Jürgen Oberst Oberst


Ontology type: schema:Person     


Person Info

NAME

Jürgen Oberst

SURNAME

Oberst

Publications in SciGraph latest 50 shown

  • 2021-10-15 The case for landed Mercury science in EXPERIMENTAL ASTRONOMY
  • 2021-02-02 Processing of laser altimeter time-of-flight measurements to geodetic coordinates in JOURNAL OF GEODESY
  • 2020-12-23 Determination of the lunar body tide from global laser altimetry data in JOURNAL OF GEODESY
  • 2019-12-02 Correction to: Report of the IAU Working Group on Cartographic Coordinates and Rotational Elements: 2015 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2019-10-21 The Ganymede laser altimeter (GALA): key objectives, instrument design, and performance in CEAS SPACE JOURNAL
  • 2018-06-16 The reference frames of Mercury after the MESSENGER mission in JOURNAL OF GEODESY
  • 2018-02-23 Report of the IAU Working Group on Cartographic Coordinates and Rotational Elements: 2015 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2018-01-27 Determination of Phobos’ rotational parameters by an inertial frame bundle block adjustment in JOURNAL OF GEODESY
  • 2016-09-16 A technique for processing of planetary images with heterogeneous characteristics for estimating geodetic parameters of celestial bodies with the example of Ganymede in SOLAR SYSTEM RESEARCH
  • 2015-07-21 Mercury’s resonant rotation from secular orbital elements in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2015-07-07 Towards Improved Lunar Reference Frames: LRO Orbit Determination in REFAG 2014
  • 2015-03-25 Cartographic and geodetic methods to characterize the potential landing sites for the future Russian missions Luna-Glob and Luna-Resurs in SOLAR SYSTEM RESEARCH
  • 2015-01-07 The 2011 Draconids: The First European Airborne Meteor Observation Campaign in EARTH, MOON, AND PLANETS
  • 2012-09-12 GETEMME—a mission to explore the Martian satellites and the fundamentals of solar system physics in EXPERIMENTAL ASTRONOMY
  • 2012-01-11 Working models for the gravitational field of Phobos in SCIENCE CHINA PHYSICS, MECHANICS & ASTRONOMY
  • 2011-10-27 Farside explorer: unique science from a mission to the farside of the moon in EXPERIMENTAL ASTRONOMY
  • 2011-07-27 Erratum to: Reports of the IAU Working Group on Cartographic Coordinates and Rotational Elements: 2006 & 2009 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2011-07-24 Non-mare silicic volcanism on the lunar farside at Compton–Belkovich in NATURE GEOSCIENCE
  • 2011-07-20 MarcoPolo-R near earth asteroid sample return mission in EXPERIMENTAL ASTRONOMY
  • 2011-01 Accuracy assessment of lunar topography models in EARTH, PLANETS AND SPACE
  • 2010-12-04 Report of the IAU Working Group on Cartographic Coordinates and Rotational Elements: 2009 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2009-07-20 Geodesy: Foundation for exploring the planets, the solar system and beyond in GLOBAL GEODETIC OBSERVING SYSTEM
  • 2009-07-20 The future Global Geodetic Observing System in GLOBAL GEODETIC OBSERVING SYSTEM
  • 2009-06-02 Contribution of Lunar Laser Ranging to Realise Geodetic Reference Systems in GEODETIC REFERENCE FRAMES
  • 2009 4.2.2 Basic data of planetary bodies in SOLAR SYSTEM
  • 2009 4.2.3.1 Geodetic and geophysical data in SOLAR SYSTEM
  • 2007-07-03 Report of the IAU/IAG Working Group on cartographic coordinates and rotational elements: 2006 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2005-03 Report of the IAU/IAG Working Group on Cartographic Coordinates and Rotational Elements: 2003 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2003-05 Photographic observations of Neuschwanstein, a second meteorite from the orbit of the Příbram chondrite in NATURE
  • 2002-01 Report of the IAU/IAG Working Group on Cartographic Coordinates and Rotational Elements of the Planets and Satellites: 2000 in CELESTIAL MECHANICS AND DYNAMICAL ASTRONOMY
  • 2002 The Deep Space 1 Encounter with Comet 19P/Borrelly in COMETARY SCIENCE AFTER HALE-BOPP
  • 2000-10 The Deep Space 1 Encounter with Comet 19p/Borrelly in EARTH, MOON, AND PLANETS
  • 1997 Control Networks of the Galilean Satellites: Solutions for Size and Shape in THE THREE GALILEOS: THE MAN, THE SPACECRAFT, THE TELESCOPE
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