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I=mg\sqrt{1+\frac{r^{2}}{h^{2}}}
To raise \frac{r}{h} to a power, raise both numerator and denominator to the power and then divide.
I=mg\sqrt{\frac{h^{2}}{h^{2}}+\frac{r^{2}}{h^{2}}}
To add or subtract expressions, expand them to make their denominators the same. Multiply 1 times \frac{h^{2}}{h^{2}}.
I=mg\sqrt{\frac{h^{2}+r^{2}}{h^{2}}}
Since \frac{h^{2}}{h^{2}} and \frac{r^{2}}{h^{2}} have the same denominator, add them by adding their numerators.
mg\sqrt{\frac{h^{2}+r^{2}}{h^{2}}}=I
Swap sides so that all variable terms are on the left hand side.
\sqrt{\frac{r^{2}+h^{2}}{h^{2}}}mg=I
The equation is in standard form.
\frac{\sqrt{\frac{r^{2}+h^{2}}{h^{2}}}mg}{\sqrt{\frac{r^{2}+h^{2}}{h^{2}}}m}=\frac{I}{\sqrt{\frac{r^{2}+h^{2}}{h^{2}}}m}
Divide both sides by m\sqrt{\left(h^{2}+r^{2}\right)h^{-2}}.
g=\frac{I}{\sqrt{\frac{r^{2}+h^{2}}{h^{2}}}m}
Dividing by m\sqrt{\left(h^{2}+r^{2}\right)h^{-2}} undoes the multiplication by m\sqrt{\left(h^{2}+r^{2}\right)h^{-2}}.
g=\frac{I|h|}{m\sqrt{r^{2}+h^{2}}}
Divide I by m\sqrt{\left(h^{2}+r^{2}\right)h^{-2}}.