World's Best Scientists 2026 revealed!

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Earth Science

D-Index
32
Citations
4131
World Ranking
8652
National Ranking
558

Overview

Robert Tenzer is affiliated with Hong Kong Polytechnic University in China and specializes in Earth and Planetary Sciences, with a focus on Geophysics. Their research encompasses a wide range of subfields including Oceanography, Aerospace Engineering, Molecular Biology, and Geology, reflecting a multidisciplinary approach within the geosciences.

The main topics of their work include:

  • Geophysics and Gravity Measurements
  • Geophysical and Geoelectrical Methods
  • Earthquake and Tectonic Studies
  • Geomagnetism and Paleomagnetism Studies
  • Seismic Imaging and Inversion Techniques
  • High-pressure Geophysics and Materials
  • GNSS Positioning and Interference

Robert Tenzer has contributed to multiple research publications, with recent notable papers including:

  • "The crustal configuration of the West and Central African Rift System from gravity and seismic data analysis" (2022) published in Geophysical Journal International
  • "The effect of anomalous global lateral topographic density on the geoid-to-quasigeoid separation" (2021) published in Journal of Geodesy
  • "Identification of Cameroon's geological structures through a gravity separation and using seismic crustal models" (2020) published in Journal of African Earth Sciences
  • "Main structural lineaments of the southern Cameroon volcanic line derived from aeromagnetic data" (2021) published in Journal of African Earth Sciences
  • "Updated Antarctic crustal model" (2020) published in Gondwana Research

Their frequent coauthors include:

  • Franck Eitel Kemgang Ghomsi
  • Hok Sum Fok
  • Mehdi Eshagh
  • Luan Thanh Pham
  • Ojima Isaac Apeh

Their work has appeared predominantly in the following publication venues:

  • Journal of African Earth Sciences
  • Remote Sensing
  • Geophysical Journal International
  • Journal of Geodesy
  • Geodesy and Geodynamics

Best Publications

  • A data-driven approach to local gravity field modelling using spherical radial basis functions

    R. Klees;Robert Tenzer;I. Prutkin;T. Wittwer

  • Global maps of the CRUST 2.0 crustal components stripped gravity disturbances

    Robert Tenzer;Robert Tenzer;K. Hamayun;Peter Vajda

  • Assessment of Density Variations of Marine Sediments with Ocean and Sediment Depths

    R. Tenzer;V. Gladkikh

  • New views of the spherical Bouguer gravity anomaly

    P. Vanicek;R. Tenzer;Lars Erik Sjöberg;Z. Martinec

  • The rigorous determination of orthometric heights

    R. Tenzer;R. Tenzer;P. Vanicek;M. Santos;Will Featherstone

  • Analysis of the Refined CRUST1.0 Crustal Model and its Gravity Field

    Robert Tenzer;Wenjin Chen;Dimitrios Tsoulis;Mohammad Bagherbandi

  • A mathematical model of the global ocean saltwater density distribution

    Vladislav Gladkikh;Robert Tenzer

  • A digital rock density map of New Zealand

    Robert Tenzer;Pascal Sirguey;Mark Rattenbury;Julia Nicolson

  • Spatial and Spectral Analysis of Refined Gravity Data for Modelling the Crust–Mantle Interface and Mantle-Lithosphere Structure

    Robert Tenzer;Vladislav Gladkikh;Pavel Novák;Peter Vajda

  • A comparison of global and regional GRACE models for land hydrology

    R. Klees;X. Liu;T. Wittwer;B. C. Gunter

  • The relation between rigorous and Helmert’s definitions of orthometric heights

    M. C. Santos;P. Vaníček;W. E. Featherstone;R. Kingdon

  • Spectral harmonic analysis and synthesis of Earth's crust gravity field

    Robert Tenzer;Pavel Novák;Peter Vajda;Vladislav Gladkikh

  • The choice of the spherical radial basis functions in local gravity field modeling

    R. Tenzer;R. Klees

  • On the accuracy of the bathymetry-generated gravitational field quantities for a depth-dependent seawater density distribution

    Robert Tenzer;Pavel Novák;Vladislav Gladkikh

  • Layer-Based Modelling of the Earth’s Gravitational Potential up to 10-km Scale in Spherical Harmonics in Spherical and Ellipsoidal Approximation

    Moritz Rexer;Christian Hirt;Sten Claessens;Robert Tenzer;Robert Tenzer

  • The Bathymetric Stripping Corrections to Gravity Field Quantities for a Depth-Dependent Model of Seawater Density

    Robert Tenzer;Novák Pavel;Gladkikh Vladislav

  • Global Crust-Mantle Density Contrast Estimated from EGM2008, DTM2008, CRUST2.0, and ICE-5G

    Robert Tenzer;Hamayun;Pavel Novák;Vladislav Gladkikh

  • Effect of Upper Mantle Density Structure on Moho Geometry

    Robert Tenzer;Wenjin Chen;Shuanggen Jin

  • Combined Gravimetric–Seismic Crustal Model for Antarctica

    Alexey Baranov;Robert Tenzer;Mohammad Bagherbandi

  • Improved global crustal thickness modeling based on the VMM isostatic model and non-isostatic gravity correction

    Mohammad Bagherbandi;Robert Tenzer;Lars E. Sjöberg;Pavel Novák

  • The spherical harmonic representation of the gravitational field quantities generated by the ice density contrast

    Robert Tenzer;Ahmed Abdalla;Peter Vajda;Hamayun

  • Water storage variations in the Poyang Lake Basin estimated from GRACE and satellite altimetry

    Yang Zhou;Yang Zhou;Shuanggen Jin;Robert Tenzer;Jialiang Feng

  • Comparison of different methods for estimating the geoid-to-quasi-geoid separation

    Ismael Foroughi;Robert Tenzer

  • A mathematical model of the bathyme- try-generated external gravitational field

    Robert Tenzer;Peter Vajda;H Amayun

Frequent Co-Authors

Petr Vaníček
Petr Vaníček University of New Brunswick
Lars E. Sjöberg
Lars E. Sjöberg Uppsala University
Shuanggen Jin
Shuanggen Jin Henan Polytechnic University
Christian Hirt
Christian Hirt Technical University of Munich
Will Featherstone
Will Featherstone Curtin University
Cheinway Hwang
Cheinway Hwang National Yang Ming Chiao Tung University
Nico Sneeuw
Nico Sneeuw University of Stuttgart
Michael Kuhn
Michael Kuhn Curtin University
Pascal Willis
Pascal Willis Institut de Physique du Globe de Paris
Janet E. Nichol
Janet E. Nichol University of Sussex

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