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Display information for equation id:math.1889.35 on revision:1889

* Page found: Variationsprinzipien (eq math.1889.35)

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Hash: 14c1c7b9c4320b15ec06f157c4486e38

TeX (original user input):

\delta f=\int\limits_{{{t}_{1}}}^{{{t}_{2}}}{dt\frac{dF(x)}{dx}\delta x(t)}\quad =0\ f\ddot{u}r\ beliebige\ \delta x(t)\ (Extremum)

TeX (checked):

\delta f=\int \limits _{{t}_{1}}^{{t}_{2}}{dt{\frac {dF(x)}{dx}}\delta x(t)}\quad =0\ f{\ddot {u}}r\ beliebige\ \delta x(t)\ (Extremum)

LaTeXML (experimentell; verwendet MathML) rendering

MathML (11.5 KB / 1.879 KB) :

δ f = t 1 t 2 d t d F ( x ) d x δ x ( t ) = 0 f u ¨ r b e l i e b i g e δ x ( t ) ( E x t r e m u m ) fragments δ f superscript subscript subscript 𝑡 1 subscript 𝑡 2 d t 𝑑 𝐹 𝑥 𝑑 𝑥 δ x fragments ( t ) italic-  0 f ¨ 𝑢 r b e l i e b i g e δ x fragments ( t ) fragments ( E x t r e m u m ) {\displaystyle{\displaystyle\delta f=\int\limits_{{{t}_{1}}}^{{{t}_{2}}}{dt% \frac{dF(x)}{dx}\delta x(t)}\quad=0\ f\ddot{u}r\ beliebige\ \delta x(t)\ (% Extremum)}}
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δf=t1t2dtdF(x)dxδx(t)=0fu¨rbeliebigeδx(t)(Extremum)
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  • δ
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