Solvi għal M (complex solution)
\left\{\begin{matrix}M=\frac{3I}{2d}-7\text{, }&d\neq 0\\M\in \mathrm{C}\text{, }&I=0\text{ and }d=0\end{matrix}\right.
Solvi għal I
I=\frac{2d\left(M+7\right)}{3}
Solvi għal M
\left\{\begin{matrix}M=\frac{3I}{2d}-7\text{, }&d\neq 0\\M\in \mathrm{R}\text{, }&I=0\text{ and }d=0\end{matrix}\right.
Sehem
Ikkupjat fuq il-klibbord
I=\left(\frac{14}{3}+\frac{2}{3}M\right)d
Uża l-propjetà distributtiva biex timmultiplika \frac{2}{3} b'7+M.
I=\frac{14}{3}d+\frac{2}{3}Md
Uża l-propjetà distributtiva biex timmultiplika \frac{14}{3}+\frac{2}{3}M b'd.
\frac{14}{3}d+\frac{2}{3}Md=I
Ibdel in-naħat sabiex it-termini varjabbli kollha jkunu fuq in-naħa tax-xellug.
\frac{2}{3}Md=I-\frac{14}{3}d
Naqqas \frac{14}{3}d miż-żewġ naħat.
\frac{2d}{3}M=-\frac{14d}{3}+I
L-ekwazzjoni hija f'forma standard.
\frac{3\times \frac{2d}{3}M}{2d}=\frac{3\left(-\frac{14d}{3}+I\right)}{2d}
Iddividi ż-żewġ naħat b'\frac{2}{3}d.
M=\frac{3\left(-\frac{14d}{3}+I\right)}{2d}
Meta tiddividi b'\frac{2}{3}d titneħħa l-multiplikazzjoni b'\frac{2}{3}d.
M=\frac{3I}{2d}-7
Iddividi I-\frac{14d}{3} b'\frac{2}{3}d.
I=\left(\frac{14}{3}+\frac{2}{3}M\right)d
Uża l-propjetà distributtiva biex timmultiplika \frac{2}{3} b'7+M.
I=\frac{14}{3}d+\frac{2}{3}Md
Uża l-propjetà distributtiva biex timmultiplika \frac{14}{3}+\frac{2}{3}M b'd.
I=\left(\frac{14}{3}+\frac{2}{3}M\right)d
Uża l-propjetà distributtiva biex timmultiplika \frac{2}{3} b'7+M.
I=\frac{14}{3}d+\frac{2}{3}Md
Uża l-propjetà distributtiva biex timmultiplika \frac{14}{3}+\frac{2}{3}M b'd.
\frac{14}{3}d+\frac{2}{3}Md=I
Ibdel in-naħat sabiex it-termini varjabbli kollha jkunu fuq in-naħa tax-xellug.
\frac{2}{3}Md=I-\frac{14}{3}d
Naqqas \frac{14}{3}d miż-żewġ naħat.
\frac{2d}{3}M=-\frac{14d}{3}+I
L-ekwazzjoni hija f'forma standard.
\frac{3\times \frac{2d}{3}M}{2d}=\frac{3\left(-\frac{14d}{3}+I\right)}{2d}
Iddividi ż-żewġ naħat b'\frac{2}{3}d.
M=\frac{3\left(-\frac{14d}{3}+I\right)}{2d}
Meta tiddividi b'\frac{2}{3}d titneħħa l-multiplikazzjoni b'\frac{2}{3}d.
M=\frac{3I}{2d}-7
Iddividi I-\frac{14d}{3} b'\frac{2}{3}d.
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