The aim of this work is to describe the development and implementation of an experimental setup able to reproduce some characteristics of the Martian atmosphere. The development of such setup fits into the context of MicroMED project, that foresees the development of an optical particle counter to be accommodated on the ExoMars 2020 Surface Platform, as part of the suite of sensors named Dust Complex. MicroMED will perform the first direct measurement of the size distribution of the powder close to Martian surface. The experimental setup is able to reproduce the characteristics of the Martian atmosphere: pressure, atmospheric composition, the actual temperature in which MicroMED will operate (from −20 °C to 40 °C) and the most important thi...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
Airborne dust monitoring is crucial to characterize Martian atmosphereâ\u80\u99 thermal structure, b...
The aim of this work is to describe the development and implementation of an experimental setup able...
The aim of this work is to describe the development and implementation of an experimental setup able...
The aim of this work is to describe the development and implementation of an experimental setup able...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Monitoring of airborne dust is very important in planetary climatology. Indeed, dust absorbs and sca...
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 (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
Airborne dust monitoring is crucial to characterize Martian atmosphereâ\u80\u99 thermal structure, b...
The aim of this work is to describe the development and implementation of an experimental setup able...
The aim of this work is to describe the development and implementation of an experimental setup able...
The aim of this work is to describe the development and implementation of an experimental setup able...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Suspended dust has a prominent role in Martian climatology. Several significant dust related phenome...
Monitoring of airborne dust is very important in planetary climatology. Indeed, dust absorbs and sca...
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 (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
MicroMED (Micro Martian Environmental Dust Systematic Analyzer (MEDUSA)) instrument was selected for...
Airborne dust monitoring is crucial to characterize Martian atmosphereâ\u80\u99 thermal structure, b...