I examine two significant issues of martian science from the point of view of in situ measurements by robotic spacecraft versus sample return and analysis in terrestrial labs. (1) To define martian history, ages of geological processes and surface features are required. Estimated ages from surface crater densities have limitations, and the ages measured for martian meteorites cannot be associated with specific martian locales. Whereas returned martian rocks could be accurately dated, some have suggested sending a robotic spacecraft to Mars to measure rock ages using the classical K- Ar-40 technique, considered the easiest to implement. (2) To understand the evolution of the martian atmosphere and its interactions with the surface, requires ...
Primary objectives for exploration of Mars include determination of: (1) the distribution, abundance...
The advantage of studying returned planetary samples cannot be overstated. A wider range of analytic...
In the absence of dates derived from rock samples, impact crater frequencies are commonly used to da...
The development of an in-situ geochronology capability for Mars and other planetary surfaces has t...
The development of an in-situ geochronology capability for Mars and other planetary surfaces has the...
The capability of scientific instrumentation flown on planetary orbiters and landers has made great ...
Radiometric age dating of Martian rocks and surfaces at known locations for which crater densities c...
Currently, the absolute chronology of Martian rocks, deposits and events is based mainly on crater c...
The 2011 Visions & Voyages Planeary Science Decadal Survey identified making significant progress to...
We review the in situ geochronology experiments conducted by the Mars Science Laboratory mission's C...
The absolute chronology of Mars is poorly known and as a consequence a key science aim is to perform...
Based on meteoritic evidence, Mars accreted as early as 2 Ma after the formation of the first solids...
Volatiles have clearly played a key role in the evolution of Mars' atmosphere, hydrosphere and geosp...
Martian magnetic history; quarantine issues; surface modifying processes; climate and atmosphere; sa...
Sending a mission to Mars to collect samples and return them to the Earth for analysis is without do...
Primary objectives for exploration of Mars include determination of: (1) the distribution, abundance...
The advantage of studying returned planetary samples cannot be overstated. A wider range of analytic...
In the absence of dates derived from rock samples, impact crater frequencies are commonly used to da...
The development of an in-situ geochronology capability for Mars and other planetary surfaces has t...
The development of an in-situ geochronology capability for Mars and other planetary surfaces has the...
The capability of scientific instrumentation flown on planetary orbiters and landers has made great ...
Radiometric age dating of Martian rocks and surfaces at known locations for which crater densities c...
Currently, the absolute chronology of Martian rocks, deposits and events is based mainly on crater c...
The 2011 Visions & Voyages Planeary Science Decadal Survey identified making significant progress to...
We review the in situ geochronology experiments conducted by the Mars Science Laboratory mission's C...
The absolute chronology of Mars is poorly known and as a consequence a key science aim is to perform...
Based on meteoritic evidence, Mars accreted as early as 2 Ma after the formation of the first solids...
Volatiles have clearly played a key role in the evolution of Mars' atmosphere, hydrosphere and geosp...
Martian magnetic history; quarantine issues; surface modifying processes; climate and atmosphere; sa...
Sending a mission to Mars to collect samples and return them to the Earth for analysis is without do...
Primary objectives for exploration of Mars include determination of: (1) the distribution, abundance...
The advantage of studying returned planetary samples cannot be overstated. A wider range of analytic...
In the absence of dates derived from rock samples, impact crater frequencies are commonly used to da...