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Gravity, geoid and Earth observation : IAG Commission 2: Gravity Field, Chania, Crete, Greece, 23-27 June 2008

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Cover of 'Gravity, geoid and Earth observation : IAG Commission 2: Gravity Field, Chania, Crete, Greece, 23-27 June 2008'

Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    Chapter 1 Preliminary Results of a GPS/INS Airborne Gravimetry Experiment Over the German Alps
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    Chapter 2 Co-seismic Gravity Changes Computed for a Spherical Earth Model Applicable to GRACE Data
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    Chapter 3 On Ambiguities in Definitions and Applications of Bouguer Gravity Anomaly
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    Chapter 4 Harmonic Continuation and Gravimetric Inversion of Gravity in Areas of Negative Geodetic Heights
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    Chapter 5 Results of the European Comparison of Absolute Gravimeters in Walferdange (Luxembourg) of November 2007
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    Chapter 6 Aerogravity Survey of the German Bight (North Sea)
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    Chapter 7 Results of the Seventh International Comparison of Absolute Gravimeters ICAG-2005 at the Bureau International des Poids et Mesures, Sèvres
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    Chapter 8 Post-Newtonian Covariant Formulation for Gravity Determination by Differential Chronometry
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    Chapter 9 Robust and Efficient Weighted Least Squares Adjustment of Relative Gravity Data
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    Chapter 10 Comparison Between GPS Sea Surface Heights, MSS Models and Satellite Altimetry Data in the Aegean Sea. Implications for Local Geoid Improvement
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    Chapter 11 First Experience with the Transportable MPG-2 Absolute Gravimeter
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    Chapter 12 Absolute Gravimetry at BIPM, Sèvres (France), at the Time of Dr. Akihiko Sakuma
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    Chapter 13 Correcting Strapdown GPS/INS Gravimetry Estimates with GPS Attitude Data
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    Chapter 14 Gravity Measurements in Panama with the IMGC-02 Transportable Absolute Gravimeter
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    Chapter 15 Comparison of Height Anomalies Determined from SLR, Absolute Gravimetry and GPS with High Frequency Borehole Data at Herstmonceux
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    Chapter 16 Vibration Rejection on Atomic Gravimeter Signal Using a Seismometer
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    Chapter 17 Gravity vs Pseudo-Gravity: A Comparison Based on Magnetic and Gravity Gradient Measurements
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    Chapter 18 Designing Earth Gravity Field Missions for the Future: A Case Study
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    Chapter 19 Regional Gravity Field Recovery from GRACE Using Position Optimized Radial Base Functions
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    Chapter 20 External Calibration of SGG Observations on Accelerometer Level
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    Chapter 21 Covariance Propagation of Latitude-Dependent Orbit Errors Within the Energy Integral Approach
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    Chapter 22 Future Mission Design Options for Spatio-Temporal Geopotential Recovery
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    Chapter 23 A Simulation Study Discussing the GRACE Baseline Accuracy
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    Chapter 24 GRACE Gravity Field Determination Using the Celestial Mechanics Approach – First Results
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    Chapter 25 Fast Variance Component Estimation in GOCE Data Processing
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    Chapter 26 Analysis of the Covariance Structure of the GOCE Space-Wise Solution with Possible Applications
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    Chapter 27 Soil Surface Moisture From EnviSat RA-2: From Modelling Towards Implementation
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    Chapter 28 An Enhanced Ocean and Coastal Zone Retracking Technique for Gravity Field Computation
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    Chapter 29 Measurement of Inland Surface Water from Multi-mission Satellite Radar Altimetry: Sustained Global Monitoring for Climate Change
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    Chapter 30 ACE2: The New Global Digital Elevation Model
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    Chapter 31 Ocean Dynamic Topography from GPS – Galathea-3 First Results
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    Chapter 32 Filtering of Altimetric Sea Surface Heights with a Global Approach
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    Chapter 33 Coastal Sea Surface Heights from Improved Altimeter Data in the Mediterranean Sea
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    Chapter 34 On Estimating the Dynamic Ocean Topography – A Profile Approach
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    Chapter 35 Evaluation of the Topographic Effect using the Various Gravity Reduction Methods for Precise Geoid Model in Korea
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    Chapter 36 Analysis of Recent Global Geopotential Models Over the Croatian Territory
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    Chapter 37 On the Merging of Heterogeneous Height Data from SRTM, ICESat and Survey Control Monuments for Establishing Vertical Control in Greece: An Initial Assessment and Validation
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    Chapter 38 Implementing a Dynamic Geoid as a Vertical Datum for Orthometric Heights in Canada
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    Chapter 39 Evaluation of the Quasigeoid Models EGG97 and EGG07 with GPS/levelling Data for the Territory of Bulgaria
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    Chapter 40 Combination Schemes for Local Orthometric Height Determination from GPS Measurements and Gravity Data
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    Chapter 41 EUVN_DA: Realization of the European Continental GPS/leveling Network
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    Chapter 42 Analysis of the Geopotential Anomalous Component at Brazilian Vertical Datum Region Based on the Imarui Lagoon System
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    Chapter 43 Preliminary Results of Spatial Modelling of GPS/Levelling Heights: A Local Quasi-Geoid/Geoid for the Lisbon Area
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    Chapter 44 Physical Heights Determination Using Modified Second Boundary Value Problem
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    Chapter 45 Impact of the New GRACE-Derived Global Geopotential Model and SRTM Data on the Geoid Heights in Algeria
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    Chapter 46 On Modelling the Regional Distortions of the European Gravimetric Geoid EGG97 in Romania
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    Chapter 47 Effect of the Long-Wavelength Topographical Correction on the Low-Degree Earth’s Gravity Field
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    Chapter 48 A Comparison of Various Integration Methods for Solving Newton’s Integral in Detailed Forward Modelling
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    Chapter 49 Further Improvements in the Determination of the Marine Geoid in Argentina by Employing Recent GGMs and Sea Surface Topography Models
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    Chapter 50 Comparison of Various Topographic-Isostatic Effects in Terms of Smoothing Gradiometric Observations
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    Chapter 51 Evaluation of Recent Global Geopotential Models in Argentina
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    Chapter 52 On the Determination of the Terrain Correction Using the Spherical Approach
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    Chapter 53 Smoothing Effect of the Topographical Correction on Various Types of the Gravity Anomalies
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    Chapter 54 Determination of a Gravimetric Geoid Model of Greece Using the Method of KTH
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    Chapter 55 Method to Compute the Vertical Deflection Components
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    Chapter 56 On Finite Element and Finite Volume Methods and Their Application in Regional Gravity Field Modeling
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    Chapter 57 Quasi-Geoid of New Caledonia: Computation, Results and Analysis
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    Chapter 58 Assessment of a Numerical Method for Computing the Spherical Harmonic Coefficients of the Gravitational Potential of a Constant Density Polyhedron
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    Chapter 59 Improving Gravity Field Modelling in the German-Danish Border Region by Combining Airborne, Satellite and Terrestrial Gravity Data
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    Chapter 60 An Inverse Gravimetric Problem with GOCE Data
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    Chapter 61 Assessment of the EGM2008 Gravity Field in Algeria Using Gravity and GPS/Levelling Data
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    Chapter 62 On High-Resolution Global Gravity Field Modelling by Direct BEM Using DNSC08
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    Chapter 63 Is Australian Data Really Validating EGM2008, or Is EGM2008 Just in/Validating Australian Data?
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    Chapter 64 Evaluation of EGM08 Using GPS and Leveling Heights in Greece
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    Chapter 65 Validation of the New Earth Gravitational Model EGM08 Over the Baltic Countries
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    Chapter 66 Evaluation of EGM2008 by Comparison with Global and Local Gravity Solutions from CHAMP
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    Chapter 67 Testing EGM2008 on Leveling Data from Scandinavia, Adjacent Baltic Areas, and Greenland
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    Chapter 68 Least Squares, Galerkin and BVPs Applied to the Determination of Global Gravity Field Models
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    Chapter 69 Terrestrial Water Storage from GRACE and Satellite Altimetry in the Okavango Delta (Botswana)
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    Chapter 70 Greenland Ice Sheet Mass Loss from GRACE Monthly Models
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    Chapter 71 Water Level Temporal Variation Analysis at Solimões and Amazonas Rivers
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    Chapter 72 Spatiotemporal Analysis of the GRACE-Derived Mass Variations in North America by Means of Multi-Channel Singular Spectrum Analysis
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    Chapter 73 Analysing Five Years of GRACE Equivalent Water Height Variations Using the Principal Component Analysis
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    Chapter 74 Observed Gravity Change at Syowa Station Induced by Antarctic Ice Sheet Mass Change
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    Chapter 75 Evaluation of GRACE and ICESat Mass Change Estimates Over Antarctica
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    Chapter 76 Baltic Sea Mass Variations from GRACE: Comparison with In Situ and Modelled Sea Level Heights
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    Chapter 77 Water Storage in Africa from the Optimised GRACE Monthly Models: Iterative Approach
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    Chapter 78 Estimating Sub-Monthly Global Mass Transport Signals Using GRACE, GPS and OBP Data Sets
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    Chapter 79 Regular Gravity Field Variations and Mass Transport in the Earth System from DEOS Models Based on GRACE Satellite Data
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    Chapter 80 Estimating GRACE Monthly Water Storage Change Consistent with Hydrology by Assimilating Hydrological Information
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    Chapter 81 Secular Geoid Rate from GRACE for Vertical Datum Modernization
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    Chapter 82 Ten-Day Gravity Field Solutions Inferred from GRACE Data
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    Chapter 83 GGP (Global Geodynamics Project): An International Network of Superconducting Gravimeters to Study Time-Variable Gravity
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    Chapter 84 Surface Mass Loading Estimates from GRACE and GPS
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    Chapter 85 A Unified Approach to Modeling the Effects of Earthquakes on the Three Pillars of Geodesy
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    Chapter 86 Modeling and Observation of Loading Contribution to Time-Variable GPS Sites Positions
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    Chapter 87 Investigating the Effects of Earthquakes Using HEPOS
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    Chapter 88 Assessment of Degree-2 Zonal Gravitational Changes from GRACE, Earth Rotation, Climate Models, and Satellite Laser Ranging
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    Chapter 89 PALSAR InSAR Observation and Modeling of Crustal Deformation Due to the 2007 Chuetsu-Oki Earthquake in Niigata, Japan
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    Chapter 90 On the Accuracy of LiDAR Derived Digital Surface Models
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    Chapter 91 Multiscale Segmentation of Polarimetric SAR Data Using Pauli Analysis Images
Overall attention for this book and its chapters
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Title
Gravity, geoid and Earth observation : IAG Commission 2: Gravity Field, Chania, Crete, Greece, 23-27 June 2008
Published by
Springer, January 2010
DOI 10.1007/978-3-642-10634-7
ISBNs
978-3-64-210633-0, 978-3-64-210634-7, 978-3-64-226514-3
Authors

Mertikas, Stelios P

Editors

Stelios P. Mertikas

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 91 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Iran, Islamic Republic of 1 1%
Hong Kong 1 1%
France 1 1%
Brazil 1 1%
Unknown 87 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 28 31%
Student > Master 19 21%
Researcher 16 18%
Student > Doctoral Student 4 4%
Student > Postgraduate 4 4%
Other 11 12%
Unknown 9 10%
Readers by discipline Count As %
Earth and Planetary Sciences 52 57%
Engineering 12 13%
Environmental Science 7 8%
Physics and Astronomy 2 2%
Computer Science 2 2%
Other 2 2%
Unknown 14 15%