A Trillion Worlds
blogs.scientificamerican.com
A Trillion Worlds
1–10 of 38 posts
Re: A Trillion Worlds
#2Re: A Trillion Worlds
#3Could this mean the great filter is likely behind us?
Re: A Trillion Worlds
#4Re: A Trillion Worlds
#5Re: A Trillion Worlds
#6Could this mean the great filter is likely behind us?
It's likely there is no great filter; there exist reasonable claims that the Fermi Paradox has been "dissolved" [1] [2]. [1] https://news.ycombinator.com/item?id=17302924 [2] https://news.ycombinator.com/item?id=17560462
Re: A Trillion Worlds
#7I would have liked to hear about how they are now accounting for the inherent bias of our detection process to find large, close-to-star planets, because those are the ones that produce the best signals. I remember that that used to be a big issue in drawing any statistical conclusions about expolanet data. Has there just finally been enough data collected that we can model our own bias?
Re: A Trillion Worlds
#8Re: A Trillion Worlds
#9Could this mean the great filter is likely behind us?
It's likely there is no great filter; there exist reasonable claims that the Fermi Paradox has been "dissolved" [1] [2]. [1] https://news.ycombinator.com/item?id=17302924 [2] https://news.ycombinator.com/item?id=17560462
Even accepting their numbers, it's hardly "dissolved".
> When we update this prior in light of the Fermi observation, we find a substantial probability that we are alone in our galaxy, and perhaps even in our observable universe (53%–99.6% and 39%–85% respectively).
Re: A Trillion Worlds
#10I would have liked to hear about how they are now accounting for the inherent bias of our detection process to find large, close-to-star planets, because those are the ones that produce the best signals. I remember that that used to be a big issue in drawing any statistical conclusions about expolanet data. Has there just finally been enough data collected that we can model our own bias?