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Aus DigiLern-Wiki
Aktuelle Version vom 12. Oktober 2011, 17:05 Uhr
\textstyle \frac{x}{y} | \frac{x}{y}
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\textstyle \sum_x^n | \sum_{x=1}^{n}
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\textstyle \prod_x^n | \prod^{x=1}_{n}
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\textstyle \int_a^b | \int_{a}^{b} f (x)\,dx
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\textstyle \frac{\partial x}{\partial y} | \frac{\partial x}{\partial y}
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\textstyle \sqrt x | \sqrt{x}
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\textstyle \sqrt[3]{x} | \sqrt[3]{x}
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\textstyle f(x) | f(x)
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\lim | \lim_{x\to\infty}
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***
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\sin | \sin (x)
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\cos | \cos (x)
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\tan | \tan (x)
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\log | \log (x)
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\ln | \ln (x)
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***
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\le | \le
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\ge | \ge
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\neq | \neq
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\approx | \approx
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\equiv | \equiv
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\propto | \propto
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\infty | \infty
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***
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\alpha | \alpha
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\beta | \beta
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\gamma | \gamma
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\delta | \delta
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\epsilon | \epsilon
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\zeta | \zeta
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\eta | \eta
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\theta | \theta
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\vartheta | \vartheta
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\kappa | \kappa
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\lambda | \lambda
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\mu | \mu
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\xi | \xi
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\pi | \pi
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\rho | \rho
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\sigma | \sigma
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\tau | \tau
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\phi | \phi
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\varphi | \varphi
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\chi | \chi
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\psi | \psi
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\omega | \omega
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***
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\Rightarrow | \Rightarrow
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\rightarrow | \rightarrow
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\Leftarrow | \Leftarrow
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\leftarrow | \leftarrow
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\Leftrightarrow | \Leftrightarrow
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\vec{x} | \vec{x}
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\mapsto | \mapsto
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( | \left(
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) | \right)
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[ | \left[
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] | \right]
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\{XXX\} | \left\{ {XXX} \right\}
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\{XXX | \left\{ {XXX} \right\.
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\textstyle {n \choose k} | {n \choose k}
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***
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\box | \box
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\forall | \forall
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\exists | \exists
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\in | \in
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\not\in | \not\in
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\ a \wedge b | \ a \wedge b
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\ a \vee b | \ a \vee b
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\ a \Rightarrow b | \ a \Rightarrow b
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\ a \Leftrightarrow b | \ a \Leftrightarrow b
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\neg A | \neg A
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\exist n\in M | \exist n\in M
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\forall n\in M | \forall n\in M
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\ A \cap B | \ A \cap B
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\ A \cup B | \ A \cup B
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\ A \setminus B | \ A \setminus B
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***
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\overline{AB} | \overline{AB}
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\vec{AB} | \vec{AB}
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AB \right| | AB \right|
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\ AB^{+} | \ AB^{+}
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\ AB^{-} | \ AB^{-}
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\operatorname{Zw} (A, Q, P) | \operatorname(Zw) (A, Q, P)
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...\} | ...\}
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\angle ABC | \angle ABC
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\ g \perp \ h | \ g \perp \ h
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\ g \not\perp \ h | \ g \not\perp \ h
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b | b
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b | b
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\operatorname{koll}(A, B, C) | \operatorname{koll}(A, B, C)
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\operatorname{komp}(A, B, C) | \operatorname{komp}(A, B, C)
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\alpha \tilde = \beta | \alpha \tilde {=} \beta
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\alpha \equiv \beta | \alpha \equiv \beta
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\frac{x} {y} | \frac{x} {y}
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x_{i} | x_{i}
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x^{i} | x^{i}
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\begin{pmatrix} x \\ y \\ z \end{pmatrix} | \begin{pmatrix} x \\ y \\ z \end{pmatrix}
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\begin{pmatrix} x & y \\ z & v \end{pmatrix} | \begin{pmatrix} x & y \\ z & v \end{pmatrix}
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