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64+18^{2}=B^{2}
Calculate 8 to the power of 2 and get 64.
64+324=B^{2}
Calculate 18 to the power of 2 and get 324.
388=B^{2}
Add 64 and 324 to get 388.
B^{2}=388
Swap sides so that all variable terms are on the left hand side.
B=2\sqrt{97} B=-2\sqrt{97}
Take the square root of both sides of the equation.
64+18^{2}=B^{2}
Calculate 8 to the power of 2 and get 64.
64+324=B^{2}
Calculate 18 to the power of 2 and get 324.
388=B^{2}
Add 64 and 324 to get 388.
B^{2}=388
Swap sides so that all variable terms are on the left hand side.
B^{2}-388=0
Subtract 388 from both sides.
B=\frac{0±\sqrt{0^{2}-4\left(-388\right)}}{2}
This equation is in standard form: ax^{2}+bx+c=0. Substitute 1 for a, 0 for b, and -388 for c in the quadratic formula, \frac{-b±\sqrt{b^{2}-4ac}}{2a}.
B=\frac{0±\sqrt{-4\left(-388\right)}}{2}
Square 0.
B=\frac{0±\sqrt{1552}}{2}
Multiply -4 times -388.
B=\frac{0±4\sqrt{97}}{2}
Take the square root of 1552.
B=2\sqrt{97}
Now solve the equation B=\frac{0±4\sqrt{97}}{2} when ± is plus.
B=-2\sqrt{97}
Now solve the equation B=\frac{0±4\sqrt{97}}{2} when ± is minus.
B=2\sqrt{97} B=-2\sqrt{97}
The equation is now solved.