745 results on '"Oberst, J."'
Search Results
202. Accurate Geolocation of Apollo 17 ALSEP Instruments
203. Phobos Control Point Network and Librations
204. Raditladi and Rachmaninoff basins: Numerical modelling
205. Telescopic Ground Observations for Lunar Impact Flash Detection using the SPOSH camera
206. Orbital evolution of ejecta from Phobos and formation of dust rings
207. Implementation of an ISIS Compatible Stereo Processing Chain for 3D Stereo Reconstruction
208. Reduction and analysis of one-way laser ranging tracking data from Wettzell ground station to LRO
209. Orbital stability during the mapping and approach phases of the MarcoPolo-R spacecraft
210. Spectrometric characteristics of the surface of Phobos from data obtained by HRSC on Mars Express
211. Simulations of meteoroid impacts on Phobos and global crater distributions
212. Mapping the Apollo 17 landing site area based on Lunar Reconnaissance Orbiter Camera images and Apollo surface photography
213. Stability and Evolution of Orbits Around the Binary Asteroid 175706 (1996 FG3) and Asteroids 162173 (1999 JU3) and 101955 (1999 RQ36): Implications for the MARCO-POLO-R Mission
214. A Multifractal Approach to the Analysis of Size-Frequency Distributions of Craters on Planetary Bodies
215. Mapping of the Lunokhod-1 Landing Site: A Case Study for Future Lunar Exploration
216. Project for the Space Science in Moscow State University of Geodesy and Cartography (MIIGAiK)
217. Global shape estimates and GIS cartography of Io and Enceladus using new control point network
218. Effusive and Explosive Volcanism on Mercury from MESSENGER Orbital Observations
219. Mapping and GIS-Analyses of the Lunokhod-1 Landing Site
220. Cartography Support and Assessment of Candidate Landing Sites for the 'Luna-Glob' Mission
221. Lunar Surface Roughness at Baseline 0.15-100 km and the Impact History of the Highlands
222. Morphology of Pit Craters on Mercury from Stereo-Derived Topography and Implications for Pit Crater Formation
223. Phobos: Impact Crater Morphology and Regolith Structure from Mars-Express Images
224. Global Phobos Geodatabase and GIS Analyses
225. New Control Point Network and Global Shape Estimates for Io
226. Tectonic Features on Mercury: An Orbital View with MESSENGER
227. GLD100: The near-global lunar 100 m raster DTM from LROC WAC stereo image data
228. Space Science Support in Moscow State University of Geodesy and Cartography (MIIGAiK)
229. Distribution, Statistics, and Resurfacing of Large Impact Basins on Mercury
230. ExoMars: Pre-Launch PanCam Modeling and Accuracy Assessment
231. Identification and Measurements of Small Impact Craters in the Lunokhod 1 Study Area, Mare Imbrium
232. GIS-analysis of Moon surface for the Luna-Glob and Luna-Resource landing sites
233. Structural and tidal models of the lunar interior
234. Improved Phobos Atlas from Mars Express HRSC/SRC Image Data
235. GIS Cartography of the Lunokhod-2 Landing Site
236. New Astrometric Observations of Phobos and Deimos with the SRC on Mars Express
237. Photogrammetric Processing of Rover Images by example of NASAs MER Mission Data
238. New Astrometric Observations of Deimos with the SRC on Mars Express
239. Dynamical environment of Phobos and applications to studies of surface features
240. Results of the PRoVisG Summer School 2011
241. GETEMME - A Mission to Explore the Martian Satellites and the Limits of Solar System Physics
242. GLD100 - Lunar topography from LROC WAC stereo
243. Raditladi: Numerical Modeling of a Herman peak-ring basin
244. Mapping the Apollo 17 Astronauts’ Positions Based on LROC Data and Apollo Surface Photography
245. The European Fireball Network 2010 - Status und Results of Cameras in Germany
246. Analyses of the Lunokhod-1 Landing Site and Rover Traverse using LROC images, high resolution DEMs, and Geographical Information Systems (GIS)
247. New light on the Martian satellites
248. Categorization of Lunar Terrain Using High Resolution WAC DTM Data
249. GLD100 — The Global Lunar 100 Meter Raster DTM from LROC WAC Stereo Models
250. A Search for Degraded Lunar Basins Using the LROC-WAC Digital Terrain Model (GLD100)
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