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small layoutchange and correction
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Iceteavanill committed Sep 17, 2024
1 parent 653bb22 commit ddd2070
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2 changes: 1 addition & 1 deletion ELT1.tex
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Expand Up @@ -93,7 +93,7 @@
\title{\vspace{-1cm}Elektrotechnik 1}
\subtitle{HS 2023, Prof. Dr. Hans-Dieter Lang}
\author{Fabian Steiner, \today}
\date{{\small V1.0.0}}
\date{{\small V1.0.1}}

%Header & footer
\fancyhf{}
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19 changes: 9 additions & 10 deletions circuits/quellen ausschalten.tex
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Expand Up @@ -10,16 +10,15 @@
\draw (5,2) to[short,*-*] (5,0);
\draw (4.5,0) -- (5.5,0);
\draw (4.5,2) -- (5.5,2);
\end{circuitikz}
\begin{circuitikz}
\draw (1,0) to[I,i=$I_q$,*-*,name=i1, bipole/is voltage=false] (1,2);
\draw (0.5,0) -- (1.5,0);
\draw (0.5,2) -- (1.5,2);

\draw (9,0) to[I,i=$I_q$,*-*,name=i1, bipole/is voltage=false] (9,2);
\draw (8.5,0) -- (9.5,0);
\draw (8.5,2) -- (9.5,2);
\iarr{i1};
\draw[-Latex,orange] (2.5,1) -- node[midway, above] {ausschalten} (3.5,1);
\draw[-Latex,orange] (10.5,1) -- node[midway, above] {ausschalten} (11.5,1);

\draw (5,0.5) to[short,-*] (5,0);
\draw (5,1.5) to[short,-*](5,2);
\draw (4.5,0) -- (5.5,0);
\draw (4.5,2) -- (5.5,2);
\draw (13,0.5) to[short,-*] (13,0);
\draw (13,1.5) to[short,-*](13,2);
\draw (12.5,0) -- (13.5,0);
\draw (12.5,2) -- (13.5,2);
\end{circuitikz}
10 changes: 5 additions & 5 deletions sections/02_Grundlagen_Elektrotechnik.tex
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Expand Up @@ -166,11 +166,11 @@ \subsection{Temperaturabhängigkeit}
Dies erfolgt je nach Anwendung mit einem, zwei oder noch mehr Termen.
\[
\begin{aligned}
\Delta\text{T}& = \alpha\cdot\Delta\text{T}\cdot\text{R}_\text{t20} &\rightarrow \text{Lineare Annäherung}\\
\Delta\text{T}& = (\alpha\cdot\Delta\text{T} + \beta\cdot\Delta\text{T})\cdot\text{R}_\text{t20} &\rightarrow \text{Quadratische Annäherung}\\
&\text{ ...}\\
\text{R}_{(\text{T})}& = (1 + \alpha\cdot\Delta\text{T})\cdot\text{R}_\text{t20} &\rightarrow \text{Lineare Annäherung}\\
\text{R}_{(\text{T})}& = (1 + \alpha\cdot\Delta\text{T} + \beta\cdot\Delta\text{T})\cdot\text{R}_\text{t20} &\rightarrow \text{Quadratische Annäherung}\\
\Delta\text{R}& = \alpha\cdot\Delta\text{T}\cdot\text{R}_\text{t20} &&\rightarrow \text{Lineare Annäherung}\\
\Delta\text{R}& = \alpha\cdot\Delta\text{T}\cdot\text{R}_\text{t20} + \beta\cdot(\Delta\text{T})^2\cdot\text{R}_\text{t20} &&\rightarrow \text{Quadratische Annäherung}\\
&\text{ ...} & & \\
\text{R}_{(\text{T})}& = (1 + \alpha\cdot\Delta\text{T})\cdot\text{R}_\text{t20} &&\rightarrow \text{Lineare Annäherung}\\
\text{R}_{(\text{T})}& = (1 + \alpha\cdot\Delta\text{T} + \beta\cdot(\Delta\text{T})^2)\cdot\text{R}_\text{t20} &&\rightarrow \text{Quadratische Annäherung}
\end{aligned}
\]

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