$\int\frac{1+\sin x}{\cos x}dx$
$\int_{-\infty}^1\left(e^{\frac{x}{2}}\right)dx$
$\frac{dy}{dx}=1+y+x^2+yx^2$
$\frac{32x^8+16x^{17}y^{12}}{8x^4y^2}$
$10x<50$
$x^5-32\:=\:0$
$\int\frac{3x^2+x+18}{\left(x^2+9\right)\left(x+2\right)}dx$
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