Escaped.
x^{0.5} is not lipschitz on [0, \infty). but neither is x^2. that being said x^2 is lipschitz on any bounded domain and x^{0.5} is lipschitz on any domain not including 0 so i’m assuming the domain is improperly specified
lipschitz is basically a super strict form of continuity that’s almost as good as differentiability. if a function has a bounded derivative on some domain then the upper bound of that derivative is a sufficient lipschitz constant for that domain
This is apparently a class about “Dynamic Asset Pricing”, so my guess is that this loops around to reveal Black-Scholes and option pricing somewhere along the line.
actually i dont think this is true
im not an aviation expert but I’m pretty sure its bad to secure somebody to the plane - in case of an emergency thats kinda just a death sentence
iirc planes should generally have some kinda zip cuffs on board and using those kinds of restraints is probably better?
not an expert but like there surely must be protocol for this and theres no way this is that protocol
Probably correct
CNN is telling me the guy who taped him up sat in the person’s lap until they landed, so probably not entirely a death sentence?
But yeah, there’s gotta be some other protocol than “hope other passengers can restrain the guy”.
math
How useful.
this is what i call a diarrhea trail
Sorry I didn’t know this was the math thread
there’s numbers in the title, so perhaps it was only a matter of time.
Oh genuienly thanks for telling me that
Just saw this, oh my god, prodigy?
The Golden Ratio has been seen in DNA molecules all the way up to spiral galaxies.