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Gravity, Geoid and Space Missions

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Cover of 'Gravity, Geoid and Space Missions'

Table of Contents

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    Book Overview
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    Chapter 1 Initial results from retracking and reprocessing the ERS-1 geodetic mission altimetry for gravity field purposes
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    Chapter 2 Space-borne gravimetry: determination of the time variable gravity field
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    Chapter 3 Satellite clusters for future gravity field missions
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    Chapter 4 A Preliminary Gravitational Model to Degree 2160
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    Chapter 5 Stochastic model validation of satellite gravity data: A test with CHAMP pseudo-observations
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    Chapter 6 Analysis of J 2 -Perturbed Relative Orbits for Satellite Formation Flying
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    Chapter 7 GOCE Gravity Field Processing
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    Chapter 8 GRACE Gradiometer
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    Chapter 9 Modelling the Earth’s gravity field using wavelet frames
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    Chapter 10 Numerical Velocity Determination and Calibration Methods for champ Using the Energy Balance Approach
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    Chapter 11 Upward Continuation of Ground Data for GOCE Calibration/Validation Purposes
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    Chapter 12 Global Gravity Field Solutions Based on a Simulation Scenario of GRACE SST Data and Regional Refinements by GOCE SGG Observations
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    Chapter 13 Effect of geopotential model errors on the projection of GOCE gradiometer observables
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    Chapter 14 Comparison of some robust parameter estimation techniques for outlier analysis applied to simulated GOCE mission data
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    Chapter 15 Comparison of outlier detection algorithms for GOCE gravity gradients
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    Chapter 16 Using the EIGEN-GRACE02S Gravity Field to Investigate Defectiveness of Marine Gravity Data
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    Chapter 17 Determination of gravity gradients from terrestrial gravity data for calibration and validation of gradiometric GOCE data
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    Chapter 18 Evaluation of Airborne Gravimetry Integrating GNSS and Strapdown INS Observations
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    Chapter 19 Network Approach versus State-space Approach for Strapdown Inertial Kinematic Gravimetry
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    Chapter 20 The Airborne Gravimeter Chekan -A at the Institute of Flight Guidance (IFF)
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    Chapter 21 Numerical investigation of downward continuation methods for airborne gravity data
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    Chapter 22 Status of the European Gravity and Geoid Project EGGP
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    Chapter 23 Merging a Gravimetric Model of the Geoid with GPS/Levelling data : an Example in Belgium
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    Chapter 24 The Antarctic Geoid Project: Status Report and Next Activities
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    Chapter 25 First Results from new High-precision Measurements of Deflections of the Vertical in Switzerland
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    Chapter 26 Error Propagation with Geographic Specificity for Very High Degree Geopotential Models
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    Chapter 27 Gravity Data Base Generation and Geoid Model Estimation Using Heterogeneous Data
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    Chapter 28 A new strategy for processing airborne gravity data
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    Chapter 29 Multiresolution representation of a regional geoid from satellite and terrestrial gravity data
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    Chapter 30 A Study on Two-boundary Problems in Airborne Gravimetry and Satellite Gradiometry
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    Chapter 31 Local Geoid Computation by the Spectral Combination Method
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    Chapter 32 On the incorporation of sea surface topography in establishing vertical control
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    Chapter 33 A New Gravimetric Geoidal Height Model over Norway Computed by the Least-Squares Modification Parameters
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    Chapter 34 On the Accuracy of Vertical Deflection Measurements Using the High-Precision Digital Zenith Camera System TZK2-D
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    Chapter 35 TERRA: A feasibility study on local geoid determination in Bolivia with strapdown inertial airborne gravimetry
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    Chapter 36 Artificial Neural Network: A Powerful Tool for Predicting Gravity Anomaly from Sparse Data
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    Chapter 37 Photon Counting Airborne Laser Swath Mapping (PC-ALSM)
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    Chapter 38 Evaluation of SRTM3 and GTOPO30 Terrain Data in Germany
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    Chapter 39 Multiscale Estimation of Terrain Complexity Using ALSM Point Data on Variable Resolution Grids
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    Chapter 40 A comparison of different isostatic models applied to satellite gravity gradiometry
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    Chapter 41 Spectral Analysis of Mean Dynamic Ocean Topography From the GRACE GGM01 Geoid
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    Chapter 42 Interannual to decadal sea level change in south-western Europe from satellite altimetry and in-situ measurements
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    Chapter 43 Space-time analysis of sea level in the North Atlantic from TOPEX/Poseidon satellite altimetry
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    Chapter 44 Mean Sea Level and Sea Level Variation Studies in the Black Sea and the Aegean
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    Chapter 45 Modelling Future Sea-level Change under Green-house Warming Scenarios with an Earth System Model of Intermediate Complexity
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    Chapter 46 Crossover Adjustment of New Zealand Marine Gravity Data, and Comparisons with Satellite Altimetry and Global Geopotential Models
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    Chapter 47 Results of the International Comparison of Absolute Gravimeters in Walferdange (Luxembourg) of November 2003
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    Chapter 48 A New Small Cam-Driven Absolute Gravimeter
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    Chapter 49 Absolute Gravity Measurements in Australia and Syowa Station, Antarctica
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    Chapter 50 Unified European Gravity Reference Network 2002 (UEGN02) — Status 2004
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    Chapter 51 Determination of gravity anomalies from torsion balance measurements
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    Chapter 52 Decadal Ocean Bottom Pressure Variability and its Associated Gravitational Effects in a Coupled Ocean- Atmosphere Model
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    Chapter 53 Gravity Changes in the Fennoscandian Uplift Area to be Observed by GRACE and Absolute Gravimetry
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    Chapter 54 Recovery of global time-variations of surface water mass by GRACE geoid inversion
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    Chapter 55 Seasonal Gravity Field Variations from GRACE and Hydrological Models
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    Chapter 56 Mass redistribution from global GPS timeseries and GRACE gravity fields: inversion issues
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    Chapter 57 The Fennoscandian Land Uplift Gravity Lines 1966–2003
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    Chapter 58 Temporal Gravity Variations in GOCE Gradiometric Data
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    Chapter 59 Estimating GRACE Aliasing Errors
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    Chapter 60 Methods to Study Co-seismic Deformations Detectable by Satellite Gravity Mission GRACE
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    Chapter 61 The gradiometric-geodynamic boundary value problem
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    Chapter 62 Relation between the geological conditions and vertical surface movements in the Pannonian basin
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    Chapter 63 Modelling gravity gradient variation due to water mass fluctuations
Overall attention for this book and its chapters
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Title
Gravity, Geoid and Space Missions
Published by
Springer Science & Business Media, July 2005
DOI 10.1007/b138327
ISBNs
978-3-54-026930-4, 978-3-54-026932-8
Editors

Christopher Jekeli, Luisa Bastos, Joana Fernandes

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The data shown below were compiled from readership statistics for 4 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 4 100%

Demographic breakdown

Readers by professional status Count As %
Other 1 25%
Student > Ph. D. Student 1 25%
Researcher 1 25%
Professor > Associate Professor 1 25%
Readers by discipline Count As %
Earth and Planetary Sciences 3 75%
Computer Science 1 25%