Solve for I (complex solution)
\left\{\begin{matrix}I=\frac{N\Phi }{L}\text{, }&L\neq 0\\I\in \mathrm{C}\text{, }&\left(N=0\text{ or }\Phi =0\right)\text{ and }L=0\end{matrix}\right.
Solve for L (complex solution)
\left\{\begin{matrix}L=\frac{N\Phi }{I}\text{, }&I\neq 0\\L\in \mathrm{C}\text{, }&\left(N=0\text{ or }\Phi =0\right)\text{ and }I=0\end{matrix}\right.
Solve for I
\left\{\begin{matrix}I=\frac{N\Phi }{L}\text{, }&L\neq 0\\I\in \mathrm{R}\text{, }&\left(N=0\text{ or }\Phi =0\right)\text{ and }L=0\end{matrix}\right.
Solve for L
\left\{\begin{matrix}L=\frac{N\Phi }{I}\text{, }&I\neq 0\\L\in \mathrm{R}\text{, }&\left(N=0\text{ or }\Phi =0\right)\text{ and }I=0\end{matrix}\right.
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LI=N\Phi
Swap sides so that all variable terms are on the left hand side.
\frac{LI}{L}=\frac{N\Phi }{L}
Divide both sides by L.
I=\frac{N\Phi }{L}
Dividing by L undoes the multiplication by L.
LI=N\Phi
Swap sides so that all variable terms are on the left hand side.
IL=N\Phi
The equation is in standard form.
\frac{IL}{I}=\frac{N\Phi }{I}
Divide both sides by I.
L=\frac{N\Phi }{I}
Dividing by I undoes the multiplication by I.
LI=N\Phi
Swap sides so that all variable terms are on the left hand side.
\frac{LI}{L}=\frac{N\Phi }{L}
Divide both sides by L.
I=\frac{N\Phi }{L}
Dividing by L undoes the multiplication by L.
LI=N\Phi
Swap sides so that all variable terms are on the left hand side.
IL=N\Phi
The equation is in standard form.
\frac{IL}{I}=\frac{N\Phi }{I}
Divide both sides by I.
L=\frac{N\Phi }{I}
Dividing by I undoes the multiplication by I.
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