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How to Calculate Bouguer Gravity Data in Planetary Studies
Robert Tenzer
, Ismael Foroughi
, Christian Hirt
, Pavel Novák
, Martin Pitoňák
Department of Land Surveying and Geo-Informatics
The Hong Kong Polytechnic University
Research output
:
Journal article publication
›
Review article
›
Academic research
›
peer-review
9
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Citations (Scopus)
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Dive into the research topics of 'How to Calculate Bouguer Gravity Data in Planetary Studies'. Together they form a unique fingerprint.
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Keyphrases
Gravity Correction
100%
Bouguer Gravity Data
100%
Planetary Studies
100%
Geoid
66%
Topographic Mass
50%
Numerical Scheme
33%
Density Structure
33%
Polar Regions
16%
Geodetic
16%
Geophysical Research
16%
Subtract
16%
Density Distribution
16%
Terrain Correction
16%
Geoid Model
16%
Gravimetric Geoid
16%
Gravity Data
16%
Anomalous Density
16%
Density Contrast
16%
Glacier
16%
Reference Surface
16%
Planetary Surfaces
16%
Density Heterogeneity
16%
Geoid Undulation
16%
Gravitational Signal
16%
Density Interface
16%
Spherical Approximation
16%
Local-regional
16%
Inner Structure
16%
Mantle Density
16%
Free-air Gravity
16%
Bouguer Gravity
16%
Geometric Reference
16%
Theoretical Definition
16%
Terrain Geometry
16%
Deep Mantle
16%
Mantle Plume
16%
Bouguer
16%
Structured Interfaces
16%
Ellipsoidal Approximation
16%
Physical Height
16%
Information Density
16%
Complex Geological Structure
16%
Gravity Forward Modelling
16%
Earth and Planetary Sciences
Geoids
100%
Forward Modeling
20%
Geological Structure
20%
Polar Region
20%
Planetary Surface
20%
Density Distribution
20%
Mantle Plume
20%