| Grootheid | Eenheid | afh. RP? | afh Q? | Velden | |||
|---|---|---|---|---|---|---|---|
| $$\vec{F}^{\,} _e$$ | $$N$$ | clear | check | willekeurig | homogeen | radiaal | radiaal |
| $$Q \cdot \vec{E}^{\,} _(p)$$ | \begin{align}\vec{F}^{\,} _{12} = k\frac{Q_1 Q_2}{r^2}\\ r = (Q_1, Q_2)\end{align} | $$\sum_{i=1}^n \vec{F}^{\,} _i$$ | |||||
| $$\vec{E}^{\,}$$ | $$\frac{N}{C} of \frac{V}{m}$$ | clear | check | $$\frac{\vec{F}^{\,} _E}{Q}$$ | $$\vert\vert \vec{E}^{\,} \vert\vert = \frac{U_{12}}{d}$$ | \begin{align} k\frac{Q_b}{r^2} \cdot \vec{e} _{bp}\\ r = (Q_b, p)\end{align} | $$\sum_{i=1}^n \vec{E}^{\,} _i(p)$$ |
| $$E_{pot}(p)$$ | $$J$$ | check | check | \begin{align}W_{p \rightarrow RP}\\ = \vec{F} \cdot \vec{\Delta s}\\ = vert\vert \vec{F}^{\,} \vert\vert \vert\vert \vec{\Delta s}^{\,} \vert\vert cos(\vec{E}^{\,}, \vec{\Delta s}^{\,})\end{align} | \begin{align}G \vert\vert\vec{E}\vert\vert (d – a)\\ d = (p, ‘-‘)\\ a = (RP, ‘-‘)\end{align} | \begin{align} k Q_b (\frac{1}{r_p} – \frac{1}{a})\\ r_p = (p, Q_b)\\ a = (RP, Q_b)\end{align} | |
| $$\Delta E _{pot}$$ | $$J$$ | clear | check | $$E_{pot}(2) – E_{pot}(1)$$ | |||
| $$$V(p)$$ | $$\frac{J}{C} = V$$ | check | clear | $$\frac{E_{pot}(p)}{Q}$$ | $$\vert\vert \vec{E}^{\,} \vert\vert (d – a)$$ | $$k Q_b(\frac{1}{RB} – \frac{1}{a})$$ | $$\sum_{i=1}^n V_i(p)$$ |
| $$U_{12}$$ | $$V$$ | clear | clear | \begin{align}1) V(1) – V(2)\\ 2) \frac{\Delta E}{Q}\end{align} | \begin{align}\vert\vert \vec{E}^{\,} \vert\vert d\\ d = (1,2)\end{align} | \begin{align} k Q_b (\frac{1}{r_1} – \frac{1}{r_2})\\ r_1 = (1, Q_b)\\ r_2 = (2, Q_b)\end{align} | |