Unterschiede
Hier werden die Unterschiede zwischen zwei Versionen angezeigt.
Beide Seiten der vorigen Revision Vorhergehende Überarbeitung Nächste Überarbeitung | Vorhergehende Überarbeitung | ||
electrical_engineering_2:task_1.1.4 [2023/03/10 11:30] – mexleadmin | electrical_engineering_2:task_1.1.4 [2024/03/12 23:51] (aktuell) – mexleadmin | ||
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Zeile 1: | Zeile 1: | ||
- | <panel type=" | + | <panel type=" |
<WRAP right> | <WRAP right> | ||
- | {{elektrotechnik_1: | + | {{drawio> |
</ | </ | ||
Given is an arrangement of electric charges located in a vacuum (see picture on the right). \\ | Given is an arrangement of electric charges located in a vacuum (see picture on the right). \\ | ||
The charges have the following values: | The charges have the following values: | ||
- | $Q_1=5 ~\mu C$ (point charge) \\ | + | $Q_1=5 |
- | $Q_2=-10 ~\mu C$ (point charge) \\ | + | $Q_2=-10 ~\rm{µC}$ (point charge) \\ |
- | $Q_3=0 ~C$ (infinitely extended surface charge) | + | $Q_3= 0 ~\rm{C}$ (infinitely extended surface charge) |
- | $\varepsilon_0=8.854\cdot 10^{-12} | + | $\varepsilon_0=8.854\cdot 10^{-12} |
1. calculate the magnitude of the force of $Q_2$ on $Q_1$, without the force effect of $Q_3$. | 1. calculate the magnitude of the force of $Q_2$ on $Q_1$, without the force effect of $Q_3$. | ||
Zeile 17: | Zeile 17: | ||
<button size=" | <button size=" | ||
\begin{align*} | \begin{align*} | ||
- | | + | |
\end{align*} | \end{align*} | ||
\\ | \\ | ||
Zeile 28: | Zeile 28: | ||
</ | </ | ||
- | Now let $Q_2=0$ and the surface charge $Q_3$ be designed in such a way that a homogeneous electric field with $E_3=500 ~kV/m$ results. \\ What force (magnitude) now results on $Q_1$? | + | Now let $Q_2=0$ and the surface charge $Q_3$ be designed in such a way that a homogeneous electric field with $E_3=500 ~\rm{kV/m}$ results. \\ |
+ | What force (magnitude) now results on $Q_1$? | ||
<button size=" | <button size=" | ||
\begin{align*} | \begin{align*} | ||
- | | + | |
\end{align*} \\ | \end{align*} \\ | ||
</ | </ |