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Solve for P (complex solution)
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Solve for P
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Solve for A (complex solution)
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Solve for A
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P\left(1+\frac{R}{100}\right)^{n}=A
Swap sides so that all variable terms are on the left hand side.
\left(\frac{R}{100}+1\right)^{n}P=A
The equation is in standard form.
\frac{\left(\frac{R}{100}+1\right)^{n}P}{\left(\frac{R}{100}+1\right)^{n}}=\frac{A}{\left(\frac{R}{100}+1\right)^{n}}
Divide both sides by \left(1+\frac{1}{100}R\right)^{n}.
P=\frac{A}{\left(\frac{R}{100}+1\right)^{n}}
Dividing by \left(1+\frac{1}{100}R\right)^{n} undoes the multiplication by \left(1+\frac{1}{100}R\right)^{n}.
P\left(1+\frac{R}{100}\right)^{n}=A
Swap sides so that all variable terms are on the left hand side.
\left(\frac{R}{100}+1\right)^{n}P=A
The equation is in standard form.
\frac{\left(\frac{R}{100}+1\right)^{n}P}{\left(\frac{R}{100}+1\right)^{n}}=\frac{A}{\left(\frac{R}{100}+1\right)^{n}}
Divide both sides by \left(1+\frac{1}{100}R\right)^{n}.
P=\frac{A}{\left(\frac{R}{100}+1\right)^{n}}
Dividing by \left(1+\frac{1}{100}R\right)^{n} undoes the multiplication by \left(1+\frac{1}{100}R\right)^{n}.