Emilia Javorsky
speaker
1,653 appearances
2 recordings
1 series
first heard Mar 2026
last heard 20 Mar
Emilia Javorsky’s voice in public audio — every appearance, attributed to the second.
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recordings per month · last 12 monthsRecordings per month over the last 12 months — 2 in all, peaking in Mar 2026 with 2.
Appearances
Yes, I think that is a seductive idea.
I think we start with the problem.
Problem number one is the super intelligence cannot...
model something that does not have first principles and does not have data, right?
So even if we were to have super intelligence tomorrow, we hit up against this problem.
And I think it's really worth breaking down like why that's actually a problem and like why biology is different than physics.
So like, okay, super intelligence, it's so smart, right?
It's so good at computing.
let's compute human biology and figure this all out.
And I think it's worth breaking that down, that like human bodies, we have 30 trillion cells, right?
And each of these cells have an immense amount of intercellular machinery, physics, X, Y, and Z. So if you really wanted to say, let's take physics and how do we go from physics to actually computing biology?
I have done sort of a
cosmology consult on this one to actually figure out what that means in terms of compute and basically simulating just a single week of one human being's biology if we covered our whole earth all of the earth in gpus we're running them at their thermodynamic limit
how much time are we going to need to compute that biology?
That's going to look like something like the age of the universe.
And that's starting from classical physics and not quantum physics.
So the idea here is like the idea we can compute biology from physics is just computationally infeasible.
Even if we had quantum computers, like it doesn't matter how much in order to power that super intelligence brain to do this activity.
We just, it's an impossible task.
And so when you don't have
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