MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is to provide the first ever in situ measurements of both size distribution and concentration of airborne Martian dust. The instrument samples Martian air, and it is based on an optical system that illuminates the sucked fluid by means of a collimated laser beam and detects embedded dust particles through their scattered light. By analyzing the scattered light profile, it is possible to obtain information about the dust grain size and speed. To do that, MicroMED's fluid dynamic design should allow dust grains to cross the laser-illuminated sensing volume. The instrument's Elegant Breadboard was previously developed and tested, and Computational F...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is t...
MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is t...
MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is t...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is t...
MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is t...
MicroMED is an optical particle counter that will be part of the ExoMars 2020 mission. Its goal is t...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Characterization of dust is a key aspect in recent space missions to Mars. Dust has a huge influence...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
Airborne dust characterization is a critical aspect in space missions to Mars. Dust is always presen...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...