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Generating families in the restricted three-body problem / Michel Hénon
Generating families in the restricted three-body problem / Michel Hénon
Autore Hénon, Michel
Pubbl/distr/stampa New York : Springer-Verlag, 1997
Descrizione fisica xi, 278 p. : ill. ; 24 cm.
Disciplina 521
Collana Lecture notes in physics. New series m. Monographs, 0940-7677 ; m52
Soggetto topico Three-body problem
Celestial mechanics
Artificial satellites-Orbits
ISBN 3540638024 (hardcover : alk. paper)
Classificazione LC QB362.T5
52.9.51
53.1.4
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISALENTO-991004035199707536
Hénon, Michel  
New York : Springer-Verlag, 1997
Materiale a stampa
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Gli azimut del sole per ogni grado di declinazione e di latitudine fra i paralleli 61° nord e 61° sud calcolati di dieci in dieci minuti / da Giacinto Albini e pubblicati per cura dell'Ufficio Idrografico della R. Marina sotto la direzione di G.B. Magnaghi
Gli azimut del sole per ogni grado di declinazione e di latitudine fra i paralleli 61° nord e 61° sud calcolati di dieci in dieci minuti / da Giacinto Albini e pubblicati per cura dell'Ufficio Idrografico della R. Marina sotto la direzione di G.B. Magnaghi
Autore Albini, Giacinto
Pubbl/distr/stampa Genova : Istituto Idrografico della R. Marina, 1916
Descrizione fisica 184p. : c. geogr. ; 27 cm.
Disciplina 521
Altri autori (Persone) Magnaghi, GB
Soggetto non controllato Astronomia
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione ita
Record Nr. UNIPARTHENOPE-000014577
Albini, Giacinto  
Genova : Istituto Idrografico della R. Marina, 1916
Materiale a stampa
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Gravitation relativiste [[electronic resource] /] / Rémi Hakim
Gravitation relativiste [[electronic resource] /] / Rémi Hakim
Autore Hakim Rémi
Pubbl/distr/stampa Les Ulis, France, : EDP Sciences, 2001
Descrizione fisica 1 online resource (328 p.)
Disciplina 521
Collana Savoirs actuels. Astrophysique
Soggetto topico Gravitation
Relativity (Physics)
ISBN 1-281-72828-4
9786611728281
2-7598-0272-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione fre
Nota di contenuto Frontmatter -- Table des matières -- Avant-propos -- 1. La gravitation newtonienne -- L‘espace-temps newtonien -- Simultanéité et mesure des distances* -- Les absolus de Newton et la notion d’éther -- Le principe d’inertie -- Les lois de la dynamique et de la relativité galiléenne -- Les principes d’inertie et de relativité vus par Galilée -- La gravitation newtonienne -- Mesure de la constante de gravitation -- Limites de la théorie newtonienne de la gravitation -- Le caractère fini de la vitesse de la lumière -- L‘expérience de Michelson -- Exercices -- 2. L’espace-temps de Minkowski -- Introduction -- L‘espace-temps de la Relativité Restreinte -- La transformation de Lorentz -- Remarques -- Causalité et simultanéité -- Temps et distances mesurés par des observateurs inertiels -- Propriétés globales de l’espace-temps -- Les vérifications expénmentales de la Relativité Restreinte -- Exercices -- 3. La forme relativiste des lois de la physique -- Le formalisme tensoriel -- L‘effet Doppler et le phénomène d’abenation -- La description cinématique du mouvement d’une particule -- La dynamique relativiste; E=mc2 -- L‘espace de Minkowski en coordonnées curvilignes -- Exercices -- 4. La gravitation et la Relativité Restreinte -- Introduction -- Le décalage gravitationnel vers le rouge -- La courbure des rayons lumineux -- L‘avance du périhélie de Mercure -- Nécessité d‘équations non linéaires pour la gravitation -- Exercices -- 5. L’électromagnétisme et l’hydrodynamique relativistes -- Densités et courants -- Les équations de l’électromagnétisme -- Le tenseur énergie-impulsion -- L‘hydrodynamique relativiste -- Exercices -- 6. Qu’est-ce qu’un espace courbe? -- Quelques manifestations de la courbure -- Courbure des surfaces à deux dimensions -- Signification de la courbure intrinsèque -- Surfaces de Rn - Espaces de Riemann -- Courbure intrinsèque d’une variété -- Propriétés du tenseur de courbure -- L‘espace-temps comme variété riemannienne -- Quelques propriétés des tenseurs dans un espace courbe -- Trois arguments en faveur d’un espace-temps courbe -- Exercices -- 7. Le principe d’équivalence -- Introduction -- Le principe d’équivalence faible et les expériences d’Eotvos-Dicke -- Le principe d‘équivalence et le couplage minimal -- Le décalage gravitationnel vers le rouge -- Mouvements géodésiques -- La déviation géodésique -- Le tenseur métrique à symétrie sphérique -- Aperçu du formalisme PPN -- Les tests classiques -- Les mirages gravitationnels -- Exercices -- 8. La gravitation relativiste d’Einstein (Relativité Générale) -- Introduction -- Les équations d’Einstein -- Autres déductions des équations d’Einstein -- La solution de Schwarzschild -- La géométrie locale des espaces de Friedman -- Autres métriques d’intérêt astrophysique -- Les équations d’Einstein linéarisées -- Ondes et rayonnement gravitationnels -- Exercices -- Appendice A : Généralités sur les tenseurs -- Appendice B : Formes différentielles extérieures -- Appendice C : Forme variationnelie des équations de champ -- Appendice D : Notion de variété -- Références -- Constantes physiques -- Index
Record Nr. UNINA-9910842093203321
Hakim Rémi  
Les Ulis, France, : EDP Sciences, 2001
Materiale a stampa
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Gravitational N-Body simulations / Sverre J. Aarseth
Gravitational N-Body simulations / Sverre J. Aarseth
Autore Aarseth, Sverre Johannes <1934- >
Edizione [Digitally printed version with corrections]
Pubbl/distr/stampa Cambridge, : Cambridge University Press, 2009
Descrizione fisica XV, 413 p. ; 25 cm
Disciplina 521
Collana Cambridge monographs on mathematical physics
Soggetto topico Problema a molti corpi
Meccanica celeste
ISBN 9780521121538
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISANNIO-NAP0480245
Aarseth, Sverre Johannes <1934- >  
Cambridge, : Cambridge University Press, 2009
Materiale a stampa
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Gravitational perturbation theory and synchrotron radiation / Reinhard A. Breuer
Gravitational perturbation theory and synchrotron radiation / Reinhard A. Breuer
Autore BREURE, Reinhard A.
Pubbl/distr/stampa Berlin : Springer, 1975
Descrizione fisica VI, 196 p. : ill. ; 24 cm
Disciplina 521
Collana Lecture notes in physics
Soggetto topico Meccanica celeste - Congressi
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISA-990003275020203316
BREURE, Reinhard A.  
Berlin : Springer, 1975
Materiale a stampa
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Handbook of satellites and space vehicles / [editors:] Robert P. Haviland [and] C. M. House
Handbook of satellites and space vehicles / [editors:] Robert P. Haviland [and] C. M. House
Pubbl/distr/stampa Princeton (N.J.) : Van Nostrand, c1965
Descrizione fisica xvi, 457 p. : ill. ; 27 cm
Disciplina 521
Collana Principles of guided missile design
Soggetto non controllato Comunicazioni spaziali
Satelliti
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNIPARTHENOPE-000013809
Princeton (N.J.) : Van Nostrand, c1965
Materiale a stampa
Lo trovi qui: Univ. Parthenope
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Helicities in geophysics, astrophysics, and beyond / / editors Kirill Kuzanyan [and three others]
Helicities in geophysics, astrophysics, and beyond / / editors Kirill Kuzanyan [and three others]
Edizione [First edition.]
Pubbl/distr/stampa Hoboken, NJ : , : John Wiley & Sons, Inc., , [2024]
Descrizione fisica 1 online resource (275 pages)
Disciplina 521
Collana Geophysical Monograph Series
Soggetto topico Particles (Nuclear physics) - Helicity
Geophysics
Astrophysics
ISBN 1-119-84171-2
1-119-84169-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Cover -- Title Page -- Copyright -- Contents -- List of Contributors -- Preface -- Part I Helicity Essentials: Basic and Fundamental Concepts -- Chapter 1 Introduction to Field Line Helicity -- 1.1 Definitions of Field Line Helicity -- 1.1.1 Definitions of Field Line Helicity for Closed Volumes -- 1.1.2 Definitions of Field Line Helicity for Open Volumes -- 1.1.3 Relative Field Line Helicity -- 1.2 Ideal Evolution -- 1.2.1 Simple Examples -- 1.2.2 Application to the Global Solar Corona -- 1.2.3 Application to Solar Active Regions -- 1.3 Non‐Ideal Evolution -- 1.3.1 Evolution Equation for Non‐Null Magnetic Fields -- 1.3.2 Application to Turbulent Magnetic Relaxation -- References -- Chapter 2 Magnetic Winding: Theory and Applications -- 2.1 Introduction -- 2.2 Relative Helicity -- 2.3 Magnetic Winding -- 2.3.1 Winding Helicity -- 2.3.2 Separating Out the Topology -- 2.3.3 Magnetic Winding Flux -- 2.4 Applications -- 2.4.1 Theoretical Examples -- 2.4.2 Solar Observations -- 2.5 Brief Historical Notes -- References -- Chapter 3 Transport in Helical Fluid Turbulence -- 3.1 Introduction -- 3.2 Helicity: Definition and Properties -- 3.3 Theoretical Analysis of Helicity Effects in Inhomogeneous Turbulence -- 3.3.1 Equations for Mean Fields and Fluctuation Fields -- 3.3.2 Statistical Analytical Theory for Inhomogeneous Turbulence -- 3.3.3 Analytical Expressions for Reynolds Stress and Vortex‐Motive Force -- 3.4 Turbulence Modeling with Helicity -- 3.4.1 Choice of One‐Point Statistical Quantities -- 3.4.2 Helicity Turbulence Model -- 3.5 Application to Swirling Flow -- 3.5.1 Swirling Flows -- 3.5.2 Characteristics of Turbulent Swirling Flow -- 3.5.3 Conventional Turbulence Model for Swirling Flow in a Straight Pipe -- 3.5.4 Analysis of Turbulent Swirling Flow with the Helicity Turbulence Model -- 3.6 Large‐Scale Flow Generation by Inhomogeneous Helicity.
3.6.1 Vortex Dynamos -- 3.6.2 Simple Argument on the Origin of Flow Generation Due to the Helicity Effect -- 3.6.3 Numerical Validation of Global Flow Generation Due to the Helicity Effect -- 3.6.4 Possible Applications in Spherical Geometry -- 3.7 Summary and Conclusion -- Acknowledgments -- References -- Part II Helicity Manifestations in Nature and Their Observations -- Chapter 4 Observations of Magnetic Helicity Proxies in the Solar Photosphere: Helicity With Solar Cycles -- 4.1 Introduction -- 4.2 Magnetic Helicity from Observations -- 4.2.1 Early Morphological Observations of Helical Patterns in the Solar Atmosphere -- 4.2.2 Magnetic Helicity from Solar Vector Magnetic Fields -- 4.3 Electric Current Helicity from Observations -- 4.3.1 Helicity from Solar Vector Magnetic Fields -- 4.3.2 Magnetic Helicity with Solar Cycles -- 4.4 Magnetic Helicity Injection on the Solar Surface -- 4.4.1 Magnetic Helicity Injection Inferred from Moving Magnetic Structures -- 4.4.2 Magnetic Helicity Injection with Solar Cycles -- 4.5 Magnetic Helicity as an Index in the High Solar Atmosphere -- 4.5.1 Hemispheric Distribution of Helical Coronal Soft X‐Ray Loops -- 4.5.2 Helicity with Solar Flare Cycles -- 4.6 Questions about Solar Dynamos with Observation of Magnetic Helicity -- 4.7 Discussion -- Acknowledgments -- References -- Chapter 5 Chirality of Solar Filaments and the Supporting Magnetic Field -- 5.1 Introduction -- 5.2 Magnetic Chirality of Solar Filaments -- 5.2.1 Fibril Orientation -- 5.2.2 Coronal Cells -- 5.2.3 Filament Drainage Brightening -- 5.3 Structural Chirality of Solar Filaments -- 5.4 Magnetic Configuration of Solar Filaments -- 5.5 Future Prospects -- Acknowledgments -- References -- Chapter 6 Solar Flares and Magnetic Helicity -- 6.1 Introduction -- 6.2 Basic Concepts and Formulations -- 6.3 Methods of Helicity Estimation.
6.3.1 Volume Helicity -- 6.3.2 Magnetic Helicity Flux -- 6.4 Practical Applications -- 6.4.1 Temporal Variation -- 6.4.2 Statistical Trends -- 6.4.3 Magnetic Tongues: A Proxy for the Helicity Sign -- 6.5 Numerical Models -- 6.5.1 Coronal Field Reconstructions -- 6.5.2 Idealized Simulations -- 6.6 Summary and Discussion -- Acknowledgments -- References -- Chapter 7 Magnetic Helicity Measurements in the Solar Wind -- 7.1 Introduction -- 7.2 The Parker Model as a Guide -- 7.3 Evaluating Magnetic Helicity -- 7.3.1 Uncurling the Vector Potential -- 7.3.2 Reduced Magnetic Helicity -- 7.3.3 Caveats -- 7.4 Helicity Profile in the Solar Wind -- 7.4.1 Reduced Helicity Spectra -- 7.4.2 Wave Picture of Magnetic Helicity -- 7.4.3 Scale and Hemispheric Dependencies -- 7.4.4 Solar Cycle Dependence -- 7.5 Summary and Outlook -- Acknowledgements -- References -- Chapter 8 Magnetic Helicity in Rotating Neutron Stars -- 8.1 Introduction -- 8.2 Theoretical Background -- 8.2.1 Mean Spin of the Electron Gas in an External Magnetic Field -- 8.2.2 Approximate Description of Chiral Plasma Based on Berry Phase Evolution -- 8.2.3 Electric Current and the Adler Anomaly in Inhomogeneous Matter Accounting for Electroweak Interaction -- 8.3 Astrophysical Applications -- 8.3.1 Quantum Surface Correction to the Chiral Anomaly in a Finite Volume of a Neutron Star -- 8.3.2 Magnetic Helicity Evolution as the Averaged Spin Flux through the Boundary of a Domain -- 8.3.3 Evolution of Magnetic Helicity in NSs -- 8.3.4 Magnetic Helicity Flow through the Equator of a Rotating NS -- 8.4 Conclusion -- References -- Chapter 9 Writhing From Biophysics to Solar Physics and Back -- 9.1 Introduction -- 9.2 Open Linking and Writhe -- 9.2.1 Fuller and Closures -- 9.2.2 Net Winding and the Polar Writhe -- 9.2.3 Helical‐to‐Loop Transition and Plectoneme Formation -- 9.2.4 Writhing as a Point of View.
9.3 Bounding the Writhe of Proteins -- 9.3.1 Introduction to Protein Knotting -- 9.3.2 A Note on Downsampling Proteins -- 9.3.3 Borrowing from Solar Physics, Again -- 9.3.4 Applying Polar Writhe to Proteins -- References -- Chapter 10 Kinetic Helicity in the Earth's Atmosphere -- 10.1 Introduction -- 10.2 General Information on Helicity -- 10.3 Helicity in Dynamic Atmospheric Processes -- 10.4 Helical Turbulence in the Earth's Atmosphere -- 10.5 Concluding Remarks and Outlook -- Acknowledgments -- References -- Part III Theoretical and Numerical Helicity Modeling -- Chapter 11 Effects of P-Noninvariance, Particles, and Dynamos -- 11.1 Introduction -- 11.2 Seed Magnetic Fields -- 11.3 Mirror Asymmetry and Helicity -- 11.4 Mean‐Field Dynamos in Relativistic Plasmas -- 11.4.1 Origin and Evolution of Alpha in the AMHD -- 11.4.2 The Influence of Turbulent Motion the CME in the Early Universe -- 11.4.3 Nascent Neutron Stars, Mirror Asymmetry, and Strong Magnetic Fields -- 11.5 Dynamo Driven by Neutrino Asymmetry in the Early Universe -- 11.6 Conclusions and Discussion -- References -- Chapter 12 Stability of Plasmas Through Magnetic Helicity -- 12.1 Introduction -- 12.2 Conservation of Helicity -- 12.3 Relaxation Equilibrium State -- 12.4 Field Relaxation Constraints -- 12.5 Plasma Stability -- 12.5.1 Solar Eruptions -- 12.5.2 Toroidal Fusion Plasma Fields -- 12.5.3 Numerical Experimental Evidence -- 12.6 Galactic and Intergalactic Media -- 12.6.1 Observations -- 12.6.2 Kelvin‐Helmholtz Instability -- 12.7 Helical Intergalactic Bubbles -- 12.7.1 Numerical Experiment -- 12.7.2 Helicity as a Stabilizer -- 12.8 Conclusions -- Acknowledgments -- References -- Chapter 13 Helicity-Conserving Relaxation in Unstable and Merging Twisted Magnetic Flux Ropes -- 13.1 Introduction -- 13.2 Kink Instability and Relaxation in the Solar Corona.
13.2.1 Relaxation in Kink‐Unstable Flux Ropes -- 13.2.2 Observable Signatures of Energy Release in Flux Ropes -- 13.3 Merging Flux Ropes -- 13.3.1 Flux Rope Merging in Spherical Tokamaks -- 13.3.2 Heating Avalanches in the Solar Corona -- 13.4 Discussion and Conclusions -- Acknowledgments -- References -- Chapter 14 Emergence of Magnetic Structure in Supersonic Isothermal Magnetohydrodynamic Turbulence -- 14.1 Introduction -- 14.2 Fourier Diagnostics and Shell‐to‐Shell and Helical Transfers -- 14.2.1 Shells, Spectra, and Cospectra -- 14.2.2 Helical Triadic Interactions -- 14.2.3 Shell‐to‐Shell Transfers -- 14.3 Results from Previous Research in Incompressible MHD -- 14.4 Numerical Method -- 14.5 Results -- 14.5.1 Spectra and Alfvénic Balance -- 14.5.2 Shell‐to‐Shell Transfers -- 14.6 Summary and Conclusion -- References -- Chapter 15 Nonlinear Mean-Field Dynamos With Magnetic Helicity Transport and Solar Activity: Sunspot Number and Tilt -- 15.1 Introduction -- 15.2 Mean‐Field Dynamos -- 15.3 Dynamic Nonlinearity: Transport of Magnetic Helicity -- 15.4 Formation of Sunspots -- 15.5 Observations of Proxies of Magnetic Helicity in the Sun -- 15.5.1 Observation of Solar Vector Magnetic Fields -- 15.5.2 Computation of Current Helicity -- 15.6 Nonlinear Model of a Mean‐Field Dynamo and Dynamics of the Sunspot Number -- 15.7 The Effect of Magnetic Helicity Transport and Prediction of Solar Activity -- 15.8 The Mean Tilt of Sunspot Bipolar Regions -- 15.9 Concluding Remarks -- Acknowledgments -- References -- Chapter 16 The Spatial Segregation of Kinetic Helicity in Geodynamo Simulations -- 16.1 Introduction -- 16.2 Importance of Kinetic Helicity in Dynamo Action -- 16.2.1 Helicity in Dynamo Simulations -- 16.2.2 Lack of a Satisfactory Explanation for Helicity Segregation outside the TC -- 16.3 Sources of Helicity -- 16.3.1 Evolution Equation.
16.3.2 Body Forces and Flux of Helicity.
Record Nr. UNINA-9910830808403321
Hoboken, NJ : , : John Wiley & Sons, Inc., , [2024]
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Impacts on earth / Daniel Benest ...[et al.] (eds.)
Impacts on earth / Daniel Benest ...[et al.] (eds.)
Pubbl/distr/stampa Berlin : Springer, copyr. 1998
Descrizione fisica XVII, 223 p. : ill. ; 23 cm
Disciplina 521
Collana Lecture notes in physics
Soggetto non controllato meccanica celeste
ISBN 3-540-64209-9
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISA-990000219420203316
Berlin : Springer, copyr. 1998
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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Integrable systems in celestial mechanics [[electronic resource] /] / Diarmuid O Mathúna
Integrable systems in celestial mechanics [[electronic resource] /] / Diarmuid O Mathúna
Autore Ó Mathúna Diarmuid
Edizione [1st ed. 2008.]
Pubbl/distr/stampa Boston, Mass., : Birkhäuser
Descrizione fisica 1 online resource (240 p.)
Disciplina 521
Collana Progress in mathematical physics
Soggetto topico Celestial mechanics
Two-body problem
Soggetto genere / forma Electronic books.
ISBN 1-281-95454-3
9786611954543
0-8176-4595-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto General Introduction -- Lagrangian Mechanics -- The Kepler Problem -- The Euler Problem I — Planar Case -- The Euler Problem II — Three-dimensional Case -- The Earth Satellite — General Analysis -- The Earth Satellite — Some Special Orbits.
Record Nr. UNINA-9910453411803321
Ó Mathúna Diarmuid  
Boston, Mass., : Birkhäuser
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Integrable systems in celestial mechanics [[electronic resource] /] / Diarmuid O Mathúna
Integrable systems in celestial mechanics [[electronic resource] /] / Diarmuid O Mathúna
Autore Ó Mathúna Diarmuid
Edizione [1st ed. 2008.]
Pubbl/distr/stampa Boston, Mass., : Birkhäuser
Descrizione fisica 1 online resource (240 p.)
Disciplina 521
Collana Progress in mathematical physics
Soggetto topico Celestial mechanics
Two-body problem
ISBN 1-281-95454-3
9786611954543
0-8176-4595-0
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto General Introduction -- Lagrangian Mechanics -- The Kepler Problem -- The Euler Problem I — Planar Case -- The Euler Problem II — Three-dimensional Case -- The Earth Satellite — General Analysis -- The Earth Satellite — Some Special Orbits.
Record Nr. UNINA-9910782362903321
Ó Mathúna Diarmuid  
Boston, Mass., : Birkhäuser
Materiale a stampa
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