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German doc files: save in current file format
git-svn-id: svn://svn.lyx.org/lyx/lyx-devel/branches/BRANCH_2_0_X@39024 a592a061-630c-0410-9148-cb99ea01b6c8
This commit is contained in:
parent
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commit
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@ -1,5 +1,5 @@
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#LyX 2.0.0beta4 created this file. For more info see http://www.lyx.org/
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\lyxformat 412
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#LyX 2.0 created this file. For more info see http://www.lyx.org/
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\lyxformat 413
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\begin_document
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\begin_header
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\textclass scrbook
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@ -221,6 +221,7 @@
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\tracking_changes false
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\output_changes false
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\html_math_output 0
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\html_css_as_file 0
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\html_be_strict false
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\end_header
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@ -28251,7 +28252,6 @@ height_special "totalheight"
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status collapsed
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\begin_layout Plain Layout
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\align left
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Dieser Boxinhalt wurde horizontal gedehnt.
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\end_layout
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@ -1,5 +1,5 @@
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#LyX 2.0.0beta4 created this file. For more info see http://www.lyx.org/
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\lyxformat 412
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#LyX 2.0 created this file. For more info see http://www.lyx.org/
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\lyxformat 413
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\begin_document
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\begin_header
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\textclass article
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@ -105,6 +105,7 @@
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\tracking_changes false
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\output_changes false
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\html_math_output 0
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\html_css_as_file 0
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\html_be_strict false
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\end_header
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@ -1,5 +1,5 @@
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#LyX 2.0.0svn created this file. For more info see http://www.lyx.org/
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\lyxformat 410
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#LyX 2.0 created this file. For more info see http://www.lyx.org/
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\lyxformat 413
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\begin_document
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\begin_header
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\textclass scrartcl
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@ -157,6 +157,7 @@
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\use_default_options false
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\maintain_unincluded_children false
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\language ngerman
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\language_package default
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\inputencoding auto
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\fontencoding global
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\font_roman default
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@ -190,7 +191,7 @@
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\pdf_colorlinks true
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\pdf_backref false
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\pdf_pdfusetitle false
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\pdf_quoted_options "linkcolor=black, citecolor=black, urlcolor=blue, filecolor=blue, pdfpagelayout=OneColumn, pdfnewwindow=true, pdfstartview=XYZ, plainpages=false"
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\pdf_quoted_options "linkcolor=black, citecolor=black, urlcolor=blue, filecolor=blue, pdfpagelayout=OneColumn, pdfnewwindow=true, pdfstartview=XYZ, plainpages=false"
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\papersize a4paper
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\use_geometry false
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\use_amsmath 2
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@ -222,6 +223,7 @@
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\tracking_changes false
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\output_changes false
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\html_math_output 0
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\html_css_as_file 0
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\html_be_strict false
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\end_header
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@ -2046,7 +2048,8 @@ cfrac
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\end_layout
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\begin_layout Standard
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\begin_inset Formula \begin{align*}
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\begin_inset Formula
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\begin{align*}
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\textrm{mit \textbf{\textbackslash frac} erstellt} & & \textrm{mit \textbf{\textbackslash cfrac} erstellt}\\
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\frac{A}{B+\frac{C+\frac{E}{F}}{D}} & & \cfrac{A}{B+\cfrac{C+\cfrac{E}{F}}{D}}
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\end{align*}
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@ -2236,7 +2239,8 @@ cfrac
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frac
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\series default
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zu kombinieren:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\cfrac{A}{B+\cfrac{C+\frac{E}{F}}{D}}
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\]
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@ -5024,7 +5028,8 @@ hdotsfor[2]{4}
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dots
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\series default
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zu erhalten:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\left(\begin{array}{cccc}
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A & B & C & D\\
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\hdotsfor[2]{4}\\
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@ -7212,7 +7217,8 @@ leer
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)
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\series default
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ergibt
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\ln(\frac{A}{C})
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\]
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@ -7266,7 +7272,8 @@ leer
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right)
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\series default
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ergibt
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\ln\left(\frac{A}{C}\right)
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\]
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@ -7387,7 +7394,8 @@ right}
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:
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\series bold
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\left.\frac{A}{B}\right\}
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\]
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@ -7444,7 +7452,8 @@ middle
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B.
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für physikalische Vektoren von Nutzen ist:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\left\langle \phi\:\middle|\: J=\frac{3}{2}\,,\, M_{J}\right\rangle
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\]
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@ -7855,7 +7864,8 @@ reference "sec:Mehrzeilige-Formeln"
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\end_inset
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beschriebenen mehrzeiligen Formeln verwenden:
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\begin_inset Formula \begin{eqnarray*}
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\begin_inset Formula
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\begin{eqnarray*}
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A & = & \underbrace{gggg+bbqq}_{r}+\: dddd\\
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& & \hphantom{gggg+\:}\underbrace{\hphantom{bbqq+dddd}}_{s}
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\end{eqnarray*}
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@ -7991,7 +8001,8 @@ jot}{-6pt}
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\end_inset
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\begin_inset Formula \begin{eqnarray*}
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\begin_inset Formula
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\begin{eqnarray*}
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& & \hphantom{gggg+\:}\overbrace{\hphantom{bbqq+dddd}}^{s}\\
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A & = & \underbrace{gggg+bbqq}_{r}+\: dddd
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\end{eqnarray*}
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@ -10535,7 +10546,8 @@ leer
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n
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\series default
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:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\sideset{}{'}\sum_{k=1}^{n}
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\]
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@ -10588,7 +10600,8 @@ leer
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a
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\series default
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ergibt:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\overset{a}{\maltese}
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\]
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@ -11048,7 +11061,8 @@ widehat
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\series default
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werden aber im Ausdruck nur mit einer Länge von etwa drei Zeichen gesetzt,
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was folgendes Beispiel verdeutlicht:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\widetilde{A+B=C-D}
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\]
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@ -11119,7 +11133,8 @@ A=B
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***
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\series default
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ergibt:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\underset{***}{A=B}
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\]
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@ -13117,7 +13132,8 @@ fboxsep 3mm
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\end_inset
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\boxed{A+B=C}
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\]
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@ -13963,7 +13979,8 @@ Ein Beispiel:
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\begin_layout Standard
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\color red
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\begin_inset Formula \begin{equation}
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\begin_inset Formula
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\begin{equation}
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\int A=B\label{eq:rot}
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\end{equation}
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@ -13972,7 +13989,8 @@ Ein Beispiel:
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\color green
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\begin_inset Formula \begin{equation}
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\begin_inset Formula
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\begin{equation}
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\textcolor{red}{\int A=B}\label{eq:rotgruen}
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\end{equation}
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@ -14087,7 +14105,8 @@ fboxsep 1mm
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\end_inset
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\fcolorbox{cyan}{magenta}{A=B}
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\]
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@ -14290,7 +14309,8 @@ darkgreen
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yellow
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\series default
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gewählt wurde:
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\begin_inset Formula \begin{equation}
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\begin_inset Formula
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\begin{equation}
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\colorbox{dunkelgruen}{\color{yellow}\boxed{\int A\,\mathrm{d}x=\frac{\sqrt[5]{B}}{\ln\left(\frac{1}{3}\right)}}}
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\end{equation}
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@ -14728,7 +14748,8 @@ fboxrule}{
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\end_inset
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\begin_inset Formula \begin{equation}
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\begin_inset Formula
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\begin{equation}
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\int A\,\mathrm{d}x=\frac{\sqrt[5]{B}}{\ln\left(\frac{1}{3}\right)}
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\end{equation}
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@ -14967,7 +14988,8 @@ kommentiert
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\end_inset
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wurde:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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5x-7b=3b\textrm{Dies ist eine Beschreibung. Sie ist nicht von der Formel getrennt ...}
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\]
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@ -16200,14 +16222,16 @@ L
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\begin_layout Standard
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Die normalen Grenzen sehen so aus:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\sum_{x=0}^{\infty}\frac{1}{x^{2}}
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\]
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\end_inset
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So sieht die Formel aus, wenn man die Grenzen neben das Summenzeichen setzt:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\sum\nolimits _{x=0}^{\infty}\frac{1}{x^{2}}
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\]
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@ -16237,7 +16261,8 @@ ointop
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Anzeige
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\series default
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gesetzt und damit unter die Integrale geschrieben:
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\begin_inset Formula \begin{equation}
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\begin_inset Formula
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\begin{equation}
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\iiint\limits _{V}X\,\mathrm{d}V=U\label{eq:VolInt}
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\end{equation}
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@ -16293,7 +16318,8 @@ substack
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B.
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diesen Ausdruck
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\begin_inset Formula \begin{equation}
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\begin_inset Formula
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\begin{equation}
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\sum_{\begin{subarray}{c}
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0<k<1000\\
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\\
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@ -16560,7 +16586,8 @@ leer
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\begin_layout Standard
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ein, um die untere Grenze zu erstellen.
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Der Summand befindet sich nun direkt hinter dem Summenzeichen:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\sum_{\mathclap{\substack{0<k<1000\\
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\\
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||||
k\,\in\,\mathbb{N}
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@ -17826,7 +17853,8 @@ reference "sub:Sonstige-Symbole"
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\end_inset
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besteht:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\Raute_{n=1}^{\infty}
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\]
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@ -17937,7 +17965,8 @@ mathop
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B.
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nutzen, um eine Grenze für mehrere Operatoren zu verwenden:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\mathop{\sum\negmedspace\sum}_{i,j=1}^{N}
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\]
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@ -18685,7 +18714,8 @@ mathnormal
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\begin_layout Standard
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Die Stilbefehle wirken auch auf Buchstaben in mathematischen Konstruktionen:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\mathfrak{A=\frac{b}{C}}
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\]
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@ -18776,7 +18806,8 @@ mathbf
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\end_layout
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||||
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||||
\begin_layout Standard
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||||
\begin_inset Formula \[
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\begin_inset Formula
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\[
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\mathbf{\int_{n}^{2}f(\theta)=\Gamma}\qquad\textrm{Formel mit \textbackslash mathbf}
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\]
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@ -18793,7 +18824,8 @@ Um die Formel korrekt darzustellen, verwendet man den Befehl
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boldsymbol
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\series default
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:
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\begin_inset Formula \[
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\begin_inset Formula
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||||
\[
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||||
\boldsymbol{\int_{n}^{2}f(\theta)=\Gamma\qquad\textrm{Formel mit \textbackslash boldsymbol}}
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\]
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@ -18855,7 +18887,8 @@ boldmath
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\end_inset
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\int_{n}^{2}f(\theta)=\Gamma\qquad\textrm{Formel in boldmath-Umgebung}
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\]
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@ -18899,7 +18932,8 @@ Textstil
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\family default
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Dialog.
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Hier ist eine Formel in Magenta:
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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||||
{\color{magenta}\int A\,\mathrm{d}x=\frac{\sqrt[5]{B}}{\ln\left(\frac{1}{3}\right)}}
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\]
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@ -18964,7 +18998,8 @@ textcolor{dunkelgruen}{
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\end_inset
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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\int A\,\mathrm{d}x=\frac{{\color{red}\sqrt[5]{B}}}{\ln\left(\frac{1}{3}\right)}
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\]
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@ -19361,14 +19396,16 @@ huge
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\end_inset
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\begin_inset Formula \[
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\begin_inset Formula
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\[
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A=\frac{B}{c}\cdot\maltese
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\]
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||||
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||||
\end_inset
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||||
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\begin_inset Formula \[
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||||
\begin_inset Formula
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\[
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||||
\maltese A\textrm{\Large\maltese\textit{A}}\textrm{\tiny\maltese\textit{A}}
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\]
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@ -25938,7 +25975,8 @@ x=B
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||||
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||||
\begin_layout Standard
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||||
In einer abgesetzten Formel steht der Grenzwert wie gewohnt darunter:
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||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
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||||
\[
|
||||
\lim_{x\to A}x=B
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||||
\]
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@ -25968,7 +26006,8 @@ Eine Besonderheit stellt die Modulo-Funktion dar, denn es gibt sie in vier
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||||
\begin_layout Standard
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||||
Die Varianten in einer abgesetzten Formel:
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||||
\begin_inset Formula \begin{align*}
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||||
\begin_inset Formula
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||||
\begin{align*}
|
||||
\underline{\textrm{Befehl}\raisebox{-0.9mm}{}} & & \underline{\textrm{Ergebnis}}\\
|
||||
\mathrm{a\backslash mod\textrm{\leer}b} & & a\mod b\\
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||||
\mathrm{a\backslash pmod\textrm{\leer}b} & & a\pmod b\\
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||||
@ -28176,7 +28215,8 @@ Formel ! mehrzeilige ! Zeilenabstand
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||||
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||||
\begin_layout Standard
|
||||
Bei mehrzeiligen Formeln fehlt manchmal etwas Platz zwischen den Zeilen:
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||||
\begin_inset Formula \begin{eqnarray*}
|
||||
\begin_inset Formula
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||||
\begin{eqnarray*}
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||||
B^{2}(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2})+4x_{0}^{2}x^{2}+4x_{0}xD & = & \textrm{-}4x^{2}B^{2}+4x_{0}xB^{2}\\
|
||||
4x^{2}\left(B^{2}+x_{0}^{2}\right)+4x_{0}x\left(D-B^{2}\right)+B^{2}\left(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2}\right) & = & 0
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||||
\end{eqnarray*}
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||||
@ -28389,7 +28429,8 @@ jot}{3mm+3pt}
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||||
\end_inset
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||||
|
||||
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||||
\begin_inset Formula \begin{eqnarray*}
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||||
\begin_inset Formula
|
||||
\begin{eqnarray*}
|
||||
B^{2}(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2})+4x_{0}^{2}x^{2}+4x_{0}xD & = & \textrm{-}4x^{2}B^{2}+4x_{0}xB^{2}\\
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||||
4x^{2}\left(B^{2}+x_{0}^{2}\right)+4x_{0}x\left(D-B^{2}\right)+B^{2}\left(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2}\right) & = & 0
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||||
\end{eqnarray*}
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@ -28550,7 +28591,8 @@ arraycolsep}{1cm}
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\end_inset
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||||
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||||
\begin_inset Formula \begin{eqnarray*}
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||||
\begin_inset Formula
|
||||
\begin{eqnarray*}
|
||||
A & = & B\\
|
||||
C & \ne & A
|
||||
\end{eqnarray*}
|
||||
@ -28577,7 +28619,8 @@ arraycolsep}{5pt}
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||||
\end_inset
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||||
|
||||
|
||||
\begin_inset Formula \begin{eqnarray*}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray*}
|
||||
A & = & B\\
|
||||
C & \ne & A
|
||||
\end{eqnarray*}
|
||||
@ -28608,7 +28651,8 @@ Lange Formeln kann man wie folgt setzen:
|
||||
\begin_layout Itemize
|
||||
Ist eine Seite der Gleichung deutlich kürzer als die Zeilenbreite, wählt
|
||||
man man diese als linke Seite und schreibt die rechte über zwei Zeilen:
|
||||
\begin_inset Formula \begin{eqnarray}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray}
|
||||
H & = & W_{SB}+W_{mv}+W_{D}-\frac{\hbar^{2}}{2m_{0}}\Delta-\frac{\hbar^{2}}{2m_{1}}\Delta_{1}-\frac{\hbar^{2}}{2m_{2}}\Delta_{2}-\frac{e^{2}}{4\pi\varepsilon_{0}|\mathbf{r}-\mathbf{R}_{1}|}\nonumber \\
|
||||
& & -\hspace{3pt}\frac{e^{2}}{4\pi\varepsilon_{0}|\mathbf{r}-\mathbf{R}_{2}|}+\frac{e^{2}}{4\pi\varepsilon_{0}|\mathbf{R}_{1}-\mathbf{R}_{2}|}\label{eq:kurzlang}
|
||||
\end{eqnarray}
|
||||
@ -28689,7 +28733,8 @@ lefteqn
|
||||
.
|
||||
Dieser wird in die erste Spalte der ersten Zeile eingegeben und bewirkt,
|
||||
dass alle weiteren Eingaben die folgenden Spalten überschreiben:
|
||||
\begin_inset Formula \begin{eqnarray}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray}
|
||||
\lefteqn{4x^{2}\left(B^{2}+x_{0}^{2}\right)+4x_{0}x\left(D-B^{2}\right)+B^{2}\left(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2}\right)+D^{2}}\nonumber \\
|
||||
& & -\hspace{3pt}B^{2}-2B\sqrt{r_{g}^{2}-x^{2}+2x_{0}x-x_{0}^{2}}+r_{g}^{2}-x^{2}+2x_{0}x-x_{0}^{2}\nonumber \\
|
||||
& & =B^{2}+2\left(r_{g}^{2}+2x_{0}x-x_{0}^{2}-r_{k}^{2}\right)+\frac{\left(r_{g}^{2}+2x_{0}x-x_{0}^{2}-r_{k}^{2}\right)^{2}}{B^{2}}\label{eq:lefteqn}
|
||||
@ -28814,7 +28859,8 @@ Klammern ! mehrzeilige
|
||||
|
||||
\begin_layout Standard
|
||||
Bei Klammern, die über mehrere Zeilen gehen, tritt folgendes Problem auf:
|
||||
\begin_inset Formula \begin{eqnarray*}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray*}
|
||||
A & = & \sin(x)\left[\prod_{R=1}^{\infty}\frac{1}{R}+\cdots\right.\\
|
||||
& & \left.\cdots+B-D\right]
|
||||
\end{eqnarray*}
|
||||
@ -28987,7 +29033,8 @@ vphantom
|
||||
|
||||
\begin_layout Standard
|
||||
Das Ergebnis sieht so aus:
|
||||
\begin_inset Formula \begin{eqnarray*}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray*}
|
||||
A & = & \sin(x)\left[\prod_{R=1}^{\infty}\frac{1}{R}+\cdots\right.\\
|
||||
& & \left.\vphantom{\prod_{R=1}^{\infty}}\cdots+B-D\right]
|
||||
\end{eqnarray*}
|
||||
@ -29101,7 +29148,8 @@ bung
|
||||
\begin_layout Standard
|
||||
Ein Beispiel für zwei nebeneinander stehende Formeln, die mit einer vierspaltige
|
||||
n align-Umgebung erzeugt wurden:
|
||||
\begin_inset Formula \begin{align*}
|
||||
\begin_inset Formula
|
||||
\begin{align*}
|
||||
A & =\sin(B) & C & =D\\
|
||||
C & \ne A & B & \ne D
|
||||
\end{align*}
|
||||
@ -29202,7 +29250,8 @@ Das vorige Beispiel in der alignat-Umgebung, bei dem zu Beginn der zweiten
|
||||
\end_inset
|
||||
|
||||
cm Leerraum eingefügt wurde:
|
||||
\begin_inset Formula \begin{alignat*}{2}
|
||||
\begin_inset Formula
|
||||
\begin{alignat*}{2}
|
||||
A & =\sin(B) & \hspace{1cm}C & =D\\
|
||||
C & \ne A & B & \ne D
|
||||
\end{alignat*}
|
||||
@ -29239,7 +29288,8 @@ Formel ! mehrzeilige ! flalign-Umgebung
|
||||
Bei dieser Umgebung werden die ersten beiden Spalten immer so weit links
|
||||
und die letzten beiden Spalten so weit rechts wie möglich gesetzt.
|
||||
Dazu ein Beispiel:
|
||||
\begin_inset Formula \begin{flalign*}
|
||||
\begin_inset Formula
|
||||
\begin{flalign*}
|
||||
A & =1 & B & =2 & C & =3\\
|
||||
X & =\textrm{-}1 & Y & =\textrm{-}2 & Z & =4
|
||||
\end{flalign*}
|
||||
@ -29265,7 +29315,8 @@ reference "eq:VolInt"
|
||||
\end_inset
|
||||
|
||||
:
|
||||
\begin_inset Formula \begin{flalign}
|
||||
\begin_inset Formula
|
||||
\begin{flalign}
|
||||
\hspace{30pt}\iiint\limits _{V}X\,\mathrm{d}V & =U & {}
|
||||
\end{flalign}
|
||||
|
||||
@ -29310,7 +29361,8 @@ Hat man diese Umgebung erzeugt, erscheinen drei blaue Kästchen.
|
||||
ausgerichtet.
|
||||
Der Inhalt des mittleren Kästchens erscheint zentriert und etwas kleiner,
|
||||
da dieses Kästchen nur für Relationzeichen gedacht ist.
|
||||
\begin_inset Formula \begin{eqnarray*}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray*}
|
||||
\frac{ABC}{D} & \frac{ABC}{D} & \frac{ABC}{D}\\
|
||||
AB & AB & AB\\
|
||||
A & = & A
|
||||
@ -29338,7 +29390,8 @@ Formel ! mehrzeilige ! Gather-Umgebung
|
||||
\begin_layout Standard
|
||||
Diese Umgebung besteht nur aus einer Spalte, deren Inhalt zentriert ist.
|
||||
Jede Zeile kann nummeriert werden.
|
||||
\begin_inset Formula \begin{gather}
|
||||
\begin_inset Formula
|
||||
\begin{gather}
|
||||
A=1\\
|
||||
X=\textrm{-}1
|
||||
\end{gather}
|
||||
@ -29382,7 +29435,8 @@ reference "eq:lefteqn"
|
||||
\end_inset
|
||||
|
||||
in der multline-Umgebung:
|
||||
\begin_inset Formula \begin{multline}
|
||||
\begin_inset Formula
|
||||
\begin{multline}
|
||||
4x^{2}\left(B^{2}+x_{0}^{2}\right)+4x_{0}x\left(D-B^{2}\right)+B^{2}\left(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2}\right)+D^{2}\\
|
||||
-B^{2}-2B\sqrt{r_{g}^{2}-x^{2}+2x_{0}x-x_{0}^{2}}+r_{g}^{2}-x^{2}+2x_{0}x-x_{0}^{2}\\
|
||||
=B^{2}+2\left(r_{g}^{2}+2x_{0}x-x_{0}^{2}-r_{k}^{2}\right)+\frac{\left(r_{g}^{2}+2x_{0}x-x_{0}^{2}-r_{k}^{2}\right)^{2}}{B^{2}}
|
||||
@ -29533,7 +29587,8 @@ multlinegap}{2cm}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{multline}
|
||||
\begin_inset Formula
|
||||
\begin{multline}
|
||||
4x^{2}\left(B^{2}+x_{0}^{2}\right)+4x_{0}x\left(D-B^{2}\right)+B^{2}\left(B^{2}-2r_{g}^{2}+2x_{0}^{2}-2r_{k}^{2}\right)+D^{2}\\
|
||||
\shoveleft{-B^{2}-2B\sqrt{r_{g}^{2}-x^{2}+2x_{0}x-x_{0}^{2}}+r_{g}^{2}-x^{2}+2x_{0}x-x_{0}^{2}}\\
|
||||
=B^{2}+2\left(r_{g}^{2}+2x_{0}x-x_{0}^{2}-r_{k}^{2}\right)+\frac{\left(r_{g}^{2}+2x_{0}x-x_{0}^{2}-r_{k}^{2}\right)^{2}}{B^{2}}
|
||||
@ -29623,7 +29678,8 @@ n Formel\SpecialChar \-
|
||||
umgebungen.
|
||||
Man kann jedoch zusätzlich weitere Formelteile daneben setzen.
|
||||
Dazu ein Beispiel:
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\left.\begin{aligned}\Delta x\Delta p & \ge\frac{\hbar}{2}\\
|
||||
\Delta E\Delta t & \ge\frac{\hbar}{2}
|
||||
\end{aligned}
|
||||
@ -29675,7 +29731,8 @@ reference "eq:kurzlang"
|
||||
\end_inset
|
||||
|
||||
in der aligned-Umgebung:
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
\begin{aligned}H=\; & W_{SB}+W_{mv}+W_{D}-\frac{\hbar^{2}}{2m_{0}}\Delta-\frac{\hbar^{2}}{2m_{1}}\Delta_{1}-\frac{\hbar^{2}}{2m_{2}}\Delta_{2}-\frac{e^{2}}{4\pi\varepsilon_{0}|\mathbf{r}-\mathbf{R}_{1}|}\\
|
||||
& -\hspace{3pt}\frac{e^{2}}{4\pi\varepsilon_{0}|\mathbf{r}-\mathbf{R}_{2}|}+\frac{e^{2}}{4\pi\varepsilon_{0}|\mathbf{R}_{1}-\mathbf{R}_{2}|}
|
||||
\end{aligned}
|
||||
@ -29843,7 +29900,8 @@ intertext
|
||||
muss dabei zu Beginn einer Zeile stehen und erscheint in der Ausgabe über
|
||||
dieser Zeile.
|
||||
Ein Beispiel bei dem der Text zu Beginn der zweiten Zeile eingegeben wurde:
|
||||
\begin_inset Formula \begin{align}
|
||||
\begin_inset Formula
|
||||
\begin{align}
|
||||
I & =a\sqrt{2}\int_{0}^{2\pi}\sqrt{1+\cos(\phi)}\;\mathrm{d}\phi\\
|
||||
\intertext{\text{Integrand ist symmetrisch zu \ensuremath{\phi=\pi}, daher}} & =2a\sqrt{2}\int_{0}^{\pi}\sqrt{1+\cos(\phi)}\;\mathrm{d}\phi
|
||||
\end{align}
|
||||
@ -30191,7 +30249,8 @@ end{subequations}
|
||||
|
||||
\begin_layout Standard
|
||||
Dazu ein Beispiel:
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
A=C-B\label{eq:a}
|
||||
\end{equation}
|
||||
|
||||
@ -30228,14 +30287,16 @@ begin{subequations}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
B=C-A\label{eq:b}
|
||||
\end{equation}
|
||||
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
C=A+B\label{eq:c}
|
||||
\end{equation}
|
||||
|
||||
@ -30449,7 +30510,8 @@ begin{subequations}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{eqnarray}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray}
|
||||
A & = & (B-Z)^{2}=(B-Z)(B-Z)\label{eq:d}\\
|
||||
& = & B^{2}-ZB-BZ+Z^{²}\nonumber \\
|
||||
& = & B^{2}-2BZ+Z^{2}\label{eq:f}
|
||||
@ -30574,7 +30636,8 @@ tag
|
||||
\end_inset
|
||||
|
||||
:
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
A+B=C\tag{etwas}\label{eq:tag}
|
||||
\end{equation}
|
||||
|
||||
@ -30631,7 +30694,8 @@ leer
|
||||
etwas
|
||||
\series default
|
||||
ein, verhindert der Stern die Klammern um den Ausdruck:
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
A+B=C\tag*{etwas}
|
||||
\]
|
||||
|
||||
@ -31049,7 +31113,8 @@ numberwithin{equation}{section}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
A+B=C
|
||||
\end{equation}
|
||||
|
||||
@ -31469,7 +31534,8 @@ roman{equation}}
|
||||
\end_layout
|
||||
|
||||
\begin_layout Standard
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
A=\textrm{römisch}
|
||||
\end{equation}
|
||||
|
||||
@ -31493,7 +31559,8 @@ Roman{equation}}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
B=\textrm{Römisch}\label{eq:Roem}
|
||||
\end{equation}
|
||||
|
||||
@ -31517,7 +31584,8 @@ alph{equation}}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
C=\textrm{lateinisch}
|
||||
\end{equation}
|
||||
|
||||
@ -31541,7 +31609,8 @@ Alph{equation}}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
D=\textrm{Lateinisch}\label{eq:Lat}
|
||||
\end{equation}
|
||||
|
||||
@ -31597,7 +31666,8 @@ arabic{equation}}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
E=\textrm{arabisch}
|
||||
\end{equation}
|
||||
|
||||
@ -31685,7 +31755,8 @@ Das
|
||||
|
||||
.
|
||||
Die Reaktionsgleichung dazu lautet:
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
\mathrm{2\, Na^{+}+SO_{4}^{2-}\longrightarrow Na_{2}SO_{4}}\label{eq:chemische-Reaktion}
|
||||
\end{equation}
|
||||
|
||||
@ -32486,7 +32557,8 @@ reference "eq:TEOS-Reaktion-2"
|
||||
|
||||
sind ein Beispiel für eine mehrstufige chemische Reaktion, bei der jede
|
||||
Gleichung eine eigene Nummer hat.
|
||||
\begin_inset Formula \begin{eqnarray}
|
||||
\begin_inset Formula
|
||||
\begin{eqnarray}
|
||||
\ce{TEOS + 4O} & \ce{->} & \ce{Si(OH)4 + 4C2H4O}\label{eq:TEOS-Reaktion-1}\\
|
||||
\ce{Si(OH)4} & \ce{->} & \ce{SiO2 + 2H2O}\label{eq:TEOS-Reaktion-2}
|
||||
\end{eqnarray}
|
||||
@ -32579,7 +32651,8 @@ Diagramme ! amscd
|
||||
\begin_layout Standard
|
||||
Diagramme dieses Typs stellen Beziehungen mittels horizontaler und vertikaler
|
||||
Linien oder Pfeilen dar:
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\begin{CD}A@>>>B@>>>C\\
|
||||
@AAA@.@VVV\\
|
||||
F@<<<E@<<<D
|
||||
@ -32722,7 +32795,8 @@ Als Beispiel ein Diagramm mit allen möglichen Beziehungen:
|
||||
\end_layout
|
||||
|
||||
\begin_layout Standard
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\begin{CD}A@>j>>B@>>k>C@=F\\
|
||||
@AmAA@.@VV{V}V@|\\
|
||||
D@<<j<E@>k>>F@=C
|
||||
@ -33647,14 +33721,16 @@ B.
|
||||
häufiger mit quadratischen Gleichungen zu tun, tritt immer derselbe Lösungstyp
|
||||
auf.
|
||||
Die allgemeine Form einer quadratischen Gleichung ist
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
0=\lambda^{2}+p\lambda+q
|
||||
\]
|
||||
|
||||
\end_inset
|
||||
|
||||
Die allgemeine Form der Lösung lautet
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\lambda_{1,2}=-\frac{p}{2}\pm\sqrt{\frac{p²}{4}-q}
|
||||
\]
|
||||
|
||||
@ -34001,7 +34077,8 @@ Hier ist unser Makro-Beispiel mit den Argumenten
|
||||
\end_layout
|
||||
|
||||
\begin_layout Standard
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\qG x{\ln(x)}B
|
||||
\]
|
||||
|
||||
@ -35113,7 +35190,8 @@ Braket
|
||||
\series default
|
||||
stellt sicher, dass alle senkrechten Striche in der Größe der umgebenden
|
||||
Klammern gesetzt werden:
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\Braket{\phi|J=\frac{3}{2}\,,\, M_{J}}
|
||||
\]
|
||||
|
||||
@ -35495,7 +35573,8 @@ genfrac{}{}{#1}{}{#2}{#3}}
|
||||
|
||||
\begin_layout Standard
|
||||
Dazu ein Test:
|
||||
\begin_inset Formula \begin{align*}
|
||||
\begin_inset Formula
|
||||
\begin{align*}
|
||||
\text{Befehl} & & \mathrm{\backslash fracS[1mm]\backslash\{A\to\backslash\{B} & & \mathrm{\backslash fracS[5mm]\backslash\{A\to\backslash\{B}\\
|
||||
\text{Ergebnis} & & \fracS[1mm]{A}{B} & & \fracS[5mm]{A}{B}
|
||||
\end{align*}
|
||||
@ -35809,7 +35888,8 @@ cancelto
|
||||
\series default
|
||||
eignet sich besonders, wenn man das Kürzen innerhalb einer Formel darstellen
|
||||
will:
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\frac{\left(x_{0}+bB\right)^{2}}{\left(1+b^{2}\right)^{\cancelto{2}{3}}}=\frac{x_{0}^{2}+B^{2}-r_{g}^{2}}{\cancel{1+b^{2}}}
|
||||
\]
|
||||
|
||||
@ -36317,7 +36397,8 @@ end{multicols}
|
||||
\end_inset
|
||||
|
||||
|
||||
\begin_inset Formula \begin{equation}
|
||||
\begin_inset Formula
|
||||
\begin{equation}
|
||||
S(t)=S_{0}(t)\int_{-\infty}^{\infty}P(\phi,t)\mathrm{e}^{\mathrm{i}\phi}\,\mathrm{d}\phi
|
||||
\end{equation}
|
||||
|
||||
@ -36547,7 +36628,8 @@ reference "eq:innerhalb"
|
||||
|
||||
besteht aus fünf Spalten, wobei in den ersten beiden die Gleichung, in
|
||||
der dritten die Matrix und in der letzten die leere TeX-Klammer steht.
|
||||
\begin_inset Formula \begin{flalign}
|
||||
\begin_inset Formula
|
||||
\begin{flalign}
|
||||
\hspace{30pt}F_{A} & =\rho·V·g & \footnotesize\begin{array}{ll}
|
||||
\rho & \textrm{Dichte}\\
|
||||
V & \textrm{Volumen}\\
|
||||
@ -36707,7 +36789,8 @@ uptau
|
||||
|
||||
\begin_layout Standard
|
||||
Damit kann man Elementarteilchenreaktionen erstellen:
|
||||
\begin_inset Formula \[
|
||||
\begin_inset Formula
|
||||
\[
|
||||
\uppi^{+}\to\upmu^{+}+\upnu_{\upmu}
|
||||
\]
|
||||
|
||||
|
@ -1,5 +1,5 @@
|
||||
#LyX 2.0.0beta4 created this file. For more info see http://www.lyx.org/
|
||||
\lyxformat 412
|
||||
#LyX 2.0 created this file. For more info see http://www.lyx.org/
|
||||
\lyxformat 413
|
||||
\begin_document
|
||||
\begin_header
|
||||
\textclass book
|
||||
@ -104,6 +104,7 @@
|
||||
\tracking_changes false
|
||||
\output_changes false
|
||||
\html_math_output 0
|
||||
\html_css_as_file 0
|
||||
\html_be_strict false
|
||||
\end_header
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user