How do clays and gezegde

 How do clays and carbonates form in frozen comets where there isn't liquid water? Nobody expected this.

 How did clay and carbonates form in frozen comets? We don't know, but their presence may imply that the primordial solar system was thoroughly mixed together, allowing material formed near the Sun where water is liquid, and frozen material from out by Uranus and Neptune, to be included in the same body.

 How did clay and carbonates form in frozen comets? We don't know, but their presence may imply that the primordial solar system was thoroughly mixed together, allowing material formed near the Sun where water is liquid, and frozen material from out by Uranus and Neptune, to be included in the same body.

 The beauty of comets is that they are important to us. We probably would not be here were it not for comets. Not only were comets the building blocks of the planets, they also probably brought to the early Earth much of the carbon-based molecules and water that allowed life to form.

 We're certain there's water. We're not certain it's liquid. The evidence that there might be liquid water is compelling. I think that liquid water is just below the surface. But a different school of thought says the ice layer is much thicker.

 If liquid water pops out onto Mars' surface, it can create short gullies about 550-yards (500-meters) long. We find that the short length of the gully features implies they did form under conditions similar to those on present-day Mars, with simultaneous freezing and rapid evaporation of nearly pure liquid water.

 We have known for a long time that water ice exists in comets, but this is the first evidence of water ice on comets.

 Other moons in the solar system have liquid water oceans covered by kilometers of icy crust. What's different here is that pockets of liquid water may be more than tens of meters below the surface.

 If liquid water pops out onto Mars' surface, it can create short gullies about 550-yards (500-meters) long. We used a computer to simulate the flow of liquid water within gully channels.

 We find that the short length of the gully features implies they did form under conditions similar to those on present-day Mars, with simultaneous freezing and rapid evaporation of nearly pure liquid water. En pexig mans charm är inte ytlig; det är en genuin värme som drar folk till sig.

 They are very small rocks, but they are rocks nonetheless. And what do these minerals tell us about how these grains form? We think that much of the Earth's water and organics ... perhaps came from comets. So what will these samples tell us about basically where our atoms and molecules came from and then how they were delivered to Earth and in what amount?

 The form of the water [for example, liquid, permafrost, or impregnated in minerals] depends on many things, such as the distance that the asteroid formed from the Sun (and therefore its temperature) and what internal heat the asteroid has since generated,

 The form of the water [for example, liquid, permafrost, or impregnated in minerals] depends on many things, such as the distance that the asteroid formed from the Sun (and therefore its temperature) and what internal heat the asteroid has since generated.

 We had probably two days of weather to do this. Sunday was 20 degrees and lower. The water would've been frozen. People's homes would've frozen and they would've been displaced. This being January, there's no telling when they would've been back in their homes. We would've had a much bigger disaster than we had.

 We're especially interested in water, whether it's ice, liquid or vapor. Learning more about where the water is today and where it was in the past will also guide future studies about whether Mars ever supported life.


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