If alien life were discovered within our solar system, I wonder what the implications for the Drake Equation would be. Assuming panspermia is ruled out, the fact that abiogenesis occured twice within a seemingly ordinary system would imply life is incredibly common.
Aren't we discovering that our solar system isn't very "ordinary" at all after detecting that most of the systems with extra-solar planets are very different from us?
Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
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Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#22If alien life were discovered within our solar system, I wonder what the implications for the Drake Equation would be. Assuming panspermia is ruled out, the fact that abiogenesis occured twice within a seemingly ordinary system would imply life is incredibly common.
Aren't we discovering that our solar system isn't very "ordinary" at all after detecting that most of the systems with extra-solar planets are very different from us?
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#23Earlier quoted context omitted.
Well one factor would go up (planets with life 1>2) and another would go down (planets with life developing intelligence 1>0.5), resulting in a wash. It does move towards giving additional degrees of freedom on those terms though, making the equation as a whole slightly less pseudo-science.
Depends on their intelligence if we find them, right? They might be intelligent and tool-using, but hampered by their aquatic origins.
So that would just move the same math down one more step. Twice the number of planets which have life (whether you adjust "can have life" or just the percent of the above which do), but that cancels out with half as many either being intelligent or releasing signals.
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#24Earlier quoted context omitted.
Aren't we discovering that our solar system isn't very "ordinary" at all after detecting that most of the systems with extra-solar planets are very different from us?
Do you have references on that? I was under the impression that as our detection improved, the systems we found around stars like ours were starting to look increasingly like ours. (But, at the same time it's looking like smaller, colder stars may have the bulk of inhabitable planets.)
This article says we're definitely weirder, but points out that the detection technology matters, and we may not have the full picture yet: https://planetplanet.net/2016/07/12/exactly-how-unusual-is-o...
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#25If alien life were discovered within our solar system, I wonder what the implications for the Drake Equation would be. Assuming panspermia is ruled out, the fact that abiogenesis occured twice within a seemingly ordinary system would imply life is incredibly common.
Aren't we discovering that our solar system isn't very "ordinary" at all after detecting that most of the systems with extra-solar planets are very different from us?
http://www.latimes.com/science/la-sci-earth-like-planets-201...
https://en.wikipedia.org/wiki/List_of_potentially_habitable_...
https://www.universetoday.com/49605/how-common-are-solar-sys...
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#26Earlier quoted context omitted.
Well one factor would go up (planets with life 1>2) and another would go down (planets with life developing intelligence 1>0.5), resulting in a wash. It does move towards giving additional degrees of freedom on those terms though, making the equation as a whole slightly less pseudo-science.
Depends on their intelligence if we find them, right? They might be intelligent and tool-using, but hampered by their aquatic origins.
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#27Earlier quoted context omitted.
Do you have references on that? I was under the impression that as our detection improved, the systems we found around stars like ours were starting to look increasingly like ours. (But, at the same time it's looking like smaller, colder stars may have the bulk of inhabitable planets.)
This articles concludes that we are average, but I don't really understand how - we're only average in age, but we differ in just about every other data point (no super earths, low-eccentricity orbits, no close-in planets): http://aasnova.org/2015/09/25/how-normal-is-our-solar-system... This article says we're definitely weirder, but points out that the detection technology matters, and we may not have the full pictu…
Until we start getting probes out to solar systems or have some way to detect orbits of planets that aren't perpendicular to our own we won't have much of an idea how weird we truly are or aren't.
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#28Earlier quoted context omitted.
Well one factor would go up (planets with life 1>2) and another would go down (planets with life developing intelligence 1>0.5), resulting in a wash. It does move towards giving additional degrees of freedom on those terms though, making the equation as a whole slightly less pseudo-science.
Depends on their intelligence if we find them, right? They might be intelligent and tool-using, but hampered by their aquatic origins.
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#29Earlier quoted context omitted.
Depends on their intelligence if we find them, right? They might be intelligent and tool-using, but hampered by their aquatic origins.
Is is intriguing to me to consider the limitations of space travel if you were an aquatic organism. Simply moving that much of any fluid versus empty "air" space would make leaving your planet that much more difficult. That's not to mention the inherent issues of electricity and developing circuits underwater.
While possibly there aren’t that many restrictions on where life can evolve and even where can different levels of intelligence can evolve there are likely quite a bit of restrictions on where and how technological intelligence can evolve.
Which puts some restrictions or bias towards both biological/evolutionary traits and as well as environmental ones.
While I think we’ll find life in very strange places eventually and life that will be very strange any technological species we might encounter would be something much more similar to us than to anything else.
Re: Chances of E.T. Living Subsurface Ocean of Enceladus Given Major Boost
#30Earlier quoted context omitted.
Depends on their intelligence if we find them, right? They might be intelligent and tool-using, but hampered by their aquatic origins.
To a fish, we're aliens. It must be terrifying.