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authorAndreas Müller <andreas.mueller@ost.ch>2022-01-06 07:18:47 +0100
committerAndreas Müller <andreas.mueller@ost.ch>2022-01-06 07:18:47 +0100
commitd950b796906afbf78d1e6b1566ba723409e3ee1d (patch)
treeecb252630b30ee89e38b9731fa6fe2d2db6e7c50 /buch/chapters/060-integral/orthogonal.tex
parentadd section on hyperbolic functions (diff)
downloadSeminarSpezielleFunktionen-d950b796906afbf78d1e6b1566ba723409e3ee1d.tar.gz
SeminarSpezielleFunktionen-d950b796906afbf78d1e6b1566ba723409e3ee1d.zip
typos, sturm
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-rw-r--r--buch/chapters/060-integral/orthogonal.tex4
1 files changed, 3 insertions, 1 deletions
diff --git a/buch/chapters/060-integral/orthogonal.tex b/buch/chapters/060-integral/orthogonal.tex
index e1e41b5..0c1cf56 100644
--- a/buch/chapters/060-integral/orthogonal.tex
+++ b/buch/chapters/060-integral/orthogonal.tex
@@ -723,6 +723,8 @@ Abbildung~\ref{buch:integral:orthogonal:legendreortho} illustriert,
dass die die beiden Polynome $P_4(x)$ und $P_7(x)$ orthogonal sind.
Das Produkt $P_4(x)\cdot P_7(x)$ hat Integral $=0$.
+\input{chapters/060-integral/jacobi.tex}
+
\subsection{TODO}
\begin{itemize}
\item Jacobi-Polynome
@@ -739,6 +741,6 @@ Das Produkt $P_4(x)\cdot P_7(x)$ hat Integral $=0$.
%Siehe Wikipedia-Artikel \url{https://de.wikipedia.org/wiki/Legendre-Polynom}
\input{chapters/060-integral/legendredgl.tex}
-
+\input{chapters/060-integral/sturm.tex}
\input{chapters/060-integral/gaussquadratur.tex}