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Observing our Changing Earth

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Cover of 'Observing our Changing Earth'

Table of Contents

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    Book Overview
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    Chapter 1 Reference Systems, Reference Frames, and the Geodetic Datum
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    Chapter 2 Observing our Changing Earth
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    Chapter 3 On the Strength of SLR Observations to Realize the Scale and Origin of the Terrestrial Reference System
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    Chapter 4 Impact of the Network Effect on the Origin and Scale: Case Study of Satellite Laser Ranging
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    Chapter 5 Satellite Laser Ranging Biases and Terrestrial Reference Frame Scale Factor
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    Chapter 6 Status of the European Reference Frame (EUREF)
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    Chapter 7 Reprocessing of a Regional GPS Network in Europe
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    Chapter 8 Latest Enhancements in the Brazilian Active Control Network
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    Chapter 9 Searching for the Optimal Relationships Between SIRGAS2000, South American Datum of 1969 and Córrego Alegre in Brazil
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    Chapter 10 The Permanent Tide In Height Systems
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    Chapter 11 Combined Adjustment of National Astro-Geodetic Network and National GPS2000 Geodetic Network
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    Chapter 12 Improved Resolution of a GRACE Gravity Field Model by Regional Refinements
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    Chapter 13 The Role of the Atmosphere for Satellite Gravity Field Missions
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    Chapter 14 Assessment of GPS-only Observables for Gravity Field Recovery from GRACE
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    Chapter 15 Detecting the Baltic Sea Level Surface with GPS-Measurements and Comparing it with the Local Geoid Model
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    Chapter 16 Strengthening the Vertical Reference in the Southern Baltic Sea by Airborne Gravimetry
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    Chapter 17 Downward Continuation of Airborne Gravimetry and Gradiometry Data Using Space Localizing Spline Functions
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    Chapter 18 The Earth’s Gravity Field Components of the Differences Between Gravity Disturbances and Gravity Anomalies
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    Chapter 19 Research on the Calibration of Onboard Accelerometer by Dynamic Method
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    Chapter 20 Current Status of Gravity Measurements in the Republic of Croatia with the Fundamental Gravity Network Finalization Project
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    Chapter 21 The Development of the European Gravimetric Geoid Model EGG07
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    Chapter 22 An Attempt for an Amazon Geoid Model Using Helmert Gravity Anomaly
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    Chapter 23 Combination of Gravimetry, Altimetry and GOCE Data for Geoid Determination in the Mediterranean: Evaluation by Simulation
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    Chapter 24 An Attempt Towards an Optimum Combination of Gravity Field Wavelengths in Geoid Computation
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    Chapter 25 BVP, Global Models and Residual Terrain Correction
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    Chapter 26 Domain Transformation, Boundary Problems and Optimization Concepts in the Combination of Terrestrial and Satellite Gravity Field Data
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    Chapter 27 Numerical Solution of the Fixed Altimetry-Gravimetry BVP Using the Direct BEM Formulation
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    Chapter 28 On the Combination of Gravimetric Quasi-Geoids and GPS-Levelling Data
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    Chapter 29 An Alternative Approach for the Determination of Orthometric Heights Using a Circular-Arc Approximation for the Plumbline
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    Chapter 30 On Evaluation of the Mean Gravity Gradient Within the Topography
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    Chapter 31 Comparison of Techniques for the Computation of a Height Reference Surface from Gravity and GPS-Levelling Data
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    Chapter 32 The Inversion of Poisson’s Integral in the Wavelet Domain
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    Chapter 33 On the Principal Difficulties and Ways to Their Solution in the Theory of Gravitational Condensation of Infinitely Distributed Dust Substance
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    Chapter 34 Representation of Regional Gravity Fields by Radial Base Functions
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    Chapter 35 Precise Gravity Time Series and Instrumental Properties from Combination of Superconducting and Absolute Gravity Measurements
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    Chapter 36 On a Feasibility of Modeling Temporal Gravity Field Variations from Orbits of Non-dedicated Satellites
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    Chapter 37 EOF Analysis on the Variations of Continental Water Storage from GRACE in China
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    Chapter 38 Influence of Hydrology-Related Temporal Aliasing on the Quality of Monthly Models Derived from GRACE Satellite Gravimetric Data
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    Chapter 39 Image Super-Resolution via Filtered Scales Integral Reconstruction Applied to GOCE Geoid Data
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    Chapter 40 An Error Model for the GOCE Space-Wise Solution by Monte Carlo Methods
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    Chapter 41 Accuracy Analysis of External Reference Data for GOCE Evaluation in Space and Frequency Domain
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    Chapter 42 Gravity Field Determination at the AIUB – The Celestial Mechanics Approach
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    Chapter 43 Robust Trend Estimation from GOCE SGG Satellite Track Cross-Over Differences
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    Chapter 44 Reference Frame Consistency in CHAMP and GRACE Earth Gravity Models
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    Chapter 45 The Fast Analysis of the GOCE Gravity Field
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    Chapter 46 GRACE Application to the Receding Lake Victoria Water Level and Australian Drought
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    Chapter 47 Updated OCTAS Geoid in the Northern North Atlantic – OCTAS07
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    Chapter 48 New Combined Geoid Solution HGTUB2007 for Hungary
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    Chapter 49 Regional Astrogeodetic Validation of GPS/Levelling Data and Quasigeoid Models
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    Chapter 50 Insights into the Mexican Gravimetric Geoid (GGM05)
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    Chapter 51 An Improved Geoid in North Eastern Italy
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    Chapter 52 Towards a New Global Digital Elevation Model
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    Chapter 53 Contribution of Non-Tidal Oceanic Mass Variations to Polar Motion Determined from Space Geodesy and Ocean Data
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    Chapter 54 Simulation of Historic and Future Atmospheric Angular Momentum Effects on Length-of-day Variations with GCMs
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    Chapter 55 Contributions of Tidal Poisson Terms in the Theory of the Nutation of a Nonrigid Earth
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    Chapter 56 Consistency of Earth Rotation, Gravity, and Shape Measurements
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    Chapter 57 Current Estimation of the Earth’s Mechanical and Geometrical Parameters
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    Chapter 58 The Earth’s Global Density Distribution and Gravitational Potential Energy
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    Chapter 59 Analysis of Geophysical Variations of the C20 Coefficient of the Geopotential
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    Chapter 60 Analysis of Mass Variations in Northern Glacial Rebound Areas from GRACE Data
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    Chapter 61 Report of GGP Activities to Commission 3, Completing 10 Years for the Worldwide Network of Superconducting Gravimeters
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    Chapter 62 European Tidal Gravity Observations: Comparison With Earth Tide Models And Estimation Of The Free Core Nutation (Fcn) Parameters
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    Chapter 63 Physical Modelling To Remove Hydrological Effects At Local And Regional Scale: Application To The 100-M Hydrostatic Inclinometer In Sainte-Croix-Aux-Mines (France)
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    Chapter 64 Monitoring Crustal Movement in the Qinghai-Tibetan Plateau Using GPS Measurements from 1993 to 2002
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    Chapter 65 Impact of Local GNSS Permanent Networks in the Study of Geodynamics in Central Italy
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    Chapter 66 New Results Based on Reprocessing of 13 years Continuous GPS Observations of the Fennoscandia GIA Process from BIFROST
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    Chapter 67 Analysis of GPS Data from An Antarctic Ice Stream
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    Chapter 68 Dynamic Analysis of Crustal Movements Along the Dead-Sea Rift
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    Chapter 69 GPS-Based Monitoring of Surface Displacements in the Mud Volcano Area, Sidoarjo, East Java
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    Chapter 70 Differential and Precise Point Positioning in the South American Region with lonosphere Maps
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    Chapter 71 Current State of Precise Point Positioning and Future Prospects and Limitations
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    Chapter 72 Nonstationary Tropospheric Processes in Geodetic Precipitable Water Vapor Time Series
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    Chapter 73 Combination of Multiple Repeat Orbits of ENVISAT for Mining Deformation Monitoring
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    Chapter 74 An Investigation into Robust Estimation Applied to Correlated GPS Networks
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    Chapter 75 Observing our Changing Earth
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    Chapter 76 Real-Time Kinematic OTF Positioning Using a Single GPS Receiver
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    Chapter 77 Concept of a Multi-Scale Monitoring and Evaluation System for Landslide Disaster Prediction
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    Chapter 78 Ionospheric Modelling in the North of Algeria
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    Chapter 79 Kinematic Precise Point Positioning During Marginal Satellite Availability
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    Chapter 80 Establishing A Gnss Receiver Antenna Calibration Field in the Framework Of Probral
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    Chapter 81 Trimble’s Rtk And Dgps Solutions In Comparison With Precise Point Positioning
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    Chapter 82 The Precision And Accuracy Of Shanghai Vrs Network
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    Chapter 83 Improving the Stochastic Model of GNSS Observations by Means of SNR-based Weighting
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    Chapter 84 Evaluating the Brazilian Vertical Datum Through Improved Coastal Satellite Altimetry Data
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    Chapter 85 Land Subsidence Monitoring in Australia and China using Satellite Interferometry
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    Chapter 86 Observing our Changing Earth
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    Chapter 87 Use of Global and Regional Ionosphere Maps for Single-Frequency Precise Point Positioning
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    Chapter 88 Quality Control for Building Industry by Means of a New Optical 3D Measurement and Analysis System
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    Chapter 89 New Solutions to Classical Geodetic Problems on the Ellipsoid
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    Chapter 90 GNSS Carrier Phase Ambiguity Resolution: Challenges and Open Problems
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    Chapter 91 Static Stress Change from the 8 November, 1997 Ms 7.9 Manyi, Tibet Earthquake as Inferred from InSAR Observation
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    Chapter 92 Application of Computer Algebra System to Geodesy
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    Chapter 93 Crustal Velocity Field Modelling with Neural Network and Polynomials
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    Chapter 94 Next-Generation Algorithms for Navigation, Geodesy and~Earth Sciences Under Modernized Global Navigation Satellite Systems (GNSS)
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    Chapter 95 Linear Combinations for Differential Radar Interferometry
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    Chapter 96 Recent Progress in the VLBI2010 Development
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    Chapter 97 The Contribution of GGP Superconducting Gravimeters to GGOS
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    Chapter 98 Combine Analysis of Earth Orientation Parameters and~Gravity Field Coefficients for Mutual Validation
Overall attention for this book and its chapters
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Title
Observing our Changing Earth
Published by
Springer, Berlin, Heidelberg, January 2009
DOI 10.1007/978-3-540-85426-5
ISBNs
978-3-54-085425-8, 978-3-54-085426-5, 978-3-66-251893-9
Authors

Michael G Sideris

Editors

Michael G Sideris

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X Demographics

The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 24 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 24 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 7 29%
Student > Ph. D. Student 3 13%
Lecturer 1 4%
Professor 1 4%
Researcher 1 4%
Other 1 4%
Unknown 10 42%
Readers by discipline Count As %
Earth and Planetary Sciences 6 25%
Engineering 3 13%
Agricultural and Biological Sciences 1 4%
Environmental Science 1 4%
Medicine and Dentistry 1 4%
Other 1 4%
Unknown 11 46%