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  • Books  (19)
  • 2015-2019  (6)
  • 2010-2014  (13)
  • Geophysics  (19)
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  • Books  (19)
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  • 1
    Call number: S 97.0506
    In: Forschungsbericht
    Type of Medium: Series available for loan
    Pages: IV, 95 S. , Ill., graph. Darst.
    Edition: Als Ms. gedruckt
    ISBN: 9783941721616
    Series Statement: DGMK research report 741-1
    Classification:
    Geophysics
    Language: English
    Location: Lower compact magazine
    Branch Library: GFZ Library
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  • 2
    Call number: M 17.90813
    Type of Medium: Monograph available for loan
    Pages: 402 Seiten
    Classification:
    Geophysics
    Location: Upper compact magazine
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  • 3
    Call number: 9/M 07.0421(446)
    In: Geological Society special publication ; 446
    Type of Medium: Series available for loan
    Pages: 382 Seiten , Illustrationen, Karten, Diagramme
    ISBN: 9781786202765
    Series Statement: Special publication / Geological Society of London no. 446
    Classification:
    Geophysics
    Language: English
    Location: Reading room
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  • 4
    Monograph available for loan
    Monograph available for loan
    Amsterdam : Elsevier
    Call number: M 18.91612
    Description / Table of Contents: Front Cover -- Machine Learning Techniques for Space Weather -- Copyright -- Contents -- Contributors -- Introduction -- Machine Learning and Space Weather -- Scope and Structure of the Book -- Acknowledgments -- References -- Part I: Space Weather -- Chapter 1: Societal and Economic Importance of Space Weather -- 1 What is Space Weather? -- 2 Why Now? -- 3 Impacts -- 3.1 Geomagnetically Induced Currents -- 3.2 Global Navigation Satellite Systems -- 3.3 Single-Event Effects -- 3.4 Other Radio Systems -- 3.5 Satellite Drag -- 4 Looking to the Future -- 5 Summary and Conclusions -- Acknowledgments -- References -- Chapter 2: Data Availability and Forecast Products for Space Weather -- 1 Introduction -- 2 Data and Models Based on Machine Learning Approaches -- 3 Space Weather Agencies -- 3.1 Government Agencies -- 3.1.1 NOAA's Data and Products -- 3.1.2 NASA -- 3.1.3 European Space Agency -- 3.1.4 The US Air Force Weather Wing -- 3.2 Academic Institutions -- 3.2.1 Kyoto University, Japan -- 3.2.2 Rice University, USA -- 3.2.3 Laboratory for Atmospheric and Space Physics, USA -- 3.3 Commercial Providers -- 3.4 Other Nonprofit, Corporate Research Agencies -- 3.4.1 USGS -- 3.4.2 JHU Applied Physics Lab -- 3.4.3 US Naval Research Lab -- 3.4.4 Other International Service Providers -- 4 Summary -- References -- Part II: Machine Learning -- Chapter 3: An Information-Theoretical Approach to Space Weather -- 1 Introduction -- 2 Complex Systems Framework -- 3 State Variables -- 4 Dependency, Correlations, and Information -- 4.1 Mutual Information as a Measure of Nonlinear Dependence -- 4.2 Cumulant-Based Cost as a Measure of Nonlinear Dependence -- 4.3 Causal Dependence -- 4.4 Transfer Entropy and Redundancy as Measures of Causal Relations -- 4.5 Conditional Redundancy -- 4.6 Significance of Discriminating Statistics
    Description / Table of Contents: 4.7 Mutual Information and Information Flow -- 5 Examples From Magnetospheric Dynamics -- 6 Significance as an Indicator of Changes in Underlying Dynamics -- 6.1 Detecting Dynamics in a Noisy System -- 6.2 Cumulant-Based Information Flow -- 7 Discussion -- 8 Summary -- Acknowledgments -- References -- Chapter 4: Regression -- 1 What is Regression? -- 2 Learning From Noisy Data -- 2.1 Prediction Errors -- 2.2 A Probabilistic Set-Up -- 2.3 The Least Squares Method for Linear Regression -- 2.3.1 The Least Squares Method and the Best Linear Predictor -- 2.3.2 The Least Squares Method and the Maximum Likelihood Principle -- 2.3.3 A More General Approach and Higher-Order Predictors -- 2.4 Overfitting -- 2.4.1 The Order Selection Problem -- Error Decomposition: The Bias Versus Variance Trade-Off -- Some Popular Order Selection Criteria -- 2.4.2 Regularization -- 2.5 From Point Predictors to Interval Predictors -- 2.5.1 Distribution-Free Interval Predictors -- 2.6 Probability Density Estimation -- 3 Predictions Without Probabilities -- 3.1 Approximation Theory -- Dense Sets -- Best Approximator -- 3.1.1 Neural Networks -- The Backpropagation Algorithm: High-Level Idea -- Multiple Layers Networks (Deep Networks) -- 4 Probabilities Everywhere: Bayesian Regression -- 4.1 Gaussian Process Regression -- 5 Learning in the Presence of Time: Identification of Dynamical Systems -- 5.1 Linear Time-Invariant Systems -- 5.2 Nonlinear Systems -- References -- Chapter 5: Supervised Classification: Quite a Brief Overview -- 1 Introduction -- 1.1 Learning, Not Modeling -- 1.2 An Outline -- 2 Classifiers -- 2.1 Preliminaries -- 2.2 The Bayes Classifier -- 2.3 Generative Probabilistic Classifiers -- 2.4 Discriminative Probabilistic Classifiers -- 2.5 Losses and Hypothesis Spaces -- 2.5.1 0-1 Loss -- 2.5.2 Convex Surrogate Losses
    Description / Table of Contents: 2.5.3 Particular Surrogate Losses -- 2.6 Neural Networks -- 2.7 Neighbors, Trees, Ensembles, and All that -- 2.7.1 k Nearest Neighbors -- 2.7.2 Decision Trees -- 2.7.3 Multiple Classifier Systems -- 3 Representations and Classifier Complexity -- 3.1 Feature Transformations -- 3.1.1 The Kernel Trick -- 3.2 Dissimilarity Representation -- 3.3 Feature Curves and the Curse of Dimensionality -- 3.4 Feature Extraction and Selection -- 4 Evaluation -- 4.1 Apparent Error and Holdout Set -- 4.2 Resampling Techniques -- 4.2.1 Leave-One-Out and k-Fold Cross-Validation -- 4.2.2 Bootstrap Estimators -- 4.2.3 Tests of Significance -- 4.3 Learning Curves and the Single Best Classifier -- 4.4 Some Words About More Realistic Scenarios -- 5 Regularization -- 6 Variations on Standard Classification -- 6.1 Multiple Instance Learning -- 6.2 One-Class Classification, Outliers, and Reject Options -- 6.3 Contextual Classification -- 6.4 Missing Data and Semisupervised Learning -- 6.5 Transfer Learning and Domain Adaptation -- 6.6 Active Learning -- Acknowledgments -- References -- Part III: Applications -- Chapter 6: Untangling the Solar Wind Drivers of the Radiation Belt: An Information Theoretical Approach -- 1 Introduction -- 2 Data Set -- 3 Mutual Information, Conditional Mutual Information, and Transfer Entropy -- 4 Applying Information Theory to Radiation Belt MeV Electron Data -- 4.1 Radiation Belt MeV Electron Flux Versus Vsw -- 4.2 Radiation Belt MeV Electron Flux Versus nsw -- 4.3 Anticorrelation of Vsw and nsw and Its Effect on Radiation Belt -- 4.4 Ranking of Solar Wind Parameters Based on Information Transfer to Radiation Belt Electrons -- 4.5 Detecting Changes in the System Dynamics -- 5 Discussion -- 5.1 Geo-Effectiveness of Solar Wind Velocity -- 5.2 nsw and Vsw Anticorrelation
    Description / Table of Contents: 5.3 Geo-Effectiveness of Solar Wind Density -- 5.4 Revisiting the Triangle Distribution -- 5.5 Improving Models With Information Theory -- 5.5.1 Selecting Input Parameters -- 5.5.2 Detecting Nonstationarity in System Dynamics -- 5.5.3 Prediction Horizon -- 6 Summary -- Acknowledgments -- References -- Chapter 7: Emergence of Dynamical Complexity in the Earth's Magnetosphere -- 1 Introduction -- 2 On Complexity and Dynamical Complexity -- 3 Coherence and Intermittent Features in Time Series Geomagnetic Indices -- 4 Scale-Invariance and Self-Similarity in Geomagnetic Indices -- 5 Near-Criticality Dynamics -- 6 Multifractional Features and Dynamical Phase Transitions -- 7 Summary -- Acknowledgments -- References -- Chapter 8: Applications of NARMAX in Space Weather -- 1 Introduction -- 2 NARMAX Methodology -- 2.1 Forward Regression Orthogonal Least Square -- 2.2 The Noise Model -- 2.3 Model Validation -- 2.4 Summary -- 3 NARMAX and Space Weather Forecasting -- 3.1 Geomagnetic Indices -- 3.1.1 SISO Dst Index -- 3.1.2 Continuous Time Dst model -- 3.1.3 MISO Dst -- 3.1.4 Kp Index -- 3.2 Radiation Belt Electron Fluxes -- 3.2.1 GOES High Energy -- 3.2.2 SNB3GEO Comparison With NOAA REFM -- 3.2.3 GOES Low Energy -- 3.3 Summary of NARMAX Models -- 4 NARMAX and Insight Into the Physics -- 4.1 NARMAX Deduced Solar Wind-Magnetosphere Coupling Function -- 4.2 Identification of Radiation Belt Control Parameters -- 4.2.1 Solar Wind Density Relationship With Relativistic Electrons at GEO -- 4.2.2 Geostationary Local Quasilinear Diffusion vs. Radial Diffusion -- 4.3 Frequency Domain Analysis of the Dst Index -- 5 Discussions and Conclusion -- References -- Chapter 9: Probabilistic Forecasting of Geomagnetic Indices Using Gaussian Process Models -- 1 Geomagnetic Time Series and Forecasting -- 2 Dst Forecasting
    Description / Table of Contents: 2.1 Models and Algorithms -- 2.2 Probabilistic Forecasting -- 3 Gaussian Processes -- 3.1 Gaussian Process Regression: Formulation -- 3.2 Gaussian Process Regression: Inference -- 4 One-Hour Ahead Dst Prediction -- 4.1 Data Source: OMNI -- 4.2 Gaussian Process Dst Model -- 4.3 Gaussian Process Auto-Regressive (GP-AR) -- 4.4 GP-AR With eXogenous Inputs (GP-ARX) -- 5 One-Hour Ahead Dst Prediction: Model Design -- 5.1 Choice of Mean Function -- 5.2 Choice of Kernel -- 5.3 Model Selection: Hyperparameters -- 5.3.1 Grid Search -- 5.3.2 Coupled Simulated Annealing -- 5.3.3 Maximum Likelihood -- 5.4 Model Selection: Auto-Regressive Order -- 6 GP-AR and GP-ARX: Workflow Summary -- 7 Practical Issues: Software -- 8 Experiments and Results -- 8.1 Model Selection and Validation Performance -- 8.2 Comparison of Hyperparameter Selection Algorithms -- 8.3 Final Evaluation -- 8.4 Sample Predictions With Error Bars -- 9 Conclusion -- References -- Chapter 10: Prediction of MeV Electron Fluxes and Forecast Verification -- 1 Relativistic Electrons in Earth's Outer Radiation Belt -- 1.1 Source, Loss, Transport, and Acceleration, Variation -- 2 Numerical Techniques in Radiation Belt Forecasting -- 3 Relativistic Electron Forecasting and Verification -- 3.1 Forecast Verification -- 3.2 Relativistic Electron Forecasting -- 4 Summary -- References -- Chapter 11: Artificial Neural Networks for Determining Magnetospheric Conditions -- 1 Introduction -- 2 A Brief Review of ANNs -- 3 Methodology and Application -- 3.1 The DEN2D Model -- 4 Advanced Applications -- 4.1 The DEN3D Model -- 4.2 The Chorus and Hiss Wave Models -- 4.3 Radiation Belt Flux Modeling -- 5 Summary and Discussion -- Acknowledgments -- References -- Chapter 12: Reconstruction of Plasma Electron Density From Satellite Measurements Via Artificial Neural Networks
    Description / Table of Contents: 1 Overview
    Type of Medium: Monograph available for loan
    Pages: xviii, 433 Seiten , Illustrationen
    ISBN: 978-0-12-811788-0
    Classification:
    Geophysics
    Language: English
    Location: Upper compact magazine
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  • 5
    Call number: 5/M 18.91297
    Type of Medium: Monograph available for loan
    Pages: XIV, 482 S. , Ill., graph. Darst. , 24 cm
    Edition: 3rd, enl. ed.
    ISBN: 9783642058295 , 3642058299 , 3540206175
    URL: Cover
    Classification:
    Geophysics
    Language: English
    Location: Reading room
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  • 6
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer Spektrum
    Call number: 5/M 13.0286
    Description / Table of Contents: Das Buch führt Anfänger auf einem mittleren Niveau in die Physik der Erde ein. Das heißt, es reicht deutlich über eine rein phänomenologische Beschreibung hinaus, indem es die physikalischen Grundlagen der behandelten Phänomene systematisch erläutert, jedoch ohne eine der weiteren Spezialisierung vorbehaltene Detailtiefe. Die Erde wird anhand von Prozessen und Feldern beschrieben, die die Erde als Ganzes betreffen. Zunächst wird ihre Position im Weltall skizziert sowie ihr genereller Aufbau. Danach folgt die Beschreibung von Methoden zur physikalischen Altersbestimmung ("wie alt sind Gesteine und wie kann man das messen?"; Seismologie ("Erdbeben und die innere Struktur der Erde"); Schwerefeld und Figur der Erde; Erdmagnetfeld; Temperaturfeld der Erde. Jedem Kapitel ist ein kurzer historischer Abriss des jeweiligen Themas vorangestellt. Mathematische Ableitungen werden - wo erforderlich - im Detail erläutert. Der Text führt in die jeweilige deutsche und englische Fachterminologie ein, vermeidet jedoch unnötige Verklausulierungen. Übungsaufgaben mit durchgerechneten Ergebnissen ermöglichen ein eigenständiges Überprüfen des erlangten Verständnisses. Bachelorstudierenden der Geophysik, Geowissenschaften und ähnlicher Programme sowie Nebenfachstudierende der Physik, Umweltwissenschaften und Geoökologie wird ein grundlegendes Verständnis der Phänomene, Prozesse und globalen physikalischen Felder der Erde vermittelt.
    Type of Medium: Monograph available for loan
    Pages: XII, 407 S. : zahlr. farb. Ill. und graph. Darst.
    ISBN: 9783642044953
    Series Statement: Lehrbuch
    Classification:
    Geophysics
    Location: Reading room
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  • 7
    Call number: 21/STR 10/07
    In: Scientific technical report
    Type of Medium: Series available for loan
    Pages: xv, 117 S. : Ill., graph. Darst.
    Series Statement: Scientific technical report / Deutsches GeoForschungsZentrum GFZ 10/07
    Classification:
    Geophysics
    Note: Zugl.: Potsdam, Univ., Diss., 2010
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  • 8
    Call number: S 97.0296(21)
    In: Small publications in historical geophysics
    Type of Medium: Series available for loan
    Pages: 18 S.
    Series Statement: Small publications in historical geophysics 21
    Classification:
    Geophysics
    Location: Lower compact magazine
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  • 9
    Call number: M 14.0079
    Type of Medium: Monograph available for loan
    Pages: 290 S.
    Classification:
    Geophysics
    Location: Upper compact magazine
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  • 10
    Call number: 9/M 07.0421(406)
    In: Geological Society special publication
    Description / Table of Contents: This volume highlights key challenges for fluid-flow prediction in carbonate reservoirs, the approaches currently employed to address these challenges and developments in fundamental science and technology. The papers span methods and case studies that highlight workflows and emerging technologies in the fields of geology, geophysics, petrophysics, reservoir modelling and computer science. Topics include: detailed pore-scale studies that explore fundamental processes and applications of imaging and flow modelling at the pore scale; case studies of diagenetic processes with complementary perspectives from reactive transport modelling; novel methods for rock typing; petrophysical studies that investigate the impact of diagenesis and fault-rock properties on acoustic signatures; mechanical modelling and seismic imaging of faults in carbonate rocks; modelling geological influences on seismic anisotropy; novel approaches to geological modelling; methods to represent key geological details in reservoir simulations and advances in computer visualization, analytics and interactions for geoscience and engineering.
    Type of Medium: Monograph available for loan
    Pages: VI, 473 S. : z. T. farb. Ill., graph. Darst., Kt.
    ISBN: 9781862396593
    Series Statement: Geological Society special publication 406
    Classification:
    Geophysics
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  • 11
    Monograph available for loan
    Monograph available for loan
    Cham : Springer International Publishing
    Call number: 5/M 14.0244
    Description / Table of Contents: This unitary resource sets out the derivation of conservation, thermodynamic, and evolution equations used in modeling multiphase porous media systems. It includes detailed, multiscale applications and a forward-looking discussion of open research issues. Thermodynamically constrained averaging theory provides a consistent method for upscaling conservation and thermodynamic equations for application in the study of porous medium systems. The method provides dynamic equations for phases, interfaces, and common curves that are closely based on insights from the entropy inequality. All larger scale variables in the equations are explicitly defined in terms of their microscale precursors, facilitating the determination of important parameters and macroscale state equations based on microscale experimental and computational analysis. The method requires that all assumptions that lead to a particular equation form be explicitly indicated, a restriction which is useful in ascertaining the range of applicability of a model as well as potential sources of error and opportunities to improve the analysis.
    Description / Table of Contents: Chapter 1 Elements of Thermodynamically Constrained Averaging Theory.- Chapter 2 Microscale Conservation Principles.- Chapter 3 Microscale Thermodynamics.- Chapter 4 Microscale Equilibrium Conditions.- Chapter 5 Microscale Closure for a Fluid Phase.- Chapter 6 Macroscale Conservation Principles.- Chapter 7 Macroscale Thermodynamics.- Chapter 8 Evolution Equations.- Chapter 9 Single-Fluid-Phase Flow.- Chapter 10 Single-Fluid-Phase Species Transport.- Chapter 11 Two-Phase Flow.- Chapter 12 Modeling Approach and Extensions.- Appendix A Considerations on Calculus of Variations.- Appendix B Derivations of Averaging Theorems.- Appendix C Constrained Entropy Inequality Derivations.- Index.
    Type of Medium: Monograph available for loan
    Pages: XXXIV, 582 S. : z.T. farb. Ill.
    ISBN: 9783319040097
    Series Statement: Advances in Geophysical and Environmental Mechanics and Mathematics
    Classification:
    Geophysics
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  • 12
    Call number: M 15.0087
    Type of Medium: Monograph available for loan
    Pages: 374 S.
    Classification:
    Geophysics
    Location: Upper compact magazine
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  • 13
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: 5/M 12.0216
    Description / Table of Contents: Contents: 1. Introduction; 2. Gravity (Exercises 1-68); 3. Geomagnetism (Exercises 69-110); 4. Seismology (Exercises 111-179); 5. Heat flow and geochronology (Exercises 180-197)
    Type of Medium: Monograph available for loan
    Pages: viii, 354 S. , graph. Darst.
    ISBN: 9781107602717
    Classification:
    Geophysics
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  • 14
    Call number: M 13.0100
    Type of Medium: Monograph available for loan
    Pages: 392 S.
    Classification:
    Geophysics
    Location: Upper compact magazine
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  • 15
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: 5/M 12.0348
    Description / Table of Contents: "Presenting a coherent synthesis of lithosphere studies, this book covers a range of geophysical methods (seismic reflection, refraction, and receiver function methods; elastic and anelastic seismic tomography; electromagnetic and magnetotelluric methods; thermal, gravity and rheological models), complemented by petrologic and laboratory data on rock properties. It also provides a critical discussion of the uncertainties, assumptions, and resolution issues that are inherent in the different methods and models of the lithosphere. Multidisciplinary in scope, global in geographical extent, and covering a wide variety of tectonics settings across 3.5 billion years of Earth history, this book presents a comprehensive overview of lithospheric structure and evolution. It is a core reference for researchers and advanced students in geophysics, geodynamics, tectonics, petrology, and geochemistry, and for petroleum and mining industry professionals"--
    Description / Table of Contents: "Modern studies of Earth science suffer from fragmentation into a large number of sub-disciplines with limited dialog between them and artificial distinctions between the results based on different approaches. This problem has been particularly acute in the area of lithospheric research where different geophysical techniques have given rise to a multitude of definitions of the lithosphere - seismic, thermal, electrical, mechanical and petrological. This book presents a coherent synthesis of our current state-of-knowledge in lithosphere studies based on a full set of geophysical methods (seismic reflection, refraction, and receiver function methods; elastic and anelastic seismic tomography; electromagnetic and magnetotelluric methods; thermal, gravity and rheological models) and complemented by petrologic and laboratory data on rock properties. It also provides a critical discussion of the uncertainties, assumptions, and resolution issues that are inherent in the different methods and models"--
    Type of Medium: Monograph available for loan
    Pages: XIX, 773 S. , Ill., graph. Darst., Kt. , 26 cm
    ISBN: 0521843960 , 978-0-521-84396-6
    Classification:
    Geophysics
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  • 16
    Call number: M 14.0230
    In: Modern approaches in solid earth sciences
    Description / Table of Contents: Contents: Geophysical studies of the crustal structure along the Dead Sea fault. -Geophysical studies of the lithosphere along the Dead Sea transform. - The seismogenic thickness along the Dead Sea transform. - The Dead Sea transform and the volcanism in northwestern Arabia. - Lateral motion and deformation along the Dead Sea transform. - Pleistocene strain partitioning during transpression along the Dead Sea fault, Metulla Saddle, northern Israel. - Review of on-fault palaeoseismic studies along the Dead Sea fault. - Pre-instrumental earthquakes along the Dead Sea rift. - Instrumental data on the seismic activity along the Dead Sea transform. - Evolution of Neogene-Quaternary waterbodies in the Dead Sea rift and their global climate relation. - Saline water in the Dead Sea rift - the role of runoff and relative humidity.
    Type of Medium: Monograph available for loan
    Pages: 369 S. : z.T. farb. Ill., graph. Darst.
    ISBN: 9789401788724
    Series Statement: Modern approaches in solid earth sciences 6
    Classification:
    Geophysics
    Location: Lower compact magazine
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  • 17
    Call number: M 11.0225/1-2
    In: Encyclopedia of earth sciences series
    Description / Table of Contents: This volume provides systematic, up-to-date coverage of important aspects of Solid Earth Geophysics, including reviews and articles by leading experts. The book is organized to present terms, topics and phrases alphabetically in an easily referenced manner
    Pages: Vol. 1-2
    ISBN: 9789048187324
    Series Statement: Encyclopedia of earth sciences series
    Classification:
    Geophysics
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  • 18
    Monograph available for loan
    Monograph available for loan
    Cambridge [u.a.] : Cambridge Univ. Press
    Call number: 5/M 12.0087
    Description / Table of Contents: "The advent of accessible student computing packages has meant that geophysics students can now easily manipulate datasets and gain first-hand modeling experience - essential in developing an intuitive understanding of the physics of the Earth. Yet to gain a more in-depth understanding of physical theory, and to develop new models and solutions, it is necessary to be able to derive the relevant equations from first principles. This compact, handy book fills a gap left by most modern geophysics textbooks, which generally do not have space to derive all of the important formulae, showing the intermediate steps. This guide presents full derivations for the classical equations of gravitation, gravity, tides, earth rotation, heat, geomagnetism and foundational seismology, illustrated with simple schematic diagrams. It supports students through the successive steps and explains the logical sequence of a derivation - facilitating self-study and helping students to tackle homework exercises and prepare for exams"--
    Type of Medium: Monograph available for loan
    Pages: xiii, 281 S. , Ill., graph. Darst.
    ISBN: 9780521183772
    Classification:
    Geophysics
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  • 19
    Call number: M 12.0081
    Type of Medium: Monograph available for loan
    Pages: 376 S.
    Classification:
    Geophysics
    Location: Upper compact magazine
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