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Python ¿¹Á¦: latexdemo.py ¶
from sympy import * from sympy.abc import x print( latex(x**2) ) print( latex(1/x) ) print( latex(Integral(x**2, x)) ) print( latex(integrate(x**2, x)) ) print( latex((1/cos(x)).series(x, 0, 6)) )
½ÇÇà °á°ú:
${x}^{2}$ $\frac{1}{x}$ $\int {x}^{2}\,dx$ $\frac{1}{3} {x}^{3}$ $1 + \frac{1}{2} {x}^{2} + \frac{5}{24} {x}^{4} + \operatorname{\mathcal{O}}\left({x}^{6}\right)$
![${x}^{2}$ ${x}^{2}$](/wiki/_cache/latex/7e/7e60843b3585779ea9447ac00f8a92fe.png)
![$\frac{1}{x}$ $\frac{1}{x}$](/wiki/_cache/latex/de/def1bd644152b31e831db63dc9319886.png)
![$\int {x}^{2}\,dx$ $\int {x}^{2}\,dx$](/wiki/_cache/latex/ca/caa4993f179ef9c05faf6473a1a59b17.png)
![$\frac{1}{3} {x}^{3}$ $\frac{1}{3} {x}^{3}$](/wiki/_cache/latex/0e/0e55d052099fbaa59ec78d6abd26bcf3.png)
![$1 + \frac{1}{2} {x}^{2} + \frac{5}{24} {x}^{4} + \operatorname{\mathcal{O}}\left({x}^{6}\right)$ $1 + \frac{1}{2} {x}^{2} + \frac{5}{24} {x}^{4} + \operatorname{\mathcal{O}}\left({x}^{6}\right)$](/wiki/_cache/latex/66/660373cb2027f79afe1ee661208ca422.png)
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