√2 raised to itself infinitely many times is 2pic.twitter.com/0l9dhhs3GV
PhD student of Theoretical Particle Physics @UCIrvine l @NSF Fellow l Physics & Math Animations l Patreon: https://www.patreon.com/inertialobserver …
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√2 raised to itself infinitely many times is 2pic.twitter.com/0l9dhhs3GV
And other than 1, the only number this works for, right?
Seems that way. Here's lim of x^x^x^... and x^2 in range 0.5 to 1.5, and it looks like the lim of x^x^... converges to a finite value if 0 <= x < e^(1/e), and diverges if x > e^(1/e)pic.twitter.com/6UcEMJtBZW
What about x between the bounds ~0.066 and ~1.44? How do we know sqrt(1) and sqrt(2) are the only solutions?
It looks like the 'infinite power tower' only converges if x is in [e^(-e), e^(1/e)] :https://math.stackexchange.com/questions/1089458/how-can-i-prove-the-convergence-of-a-power-tower …
yea! i tweeted about this a while ago!
Lambert-W function!
Now when does z^z^z^... converge if z ∈ ℂ? ;)
Continuing my horrible empirical approach to this problem: it looks... complicatedpic.twitter.com/omn0BHJ4Zl
that's a neat fractal!
i'm going to use that in a future tweet! hope you don't mind
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