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electrical_engineering_1:simple_circuits [2024/10/24 08:11] – [Bearbeiten - Panel] mexleadminelectrical_engineering_1:simple_circuits [2024/10/24 08:13] (aktuell) mexleadmin
Zeile 380: Zeile 380:
 The rule states that the currents $I_1, ... I_n$ on parallel resistors $R_1, ... R_n$ behave just like their conductances $G_1, ... G_n$ through which the current flows. \\ The rule states that the currents $I_1, ... I_n$ on parallel resistors $R_1, ... R_n$ behave just like their conductances $G_1, ... G_n$ through which the current flows. \\
  
-$\large{{I_1}\over{I_g}} = {{G_1}\over{G_g}}$ +$\large{{I_1}\over{I_{\rm res}} = {{G_1}\over{G_{\rm res}}}$ 
  
 $\large{{I_1}\over{I_2}} = {{G_1}\over{G_2}}$ $\large{{I_1}\over{I_2}} = {{G_1}\over{G_2}}$
Zeile 965: Zeile 965:
  
 \begin{align*} \begin{align*}
-R_g = R || R + R || R || R || R + R || R || R || R + R || R = {{1}\over{2}}\cdot R + {{1}\over{4}}\cdot R + {{1}\over{4}}\cdot R + {{1}\over{2}}\cdot R = 1.5\cdot R+R_{\rm eq} = R || R + R || R || R || R + R || R || R || R + R || R = {{1}\over{2}}\cdot R + {{1}\over{4}}\cdot R + {{1}\over{4}}\cdot R + {{1}\over{2}}\cdot R = 1.5\cdot R
   \end{align*}   \end{align*}