationships of Macroscopic Nuclear Physics
  • Produktbild: Geometrical Relationships of Macroscopic Nuclear Physics

Geometrical Relationships of Macroscopic Nuclear Physics

Fr. 72.90

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

08.12.2011

Verlag

Springer Berlin

Seitenzahl

141

Maße (L/B/H)

24.4/17/0.9 cm

Gewicht

282 g

Auflage

Softcover reprint of the original 1st ed. 1988

Sprache

Englisch

ISBN

978-3-642-83019-8

Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

08.12.2011

Verlag

Springer Berlin

Seitenzahl

141

Maße (L/B/H)

24.4/17/0.9 cm

Gewicht

282 g

Auflage

Softcover reprint of the original 1st ed. 1988

Sprache

Englisch

ISBN

978-3-642-83019-8

Herstelleradresse

Springer-Verlag KG
Sachsenplatz 4-6
1201 Wien
AT

Email: GPSR Kontakt

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  • Produktbild: Geometrical Relationships of Macroscopic Nuclear Physics
  • Produktbild: Geometrical Relationships of Macroscopic Nuclear Physics
  • 1 Definition and Notation.- 1.1 Introduction.- 1.1.1 Liquid Drop Model.- 1.1.2 Droplet Model.- 1.2 Nuclear Radius Constant.- 1.3 Geometrical Quantities.- 1.3.1 Coordinate Systems.- 1.3.2 Radial Moments.- 1.3.3 Multipole Moments.- 1.3.4 Generalized Moments.- 1.3.5 Moments of Inertia.- 1.3.6 Other Moments.- 1.4 Surface Energies.- 1.4.1 Geometrical Surface Energy.- 1.4.2 Short Range Force Surface Energy.- 1.4.3 Proximity Energy.- 1.5 Coulomb Energies.- 1.5.1 Direct.- 1.5.2 Exchange.- 1.6 Curvature and Redistribution Energies, etc.- 1.7 Deformation Energies.- 1.8 Normal Modes and Dynamics.- 2 Characterization of Leptodermous Distributions.- 2.1 Introduction.- 2.2 The OriginaJ Surface Moments, Gm.- 2.3 The Surficial Moments, ?n.- 2.4 The Surface Shape Coefficients, ?n.- 2.5 Distributions Related by Folding.- 3 Folded Distributions.- 3.1 Definition.- 3.2 Normalization and Radial Moments.- 3.3 Multipole Moments.- 3.4 Moments of Inertia.- 3.5 Coulomb Energy.- 3.6 Specific Examples.- 4 Spllerically Symmetric Distributions.- 4.1 Sharp Sphere of Radius R.- 4.1.1 Uniform Density.- 4.1.2 Central Depression.- 4.2 Diffuse Surface Distributions.- 4.2.1 Leptodermous Distributions.- 4.2.2 Hill-Ford Distributions.- 4.2.3 Holodermous Distributions.- 4.2.4 Folded Distributions.- 5 Spheroidal Deformations.- 5.1 Spheroids.- 5.2 Nilsson Potential.- 6 Small Deformations.- 6.1 Spheroidal Expansion.- 6.2 Harmonic Expansions.- 6.2.1 ?n-Parameterization.- 6.2.2 ?n-Parameterization.- 6.2.3 ²n0-Parameterization.- 6.2.4 ?n-Parameterization.- 6.2.5 ?q-Parameterization.- 6.3 Distorted Spheroids.- 6.3.1 ?n-Parameterization.- 6.3.2 Spheroidal Coordinates.- 6.4 Relations Between Small Shape Parameters.- 6.5 Triaxial Shapes.- 6.5.1 Triaxial Ellipsoids.- 6.5.2 Bohr Parameterization.- 6.5.3 Higher Order Triaxial Shapes.- 7 Large Deformations.- 7.1 Arbitrary Shapes.- 7.1.1 Cylindrical Coordinates.- 7.1.2 Spherical Coordinates.- 7.2 Generalized Spheroids.- 7.2.1 Lawrence Shapes.- 7.2.2 Higher Algebraic Shapes.- 7.2.3 Funny Hills Parameterization.- 7.3 Cassinian Ovaloids.- 7.3.1 Symmetric Shapes.- 7.3.2, Distorted Shapes.- 7.3.3 Lemniscatoids.- 7.4 Matched Surfaces of Revolution.- 7.4.1 Matched Spheres.- 7.4.2 Dumbbells.- 7.4.3 Matched Quadratic Surfaces.- 7.4.4 Other Matched Surfaces.- 7.5 y-Family.- 8 Saddle Point Properties.- 8.1 Liquid Drop Barriers.- 8.2 Businaro-Gallone Point.- 8.3 Normal Modes.- 9 Separated Sllapes.- 9.1 Two Spheres.- 9.2 Two Spheroids.- 9.3 Two Distorted Spheres.- 9.4 Three Fragments.- 9.5 n-Spheres.- 10 Exotic Shapes.- 10.1 Toroids.- 10.2 Bubbles.- 11 Medium- and High-Energy Nuclear Collisions.- 11.1 Factorization.- 11.2 Different Approaches.- 11.2.1 Fireball Model.- 11.2.2 Firestreak Model.- 11.2.3 Rows-on-Rows.- 11.2.4 Knock-on Collisions.- 11.3 Density Distributions.- 11.3.1 Density Projected on a Plane.- Bibliograplly.- Citation Index.