118 reputation
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location Brisbane, AU
age 24
visits member for 2 years, 5 months
seen May 25 at 5:27

Undergraduate student from Queensland, AU.

$$S(q):=\int_{t_0}^{t_1} K(t) - V(q(t)) \cdot {dt}$$

$$r(\theta,\phi) = (\sin(\phi)\cos(\theta),\sin(\phi)\sin(\theta),\cos(\phi))$$

$$\underset{j=1}{\overset{\infty}{\LARGE\mathrm K}}\frac{1}{1}=\Phi$$


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