Environmental data recorded by the Mars exploration rovers show that the martian dust is magnetic containing mostly the strong magnetic mineral magnetite ( Fe3O4 ). On the other hand, it is known that dust settling onto the surface of solar arrays can affect the utility on solar power on any Mars mission, and particulary for long-term operation. Dust obscuration of solar arrays can be a special issue for the case of a future 6-month sample fetching rover (SFR) mission, where the current baseline architecture contemplates the use of solar array and where dust storms can jeopardize the entire mission, not only affecting the supply of energy for locomotion but for the communication with the Mars ascent vehicle (MAV). Today, available dust-remo...
Previous missions to Mars have revealed that Mars surface is magnetic at DC frequency. Does this hig...
Dust elevated in local or global dust storms on the Martian surface could settle on photovoltaic (PV...
In this paper, we summarize our present understanding of Mars' atmosphere, magnetic field, and surfa...
Environmental data recorded by the Mars exploration rovers show that the martian dust is magnetic co...
It is known that the Martian atmosphere contains a large amount of suspended dust. The saltation pro...
The Mars Exploration Rovers each carry a set of Magnetic Properties Experiments designed to investig...
The ubiquitous atmospheric dust on Mars is well mixed by periodic global dust storms, and such dust ...
The main objective of this paper is to address the accumulation of Martian dust as a mechanism of th...
Mars is a dusty planet. Will dust accumulation on solar arrays be a problem for large solar power sy...
International audienceThe degradation in electrical output of solar arrays on Mars landers and rover...
The environment on the surface of Mars is different in several critical ways from the orbital enviro...
The paper presents the results of a new analysis of the data from the Magnetic Properties Experiment...
In this work consideration is given to dust removal from surface of Mars solar arrays by harnessing ...
The only determinations of the magnetic properties of Martian materials come from experiments on the...
Obtaining CO2 from the Martian atmosphere through a freezing process has been proposed during de las...
Previous missions to Mars have revealed that Mars surface is magnetic at DC frequency. Does this hig...
Dust elevated in local or global dust storms on the Martian surface could settle on photovoltaic (PV...
In this paper, we summarize our present understanding of Mars' atmosphere, magnetic field, and surfa...
Environmental data recorded by the Mars exploration rovers show that the martian dust is magnetic co...
It is known that the Martian atmosphere contains a large amount of suspended dust. The saltation pro...
The Mars Exploration Rovers each carry a set of Magnetic Properties Experiments designed to investig...
The ubiquitous atmospheric dust on Mars is well mixed by periodic global dust storms, and such dust ...
The main objective of this paper is to address the accumulation of Martian dust as a mechanism of th...
Mars is a dusty planet. Will dust accumulation on solar arrays be a problem for large solar power sy...
International audienceThe degradation in electrical output of solar arrays on Mars landers and rover...
The environment on the surface of Mars is different in several critical ways from the orbital enviro...
The paper presents the results of a new analysis of the data from the Magnetic Properties Experiment...
In this work consideration is given to dust removal from surface of Mars solar arrays by harnessing ...
The only determinations of the magnetic properties of Martian materials come from experiments on the...
Obtaining CO2 from the Martian atmosphere through a freezing process has been proposed during de las...
Previous missions to Mars have revealed that Mars surface is magnetic at DC frequency. Does this hig...
Dust elevated in local or global dust storms on the Martian surface could settle on photovoltaic (PV...
In this paper, we summarize our present understanding of Mars' atmosphere, magnetic field, and surfa...