Solve for A
A=-\frac{14681600000000}{2322308419353A_{y}V}
A_{y}\neq 0\text{ and }V\neq 0
Solve for A_y
A_{y}=-\frac{14681600000000}{2322308419353AV}
A\neq 0\text{ and }V\neq 0
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VAA_{y}=2\times \frac{1-\left(1.25\times 0.75\right)^{-4}}{0.17\times 0.25}\times 1.17^{-5}
Anything divided by one gives itself.
VAA_{y}=2\times \frac{1-0.9375^{-4}}{0.17\times 0.25}\times 1.17^{-5}
Multiply 1.25 and 0.75 to get 0.9375.
VAA_{y}=2\times \frac{1-\frac{65536}{50625}}{0.17\times 0.25}\times 1.17^{-5}
Calculate 0.9375 to the power of -4 and get \frac{65536}{50625}.
VAA_{y}=2\times \frac{-\frac{14911}{50625}}{0.17\times 0.25}\times 1.17^{-5}
Subtract \frac{65536}{50625} from 1 to get -\frac{14911}{50625}.
VAA_{y}=2\times \frac{-\frac{14911}{50625}}{0.0425}\times 1.17^{-5}
Multiply 0.17 and 0.25 to get 0.0425.
VAA_{y}=2\times \frac{-\frac{14911}{50625}}{0.0425}\times \frac{10000000000}{21924480357}
Calculate 1.17 to the power of -5 and get \frac{10000000000}{21924480357}.
VAA_{y}=\frac{20000000000}{21924480357}\times \frac{-\frac{14911}{50625}}{0.0425}
Multiply 2 and \frac{10000000000}{21924480357} to get \frac{20000000000}{21924480357}.
AA_{y}V=\frac{20000000000}{21924480357}\left(-\frac{\frac{14911}{50625}}{0.0425}\right)
Reorder the terms.
AA_{y}V=-\frac{20000000000}{21924480357}\times \frac{\frac{14911}{50625}}{0.0425}
Multiply \frac{20000000000}{21924480357} and -1 to get -\frac{20000000000}{21924480357}.
A_{y}VA=-\frac{14681600000000}{2322308419353}
The equation is in standard form.
\frac{A_{y}VA}{A_{y}V}=-\frac{\frac{14681600000000}{2322308419353}}{A_{y}V}
Divide both sides by VA_{y}.
A=-\frac{\frac{14681600000000}{2322308419353}}{A_{y}V}
Dividing by VA_{y} undoes the multiplication by VA_{y}.
A=-\frac{14681600000000}{2322308419353A_{y}V}
Divide -\frac{14681600000000}{2322308419353} by VA_{y}.
VAA_{y}=2\times \frac{1-\left(1.25\times 0.75\right)^{-4}}{0.17\times 0.25}\times 1.17^{-5}
Anything divided by one gives itself.
VAA_{y}=2\times \frac{1-0.9375^{-4}}{0.17\times 0.25}\times 1.17^{-5}
Multiply 1.25 and 0.75 to get 0.9375.
VAA_{y}=2\times \frac{1-\frac{65536}{50625}}{0.17\times 0.25}\times 1.17^{-5}
Calculate 0.9375 to the power of -4 and get \frac{65536}{50625}.
VAA_{y}=2\times \frac{-\frac{14911}{50625}}{0.17\times 0.25}\times 1.17^{-5}
Subtract \frac{65536}{50625} from 1 to get -\frac{14911}{50625}.
VAA_{y}=2\times \frac{-\frac{14911}{50625}}{0.0425}\times 1.17^{-5}
Multiply 0.17 and 0.25 to get 0.0425.
VAA_{y}=2\times \frac{-\frac{14911}{50625}}{0.0425}\times \frac{10000000000}{21924480357}
Calculate 1.17 to the power of -5 and get \frac{10000000000}{21924480357}.
VAA_{y}=\frac{20000000000}{21924480357}\times \frac{-\frac{14911}{50625}}{0.0425}
Multiply 2 and \frac{10000000000}{21924480357} to get \frac{20000000000}{21924480357}.
AA_{y}V=\frac{20000000000}{21924480357}\left(-\frac{\frac{14911}{50625}}{0.0425}\right)
Reorder the terms.
AA_{y}V=-\frac{20000000000}{21924480357}\times \frac{\frac{14911}{50625}}{0.0425}
Multiply \frac{20000000000}{21924480357} and -1 to get -\frac{20000000000}{21924480357}.
AVA_{y}=-\frac{14681600000000}{2322308419353}
The equation is in standard form.
\frac{AVA_{y}}{AV}=-\frac{\frac{14681600000000}{2322308419353}}{AV}
Divide both sides by VA.
A_{y}=-\frac{\frac{14681600000000}{2322308419353}}{AV}
Dividing by VA undoes the multiplication by VA.
A_{y}=-\frac{14681600000000}{2322308419353AV}
Divide -\frac{14681600000000}{2322308419353} by VA.
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