4 ms·
That's the correct volume element, but not what you want. The volume inside radius r grows as r^3. It's the inverse of this _cumulative_ density function which
by improbable22 8y ago
That's the correct volume element, but not what you want.
The volume inside radius r grows as r^3. It's the inverse of this _cumulative_ density function which maps uniform-in-r numbers to uniform-in-volume ones.