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Geodesy and Physics of the Earth

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Table of Contents

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    Book Overview
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    Chapter 1 IAG President’s Address
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    Chapter 2 The Role of the International Association of Geodesy in Establishing User Services
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    Chapter 3 L.P. Pellinen — Scientific Memories
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    Chapter 4 The 1992 Activities of the International GPS Geodynamics Service (IGS)
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    Chapter 5 GPS Processing at GFZ for the IGS 1992 Campaign
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    Chapter 6 Automated Data Flow and Processing at the “Center for Orbit Determination in Europe” (CODE) during the 1992 IGS Campaign
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    Chapter 7 Results of the “Center for Orbit Determination in Europe” (CODE) during the IGS 1992 Campaign
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    Chapter 8 GPS Orbit Computations in Australia within the International GPS Geodynamics Service: Should We? Could We?
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    Chapter 9 Dynamics of the Solid Earth (DOSE): The Italian-German-Greek-Swiss Contribution to NASA’s DOSE Project in the Calabrian/Hellenic Arcs
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    Chapter 10 Structure and Activities of the Wegener in the Nineties
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    Chapter 11 Pamir — Tienshan GPS Project: Network, Observation Campaign 92 and Analysis Strategy
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    Chapter 12 High Precision Network for Geodynamic Studies in the Azores Gibraltar Area
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    Chapter 13 Geodynamical Investigations Program in Baksan Canyon Area
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    Chapter 14 TIGO — A New Transportable Integrated Geodetic Observatory
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    Chapter 15 First Results with Two-Colour Satellite Laser Ranging at the Fundamentalstation Wettzell
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    Chapter 16 The International Absolute Gravity Basestation Network (IAGBN): Status 1992
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    Chapter 17 Gravity Field Improvement Prospects from the Step Mission
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    Chapter 18 On the Principles and Prospects of Gravity Field Determination by Satellite Methods
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    Chapter 19 Global Gravitational Change from Space in 2001
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    Chapter 20 Improvement of GRIM4 Earth Gravity Models Using Geosat Altimeter and SPOT-2 and ERS-1 Tracking Data
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    Chapter 21 A Test of GEM T2 from Geosat Crossovers Using Latitude Lumped Coefficients
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    Chapter 22 OGE12, A New 360 Gravity Field Model
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    Chapter 23 D-PAF Quick-Look Sea Surface Height Monitoring with ERS-1 Fast Delivery Altimeter Data
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    Chapter 24 Preliminary Results for the Simultaneous Estimation of Geoid Undulations and Sea Surface Topography by Geosat Altimeter Data
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    Chapter 25 On Cross-Over Differences of the Radial Orbital Perturbations as Functions of Force Model Parameters
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    Chapter 26 Sea Surface Heights in the Lampedusa Test Field for Calibration of the Topex-Poseidon Altimeter
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    Chapter 27 Determination of the Gravitational Coefficient of the Earth from Lageos
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    Chapter 28 Investigation of Higher Degree Terms of the Solid Tide Potential as a Function of the Satellite Altitude of 1000–6000 km
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    Chapter 29 Mean Orbital Motion of Lageos Satellite Derived from Laser Ranging Observations
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    Chapter 30 Determination of Time Variations of the Geopotential from Orbit Analysis of Geodynamical Satellites
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    Chapter 31 Modeling the Upper Atmospheric Density with the Help of Satellite Data
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    Chapter 32 In-Orbit Testing of the “MACEK” Microaccelerometer
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    Chapter 33 Preliminary Results of a New Bouguer Map of Austria
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    Chapter 34 Gravity Field Determination for the Territory of Croatia
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    Chapter 35 Improved Geoid Solution for Slovenia and a Part of Croatia
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    Chapter 36 Comparison of Geoids from Several Geopotential Coefficients in Spain
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    Chapter 37 Gravimetric Data Validation in the Mediterranean Sea
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    Chapter 38 Simulation Studies for Improving the Geoid in Egypt
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    Chapter 39 Comparing Various Solutions for the Mohorovičić Discontinuity Shape in the Dinaric-Pannonian Region
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    Chapter 40 Kindredness of Three Mountain Belts at the Border of the Pannonian Basin — Deduced from the Behavior of the Mohorovičić Discontinuity
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    Chapter 41 Flightmechanical Aspects of Airborne Gravimetry
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    Chapter 42 The Greenland Airborne Gravity Project — Comparison of Airborne and Terrestrial Gravity Data
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    Chapter 43 Results and Comparisons of Repeated Precise Gravity Measurements on the Gravimetric West-East-Line
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    Chapter 44 Evaluation of Microgravimetry for Southern Central Andes Recent Crustal Movement Determination
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    Chapter 45 Joint Gravity Tide Recordings at Potsdam
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    Chapter 46 Air Pressure and Temperature Influence on the Extensometric Measurements at the Vyhne Tidal Station
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    Chapter 47 Planetary Waves in the Spectra of Air Pressure and Gravity Variations
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    Chapter 48 Systematic Errors Affecting the Accuracy of High Precision Gravity Measurements
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    Chapter 49 Installation of a Superconducting Gravimeter (SCG) at Gravimetric Observatory Potsdam
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    Chapter 50 Detection of Secular Gravity Variations; Observations with Superconducting Gravimeters Improve the Accuracy of Absolute Gravity Measurements
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    Chapter 51 Secular Gravity Variations
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    Chapter 52 Repeated Measurements of Vertical Gravity Gradient
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    Chapter 53 Possibility of Studying Variation of Horizontal Components of Gravitational Field with Classical Astrometric Instruments
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    Chapter 54 Gauge Theory, Field Equations of Gravitation, the Definition and Computation of the Spacetime Deforming Geoid
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    Chapter 55 Discrete Spherical Harmonic Analysis: Neumann’s Approach
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    Chapter 56 The Inversion of Potential Field Anomalies by the Assembling Method: The Third Dimension
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    Chapter 57 Maximal Correlation Adjustment in Physical Geodesy
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    Chapter 58 A Revision of Helmert’s Second Method of Condensation in Geoid and Quasigeoid Determination
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    Chapter 59 The Method of Gravity Inversion: Application to Density Modelling of the Lithosphere Along the Angola-Brazil Geotraverse
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    Chapter 60 Nonlinear Gravity Field Inversion Using Point Masses — Diagnosing Nonlinearity
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    Chapter 61 Integrated Processing of Satellite Orbit and Satellite Gradiometry Data
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    Chapter 62 Downward Continuation Versus Free-Air Reduction in Airborne Gravimetry
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    Chapter 63 Simultaneous Efficient Estimation of Gravimetric Network Parameters and Variation Coefficients of Devices
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    Chapter 64 A Group of Gravimeters, Stochastical Problems and Their Solution
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    Chapter 65 Vening Meinesz Moho Depths and Their Approximations
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    Chapter 66 On the Terrain Correction in the Atmospheric Gravity and Geoid Corrections
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    Chapter 67 Some Elementary Relations between Mass Distributions Inside the Earth and the Geoid and Gravity Field
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    Chapter 68 Excitement of the Toroidal Field in Mantle Convection
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    Chapter 69 Undulations of the Core-Mantle Boundary: Estimations and Observations
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    Chapter 70 Analysis of Crustal Deformations Based on SLR Data
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    Chapter 71 Tectonic Motion from LAGEOS SLR Data Using a Network Adjustment Technique
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    Chapter 72 Geodynamical Parameters and Reference Frame Determination from 1983–1991 Lageos SLR Data Analysis
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    Chapter 73 Results of ETALON Data Analysis
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    Chapter 74 Precise Determination of Baseline Changes by Simultaneous Range Differences (SRD)
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    Chapter 75 First Results of European Crustal Motion Measurements with VLBI
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    Chapter 76 Horizontal Velocity of Shanghai VLBI Station Relative to Eurasian Plate from VLBI
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    Chapter 77 Comparison and Combination of Different GPS-Reiceiver Types at a Distance of 50 km
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    Chapter 78 On the Connection of Baltic Tide Gauges to the Geocentric Reference Frame
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    Chapter 79 Global and Regional Network Analysis from GPS Phase Observations
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    Chapter 80 Relativistic Modelling of Precise Satellite Observations in a Geocentric Earthbounded Coordinate System
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    Chapter 81 The Use of Albedo for the Relation of Influences on the Satellite Orbits
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    Chapter 82 On the Redetermination for the Height of the World Highest Peak
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    Chapter 83 Geodynamic Studies in the Polish Part of the Teisseyre-Tornquist Zone
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    Chapter 84 The Connection of Recent Vertical Movements with Some Geological Characteristics Using Partial and Multiple Correlation Coefficients
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    Chapter 85 Variation of Point Positions and Gravity Field in the Area of Intensive Mining
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    Chapter 86 Geodetic Measurements and Their Impact on the Modeling of Recent Crustal Deformations in the Alpine Region
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    Chapter 87 A Deformation Model of the Mediterranean from Space Geodetic Observations and Geophysical Predictions
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    Chapter 88 Structures of Statistical Models for Studying Recent Crustal Movements
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    Chapter 89 The Recent Crustal Stress Field in Central Europe Sensu Latu
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    Chapter 90 Seismic-Gravity Modelling of the Continental Crust and Upper Mantle
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    Chapter 91 The Origin of Hotspots and The D” Layer
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    Chapter 92 Accuracy of High-Frequency Observations of Earth Orientation
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    Chapter 93 Diurnal and Semidiurnal Variations in Earth Orientation Determined from Lageos Laser Ranging
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    Chapter 94 High Resolution of Earth Rotation Parameters by Means of Satellite Data
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    Chapter 95 Nearly Diurnal Structure of Polar Motion Analysing Lageos SLR Data
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    Chapter 96 Epoch ’92: Results from the Analysis of GPS and SLR Data
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    Chapter 97 Continuity of UT1 Series from “Intensive” VLBI on Westford-Wettzell Baseline
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    Chapter 98 The Determination of the Tidal Variations of the Plumb Line and the Nearly Diurnal Free Wobble from the PZT Observations
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    Chapter 99 The Global Analysis of Time Determinations Made in Bucharest
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    Chapter 100 One Century Latitude Determinations at Potsdam
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    Chapter 101 Hipparcos Extragalactic Link and Earth Rotation Parameters
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    Chapter 102 Periodic Series of ΔUT1
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    Chapter 103 Variations of 80–120 Day Oscillations of Polar Motion and Atmospheric Angular Momentum
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    Chapter 104 The Autocovariance Prediction of the Earth Rotation Parameters
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    Chapter 105 The Influence of Solar Wind on Short Period of Earth’s Rotation
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    Chapter 106 High Frequency Oscillations of the Celestial Ephemeris Pole by Variations of the Effective Angular Momentum Function
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    Chapter 107 Global Sea Level Changes Inferred from Polar Motion
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    Chapter 108 Geomagnetic Implications of the Inner Core Precession
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Title
Geodesy and Physics of the Earth
Published by
Springer Berlin Heidelberg, December 2012
DOI 10.1007/978-3-642-78149-0
ISBNs
978-3-54-056572-7, 978-3-64-278149-0
Editors

Montag, Horst, Reigber, Christoph

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