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x^{2}-2x+\frac{28}{37}=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{-\left(-2\right)±\sqrt{\left(-2\right)^{2}-4\times \frac{28}{37}}}{2}
This equation is in standard form: ax^{2}+bx+c=0. Substitute 1 for a, -2 for b, and \frac{28}{37} for c in the quadratic formula, \frac{-b±\sqrt{b^{2}-4ac}}{2a}.
x=\frac{-\left(-2\right)±\sqrt{4-4\times \frac{28}{37}}}{2}
Square -2.
x=\frac{-\left(-2\right)±\sqrt{4-\frac{112}{37}}}{2}
Multiply -4 times \frac{28}{37}.
x=\frac{-\left(-2\right)±\sqrt{\frac{36}{37}}}{2}
Add 4 to -\frac{112}{37}.
x=\frac{-\left(-2\right)±\frac{6\sqrt{37}}{37}}{2}
Take the square root of \frac{36}{37}.
x=\frac{2±\frac{6\sqrt{37}}{37}}{2}
The opposite of -2 is 2.
x=\frac{\frac{6\sqrt{37}}{37}+2}{2}
Now solve the equation x=\frac{2±\frac{6\sqrt{37}}{37}}{2} when ± is plus. Add 2 to \frac{6\sqrt{37}}{37}.
x=\frac{3\sqrt{37}}{37}+1
Divide 2+\frac{6\sqrt{37}}{37} by 2.
x=\frac{-\frac{6\sqrt{37}}{37}+2}{2}
Now solve the equation x=\frac{2±\frac{6\sqrt{37}}{37}}{2} when ± is minus. Subtract \frac{6\sqrt{37}}{37} from 2.
x=-\frac{3\sqrt{37}}{37}+1
Divide 2-\frac{6\sqrt{37}}{37} by 2.
x=\frac{3\sqrt{37}}{37}+1 x=-\frac{3\sqrt{37}}{37}+1
The equation is now solved.
x^{2}-2x+\frac{28}{37}=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}-2x+\frac{28}{37}-\frac{28}{37}=-\frac{28}{37}
Subtract \frac{28}{37} from both sides of the equation.
x^{2}-2x=-\frac{28}{37}
Subtracting \frac{28}{37} from itself leaves 0.
x^{2}-2x+1=-\frac{28}{37}+1
Divide -2, the coefficient of the x term, by 2 to get -1. Then add the square of -1 to both sides of the equation. This step makes the left hand side of the equation a perfect square.
x^{2}-2x+1=\frac{9}{37}
Add -\frac{28}{37} to 1.
\left(x-1\right)^{2}=\frac{9}{37}
Factor x^{2}-2x+1. 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-1\right)^{2}}=\sqrt{\frac{9}{37}}
Take the square root of both sides of the equation.
x-1=\frac{3\sqrt{37}}{37} x-1=-\frac{3\sqrt{37}}{37}
Simplify.
x=\frac{3\sqrt{37}}{37}+1 x=-\frac{3\sqrt{37}}{37}+1
Add 1 to both sides of the equation.