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Solve for x (complex solution)
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x^{2}+8x+10=0
All equations of the form ax^{2}+bx+c=0 can be solved using the quadratic formula: \frac{-b±\sqrt{b^{2}-4ac}}{2a}. The quadratic formula gives two solutions, one when ± is addition and one when it is subtraction.
x=\frac{-8±\sqrt{8^{2}-4\times 10}}{2}
This equation is in standard form: ax^{2}+bx+c=0. Substitute 1 for a, 8 for b, and 10 for c in the quadratic formula, \frac{-b±\sqrt{b^{2}-4ac}}{2a}.
x=\frac{-8±\sqrt{64-4\times 10}}{2}
Square 8.
x=\frac{-8±\sqrt{64-40}}{2}
Multiply -4 times 10.
x=\frac{-8±\sqrt{24}}{2}
Add 64 to -40.
x=\frac{-8±2\sqrt{6}}{2}
Take the square root of 24.
x=\frac{2\sqrt{6}-8}{2}
Now solve the equation x=\frac{-8±2\sqrt{6}}{2} when ± is plus. Add -8 to 2\sqrt{6}.
x=\sqrt{6}-4
Divide -8+2\sqrt{6} by 2.
x=\frac{-2\sqrt{6}-8}{2}
Now solve the equation x=\frac{-8±2\sqrt{6}}{2} when ± is minus. Subtract 2\sqrt{6} from -8.
x=-\sqrt{6}-4
Divide -8-2\sqrt{6} by 2.
x=\sqrt{6}-4 x=-\sqrt{6}-4
The equation is now solved.
x^{2}+8x+10=0
Quadratic equations such as this one can be solved by completing the square. In order to complete the square, the equation must first be in the form x^{2}+bx=c.
x^{2}+8x+10-10=-10
Subtract 10 from both sides of the equation.
x^{2}+8x=-10
Subtracting 10 from itself leaves 0.
x^{2}+8x+4^{2}=-10+4^{2}
Divide 8, the coefficient of the x term, by 2 to get 4. Then add the square of 4 to both sides of the equation. This step makes the left hand side of the equation a perfect square.
x^{2}+8x+16=-10+16
Square 4.
x^{2}+8x+16=6
Add -10 to 16.
\left(x+4\right)^{2}=6
Factor x^{2}+8x+16. In general, when x^{2}+bx+c is a perfect square, it can always be factored as \left(x+\frac{b}{2}\right)^{2}.
\sqrt{\left(x+4\right)^{2}}=\sqrt{6}
Take the square root of both sides of the equation.
x+4=\sqrt{6} x+4=-\sqrt{6}
Simplify.
x=\sqrt{6}-4 x=-\sqrt{6}-4
Subtract 4 from both sides of the equation.
x^{2}+8x+10=0
All equations of the form ax^{2}+bx+c=0 can be solved using the quadratic formula: \frac{-b±\sqrt{b^{2}-4ac}}{2a}. The quadratic formula gives two solutions, one when ± is addition and one when it is subtraction.
x=\frac{-8±\sqrt{8^{2}-4\times 10}}{2}
This equation is in standard form: ax^{2}+bx+c=0. Substitute 1 for a, 8 for b, and 10 for c in the quadratic formula, \frac{-b±\sqrt{b^{2}-4ac}}{2a}.
x=\frac{-8±\sqrt{64-4\times 10}}{2}
Square 8.
x=\frac{-8±\sqrt{64-40}}{2}
Multiply -4 times 10.
x=\frac{-8±\sqrt{24}}{2}
Add 64 to -40.
x=\frac{-8±2\sqrt{6}}{2}
Take the square root of 24.
x=\frac{2\sqrt{6}-8}{2}
Now solve the equation x=\frac{-8±2\sqrt{6}}{2} when ± is plus. Add -8 to 2\sqrt{6}.
x=\sqrt{6}-4
Divide -8+2\sqrt{6} by 2.
x=\frac{-2\sqrt{6}-8}{2}
Now solve the equation x=\frac{-8±2\sqrt{6}}{2} when ± is minus. Subtract 2\sqrt{6} from -8.
x=-\sqrt{6}-4
Divide -8-2\sqrt{6} by 2.
x=\sqrt{6}-4 x=-\sqrt{6}-4
The equation is now solved.
x^{2}+8x+10=0
Quadratic equations such as this one can be solved by completing the square. In order to complete the square, the equation must first be in the form x^{2}+bx=c.
x^{2}+8x+10-10=-10
Subtract 10 from both sides of the equation.
x^{2}+8x=-10
Subtracting 10 from itself leaves 0.
x^{2}+8x+4^{2}=-10+4^{2}
Divide 8, the coefficient of the x term, by 2 to get 4. Then add the square of 4 to both sides of the equation. This step makes the left hand side of the equation a perfect square.
x^{2}+8x+16=-10+16
Square 4.
x^{2}+8x+16=6
Add -10 to 16.
\left(x+4\right)^{2}=6
Factor x^{2}+8x+16. In general, when x^{2}+bx+c is a perfect square, it can always be factored as \left(x+\frac{b}{2}\right)^{2}.
\sqrt{\left(x+4\right)^{2}}=\sqrt{6}
Take the square root of both sides of the equation.
x+4=\sqrt{6} x+4=-\sqrt{6}
Simplify.
x=\sqrt{6}-4 x=-\sqrt{6}-4
Subtract 4 from both sides of the equation.