International audienceIn this chapter we review the contribution of space missions to the determination of the elemental and isotopic composition of Earth, Moon and the terrestrial planets, with special emphasis on currently planned and future missions. We show how these missions are going to significantly contribute to, or sometimes revolutionise, our understanding of planetary evolution, from formation to the possible emergence of life. We start with the Earth, which is a unique habitable body with actual life, and that is strongly related to its atmosphere. The new wave of missions to the Moon is then reviewed, which are going to study its formation history, the structure and dynamics of its tenuous exosphere and the interaction of the M...
Precise measurements of the chemical, elemental, and isotopic composition of planetary surface mater...
International audienceA fundamental goal of solar system exploration is to understand the origin of ...
What are the planetary environments where conditions are best suited for habitability? A first const...
International audienceIn this chapter we review the contribution of space missions to the determinat...
In this chapter, we review the contribution of space missions to the determination of the elemental ...
In this chapter, we review the contribution of space missions to the determination of the elemental ...
We review the origin and evolution of the atmospheres of Earth, Venus and Mars from the time when th...
International audienceThe composition the atmosphere of Venus results from the integration of many p...
The terrestrial planetary bodies, the Earth, Moon, Mercury, Venus and Mars, provide geologic records...
This chapter summarizes atmospheric chemistry and composition for the seven planets in our solar sys...
International audienceA detailed characterization of the formation and evolution of Venus is a key l...
International audienceHere we discuss the current state of knowledge on how atmospheric escape proce...
In this review we discuss all the relevant solar/stellar radiation and plasma parameters and process...
Solar System Planets and Exoplanets provides a current viewpoint of planetary systems. The solar sys...
The evolution of planets is driven by the composition, structure, and thermal state of their interna...
Precise measurements of the chemical, elemental, and isotopic composition of planetary surface mater...
International audienceA fundamental goal of solar system exploration is to understand the origin of ...
What are the planetary environments where conditions are best suited for habitability? A first const...
International audienceIn this chapter we review the contribution of space missions to the determinat...
In this chapter, we review the contribution of space missions to the determination of the elemental ...
In this chapter, we review the contribution of space missions to the determination of the elemental ...
We review the origin and evolution of the atmospheres of Earth, Venus and Mars from the time when th...
International audienceThe composition the atmosphere of Venus results from the integration of many p...
The terrestrial planetary bodies, the Earth, Moon, Mercury, Venus and Mars, provide geologic records...
This chapter summarizes atmospheric chemistry and composition for the seven planets in our solar sys...
International audienceA detailed characterization of the formation and evolution of Venus is a key l...
International audienceHere we discuss the current state of knowledge on how atmospheric escape proce...
In this review we discuss all the relevant solar/stellar radiation and plasma parameters and process...
Solar System Planets and Exoplanets provides a current viewpoint of planetary systems. The solar sys...
The evolution of planets is driven by the composition, structure, and thermal state of their interna...
Precise measurements of the chemical, elemental, and isotopic composition of planetary surface mater...
International audienceA fundamental goal of solar system exploration is to understand the origin of ...
What are the planetary environments where conditions are best suited for habitability? A first const...