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1. |
Record Nr. |
UNISA990001397640203316 |
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Autore |
BOCCA, Giorgio |
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Titolo |
Storia d'Italia nella guerra fascista / Giorgio Bocca |
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Pubbl/distr/stampa |
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Descrizione fisica |
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2 volumi (650 p. complessive) ; 22 cm |
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Collana |
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Soggetti |
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Italia - Storia - 1940-43 |
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Collocazione |
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X.3.B. 61/1(Varie coll.9/247) |
X.3.B. 61/2(Varie coll.9/248) |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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2. |
Record Nr. |
UNINA9910454406103321 |
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Titolo |
Computational fluid dynamics [[electronic resource] ] : proceedings of the Fourth UNAM Supercomputing Conference, Mexico City, Mexico, 27-30 June 2000 / / editors, Eduardo Ramos ... [et al.] |
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Pubbl/distr/stampa |
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River Edge, NJ, : World Scientific, c2001 |
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ISBN |
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1-281-96064-0 |
9786611960643 |
981-281-159-1 |
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Descrizione fisica |
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1 online resource (278 p.) |
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Altri autori (Persone) |
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Disciplina |
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Soggetti |
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Fluid dynamics - Data processing |
Fluid dynamics - Mathematical models |
Electronic books. |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references. |
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Nota di contenuto |
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Contents ; Preface ; Committees ; PART I. ASTROPHYSICS ; Very High Resolution Simulations of Compressible Turbulent Flows ; Instabilities and Filamentation of Dispersive Alfven Waves ; Astrophysical Jets |
A Nonhydrostatic Meteorological Model (Meso-NH) Applied to High Angular Resolution in Astronomy: 3D Characterization and Forecasting of the Optical Turbulence Numerical Simulations of Interplanetary Shock Waves Using ZEUS-3D ; Photoionizing Shocks in the Interstellar Medium |
Numerical Simulation of the Interaction between Jets and Supernova Remnants Thermal Instability in a Turbulent Medium ; Turbulent Dissipation in the Interstellar Medium in the Presence of Discrete Energy Sources |
The Density Probability Distribution Function in Turbulent Isothermal Magnetized Flows in a Slab Geometry Multifractal Structure in Simulations and Observations of the Interstellar Medium ; PART II. GEOPHYSICS ; Stratiform Low Clouds: Phenomenology and Large Eddy Simulations |
On the Modeling of Deep Convective Clouds over Mexico City Spectral Structure of Growing Normal Modes for Exact Solutions to the Barotropic Vorticity Equation on a Sphere ; PART III. NUMERICAL AND COMPUTATIONAL ASPECTS |
Distributed Parallel Simulation of Surface Tension Driven Viscous Flow and Transport Processes |
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Sommario/riassunto |
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This volume presents recent advances in computational fluid dynamics. The topics range from fundamentals and computational techniques to a wide variety of applications in astronomy, applied mathematics, meteorology, etc. They describe recent calculations in direct numerical simulation of turbulence, applications of turbulence modeling of pollution problems in mesoscale meteorology, industrial applications, etc. The emerging topic of parallelization of CFD codes is also presented. This volume will appeal to graduate students, researchers and anyone interested in using digital computation as a |
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3. |
Record Nr. |
UNINA9910963811303321 |
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Titolo |
Protein NMR spectroscopy : principles and practice / / editors, John Cavanagh ... [et al.] |
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Pubbl/distr/stampa |
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Amsterdam ; ; Boston, : Academic Press, c2007 |
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ISBN |
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1-280-96292-5 |
9786610962921 |
0-08-047103-X |
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Edizione |
[2nd ed.] |
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Descrizione fisica |
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1 online resource (915 pages) |
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Classificazione |
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Altri autori (Persone) |
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Disciplina |
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Soggetti |
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Proteins - Analysis |
Nuclear magnetic resonance spectroscopy |
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Lingua di pubblicazione |
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Formato |
Materiale a stampa |
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Livello bibliografico |
Monografia |
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Note generali |
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Description based upon print version of record. |
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Nota di bibliografia |
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Includes bibliographical references and index. |
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Nota di contenuto |
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Front cover; Title page; Copyright page; Preface; Preface to the First Edition; Acknowledgements; Table of Contents; 1 Classical NMR Spectroscopy; 1.1 Nuclear Magnetism; 1.2 The Bloch Equations; 1.3 The One-Pulse NMR Experiment; 1.4 Linewidth; 1.5 Chemical Shift; 1.6 Scalar Coupling and Limitations of the Bloch Equations; References; 2 Theoretical Description of NMR Spectroscopy; 2.1 Postulates of Quantum Mechanics; 2.2 The Density Matrix; 2.3 Pulses and Rotation Operators; 2.4 Quantum Mechanical NMR Spectroscopy; 2.5 Quantum Mechanics of Multispin Systems; 2.6 Coherence |
2.7 Product Operator Formalism2.8 Averaging of the Spin Hamiltonians and Residual Interactions; References; 3 Experimental Aspects of NMR Spectroscopy; 3.1 NMR Instrumentation; 3.2 Data Acquisition; 3.3 Data Processing; 3.4 Pulse Techniques; 3.5 Spin Decoupling; 3.6 B0 Field Gradients; 3.7 Water Suppression Techniques; 3.8 One-Dimensional 1H NMR Spectroscopy; References; 4 Multidimensional NMR Spectroscopy; 4.1 Two-Dimensional NMR Spectroscopy; 4.2 Coherence Transfer and Mixing; 4.3 Coherence Selection, Phase Cycling, and Field Gradients; 4.4 Resolution and Sensitivity |
4.5 Three- and Four-Dimensional NMR SpectroscopyReferences; 5 |
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Relaxation and Dynamic Processes; 5.1 Introduction and Survey of Theoretical Approaches; 5.2 The Master Equation; 5.3 Spectral Density Functions; 5.4 Relaxation Mechanisms; 5.5 Nuclear Overhauser Effect; 5.6 Chemical Exchange Effects in NMR Spectroscopy; References; 6 Experimental 1H NMR Methods; 6.1 Assessment of the 1D 1H Spectrum; 6.2 COSY-Type Experiments; 6.3 Multiple-Quantum Filtered COSY; 6.4 Multiple-Quantum Spectroscopy; 6.5 TOCSY; 6.6 Cross-Relaxation NMR Experiments; 6.7 1H 3D Experiments; References |
7 Heteronuclear NMR Experiments7.1 Heteronuclear Correlation NMR Spectroscopy; 7.2 Heteronuclear-Edited NMR Spectroscopy; 7.3 13C-13C Correlations: The HCCH-COSY and HCCH-TOCSY Experiments; 7.4 3D Triple-Resonance Experiments; 7.5 Measurement of Scalar Coupling Constants; 7.6 Measurement of Residual Dipolar Coupling Constants; References; 8 Experimental NMR Relaxation Methods; 8.1 Pulse Sequences and Experimental Methods; 8.2 Picosecond-Nanosecond Dynamics; 8.3 Microsecond-Second Dynamics; References; 9 Larger Proteins and Molecular Interactions; 9.1 Larger Proteins |
9.2 Intermolecular Interactions9.3 Methods for Rapid Data Acquisition; References; 10 Sequential Assignment, Structure Determination, and Other Applications; 10.1 Resonance Assignment Strategies; 10.2 Three-Dimensional Solution Structures; 10.3 Conclusion; References; Table of Symbols; List of Figures; List of Tables; Suggested Reading; Biomolecular NMR Spectroscopy; NMR Spectroscopy; Quantum Mechanics; Index; Spin-1/2 Product Operator Equations; Table of Constants |
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Sommario/riassunto |
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Protein NMR Spectroscopy combines a comprehensive theoretical treatment of NMR spectroscopy with an extensive exposition of the experimental techniques applicable to proteins and other biological macromolecules in solution. Beginning with simple theoretical models and experimental techniques, Protein NMR Spectroscopy develops the complete repertoire of theoretical principles and experimental techniques necessary for understanding and implementing the most sophisticated NMR experiments.Important new techniques and applications of NMR spectroscopy have emerged since the f |
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