00:12
@rschwieb here’s my attempt. Let $a,b,c,d$ be four given real numbers, and consider the curve $\gamma: S^1\to \mathbb{R}^4$ with
13 hours later…
13:43
Alright! But those numbers don't really mean anything to us, so I rewrote each component as the product of a real number and a unit sized complex number
...and I don't know where to go from here. I don't know how to find the plane that both the unrotated vector $\vec{v}$ and rotated vector $R_\theta \vec{v}$ lie on, and I'm not sure if for a different choice of $\theta$ besides $30^0$, the vector would lie on that same plane, or how to even tell...
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Jul '1918
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Discussion between Joshua Ronis and r…
Imported from a comment discussion on math.stackexchange.com/q...