Minor changes

This commit is contained in:
Loic Guegan 2024-03-06 18:08:27 +01:00
parent f5a8a5fd03
commit 1336049838

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@ -50,7 +50,7 @@ A volt is the amount of energy per Coulomb (remember Coulomb
is just a constant).
.. math::
[V]=\frac{[J]}{C}=kg.m^2.s^{-2}.C^{-1}=kg.m^2.s^{-3}.C^{-1}.s=kg.m^2.s^{-3}.A^{-1}
[V]=\frac{[J]}{C}=kg.m^2.s^{-2}.C^{-1}=kg.m^2.s^{-3}.C^{-1}.s=kg.m^2.s^{-3}.[A]^{-1}
Farad
^^^^^^^^
@ -58,11 +58,11 @@ Components can hold electrons (such as capacitor).
Farad defines the amount of Coulomb (electrons) retained by the component for each unit of voltage.
.. math::
{[F]}=\frac{C}{[V]}=\frac{C}{kg.m^2.s^{-3}.A^{-1}}&=\frac{C}{kg.m^2.s^{-3}.C^{-1}.s}=\frac{C}{kg.m^2.s^{-2}.C^{-1}}
{[F]}=\frac{C}{[V]}=\frac{C}{kg.m^2.s^{-3}.[A]^{-1}}&=\frac{C}{kg.m^2.s^{-3}.C^{-1}.s}=\frac{C}{kg.m^2.s^{-2}.C^{-1}}
&=\frac{C^2}{[J]} =\frac{C^2}{[N].m} =\frac{s^2.C^2}{kg.m}
&=\frac{s^4.[A]^2}{kg.m}=m^{-2}.kg^{-1}.s^4.A^2
&=\frac{s^4.[A]^2}{kg.m}=m^{-2}.kg^{-1}.s^4.[A]^2
Ohm
^^^^^^^
@ -70,6 +70,12 @@ In circuits, components can resist to the current and thus reduces it.
Ohm defines the amount of volts required at one end of the resistor to pass one ampere into it.
.. math::
{[\Omega]}=\frac{[V]}{[A]}=\frac{kg.m^2.s^{-3}.A^{-1}}{[A]}=kg.m^2.s^{-3}.[A]^{-2}&=kg.m^2.s^{-3}.C^{-2}.s^{2}
{[\Omega]}=\frac{[V]}{[A]}=\frac{kg.m^2.s^{-3}.[A]^{-1}}{[A]}=kg.m^2.s^{-3}.[A]^{-2}&=kg.m^2.s^{-3}.C^{-2}.s^{2}
&=kg.m^2.s^{-1}.C^{-2}
Henry
^^^^^^^^^^
.. math::
H=\Omega.s=\frac{kg.m^2.s^{-3}.[A]^{-1}}{[A]} \times s = \frac{m^2.kg}{s^2.[A]^2} = m^2.kg.s^{-2}.[A]^{-2}