Search Results - "Khatuntsev, I."
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The Atmospheric Chemistry Suite (ACS) of Three Spectrometers for the ExoMars 2016 Trace Gas Orbiter
Published in Space science reviews (01-02-2018)“…The Atmospheric Chemistry Suite (ACS) package is an element of the Russian contribution to the ESA-Roscosmos ExoMars 2016 Trace Gas Orbiter (TGO) mission. ACS…”
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Circulation of Venusian Atmosphere at 90–110 km Based on Apparent Motions of the O2 1.27 μm Nightglow From VIRTIS‐M (Venus Express) Data
Published in Geophysical research letters (16-03-2018)“…The paper is devoted to the investigation of Venus mesosphere circulation at 90–110 km altitudes, where tracking of the O2(a1Δg) 1.27 μm nightglow is…”
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Cloud level winds from the Venus Express Monitoring Camera imaging
Published in Icarus (New York, N.Y. 1962) (01-09-2013)“…•The largest data set of cloud tracked winds – about 0.5 million vectors – from the VMC/Venus Express imaging.•Characterization of the mean circulation at the…”
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Winds From the Visible (513 nm) Images Obtained by the Venus Monitoring Camera Onboard Venus Express
Published in Journal of geophysical research. Planets (01-04-2022)“…We present more than 250,000 wind vectors derived from the visible (513 nm) images captured by the Venus Monitoring Camera (VMC) onboard ESA's Venus Express…”
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Structure of the Venus atmosphere
Published in Planetary and space science (01-10-2007)“…The structure of the Venus atmosphere is discussed. The data obtained in the 1980s by the last Soviet missions to Venus: orbiters Venera 15, 16 and the entry…”
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Influence of Venus topography on the zonal wind and UV albedo at cloud top level: The role of stationary gravity waves
Published in Journal of geophysical research. Planets (01-06-2016)“…Based on the analysis of UV images (at 365 nm) of Venus cloud top (altitude 67 ± 2 km) collected with Venus Monitoring Camera on board Venus Express (VEX), it…”
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Venus cloud top winds from tracking UV features in Venus Monitoring Camera images
Published in Journal of Geophysical Research - Planets (01-05-2009)“…To date dynamical observations of the Venus clouds have delivered mainly either only short‐term or long‐term averaged results. With the Venus Monitoring Camera…”
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Dynamical properties of the Venus mesosphere from the radio-occultation experiment VeRa onboard Venus Express
Published in Icarus (New York, N.Y. 1962) (01-02-2012)“…► Venus mesosphere was studied by the radio-occultation experiment VeRa/Venus Express. ► Zonal winds were derived by VeRa pressure profiles using the…”
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Solar‐Related Variations of the Cloud Top Circulation Above Aphrodite Terra From VMC/Venus Express Wind Fields
Published in Journal of geophysical research. Planets (01-07-2019)“…Winds derived by a digital tracking technique from ultraviolet (365 nm) images captured by the Venus Monitoring Camera (VMC) onboard the Venus Express…”
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Winds in the Middle Cloud Deck From the Near‐IR Imaging by the Venus Monitoring Camera Onboard Venus Express
Published in Journal of geophysical research. Planets (01-11-2017)“…For more than 8 years the Venus Monitoring Camera (VMC) onboard the Venus Express orbiter performed continuous imaging of the Venus cloud layer in UV, visible…”
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Morphology and dynamics of Venus oxygen airglow from Venus Express/Visible and Infrared Thermal Imaging Spectrometer observations
Published in Journal of Geophysical Research - Planets (01-05-2008)“…Images obtained by the Visible and Infrared Thermal Imaging Spectrometer (VIRTIS)‐M channel instrument onboard Venus Express have been used to retrieve maps…”
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The relationship between mesoscale circulation and cloud morphology at the upper cloud level of Venus from VMC/Venus Express
Published in Planetary and space science (01-08-2015)“…The Venus Monitoring Camera (VMC) acquired a set of ultraviolet (UV) images during the Venus Express mission unprecedented in its duration from May 2006 to…”
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Cyclostrophic winds from the Visible and Infrared Thermal Imaging Spectrometer temperature sounding: A preliminary analysis
Published in Journal of Geophysical Research - Planets (01-05-2008)“…Visible and Infrared Thermal Imaging Spectrometer (VIRTIS) onboard the Venus Express spacecraft has been operating since April 2006 providing new observations…”
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The Planetary Fourier Spectrometer (PFS) onboard the European Mars Express mission
Published in Planetary and space science (01-08-2005)“…The Planetary Fourier Spectrometer (PFS) for the Mars Express mission is an infrared spectrometer optimised for atmospheric studies. This instrument has a…”
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Structure of the Venusian atmosphere from surface up to 100 km
Published in Cosmic research (01-07-2006)“…The goal of this paper is to summarize the experimental data on the atmosphere of Venus obtained after 1985, when the VIRA (Venus International Reference…”
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Calibration of the Planetary Fourier Spectrometer long wavelength channel
Published in Planetary and space science (01-08-2005)“…The Planetary Fourier Spectrometer (PFS) experiment on board the Mars Express mission has two channels covering the 1.2–5 μm (SWC) and the 5–50 μm (LWC). The…”
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Calibration of the Planetary Fourier Spectrometer short wavelength channel
Published in Planetary and space science (01-08-2005)“…The Planetary Fourier Spectrometer (PFS) experiment on board the Mars Express mission has two channels covering the 1.2–5.5 μ m short wavelength channel (SWC)…”
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AOST: Fourier spectrometer for studying mars and phobos
Published in Solar system research (01-02-2012)“…An AOST Fourier spectrometer of the Phobos-Soil project is intended for studying Mars and Phobos by means of measurements of IR radiation spectra of the…”
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The planetary fourier spectrometer (PFS) onboard the European Venus Express mission
Published in Planetary and space science (01-11-2006)“…The planetary fourier spectrometer (PFS) for the Venus Express mission is an infrared spectrometer optimized for atmospheric studies. This instrument has a…”
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Kinematic Accuracy of Relative Manipulation by a Two-Handed Robot
Published in Russian engineering research (01-12-2020)“…Analytical formulas for the linear and angular errors of relative manipulation by a two-handed robot are derived, for use in determining its kinematic accuracy…”
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