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melamori03 [73]
3 years ago
13

Use the quadratic formula to solve the equation. If necessary, round to the nearest hundredth.

Mathematics
2 answers:
Phoenix [80]3 years ago
5 0

Answer:

Option B. 1.93, -11.93 is the right answer.

Step-by-step explanation:

Here the given equation is x²-23 = 10x and we have to solve the equation for the value of x.

First we simplify the equation to bring in the shape of ax²+bx+c=0

x²-23 = 10x

(x²-23)-10x = 10x-10x

x²-10x -23 = 0

Now we the formula for the value of x= \frac{-b\pm \sqrt{b^{2}-4ac}}{2a}

x=\frac{10\pm \sqrt{(-10)^{2}-4(1)(-23)}}{2(1)}

x=\frac{-10\pm  \sqrt{100+92}}{2}

x= \frac{-10\pm \sqrt{192}}{2}

x=\frac{-10\pm 4\sqrt{12}}{2}

x=-5\pm 2\sqrt{12} = -5\pm (2\times 3.464) = -5\pm 6.93

Now x = (-5+6.93) = 1.93

and x = (-5-6.93) = -11.93

mel-nik [20]3 years ago
4 0

<u>Answer:</u>

The correct answer option is a. -1.93, 11.93.

<u>Step-by-step explanation:</u>

We are given the following equation and we are to solve it using the quadratic formula:

x^2 - 23 = 10x

Re-arranging this equation in order of decreasing power:

x^{2} - 10x - 23 = 0

Using the quadratic formula:

x = \frac {-b + - \sqrt{b^2 - 4ac} }{2a}

Substituting the given values in the formula to get:

x=\frac{-(-10)+-\sqrt{(-10)^2-4(1)(-23)} }{2(1)}

x=\frac{10+-\sqrt{192} }{2}

x=\frac{10+\sqrt{192} }{2} , x=\frac{10-\sqrt{192} }{2}

x=11.93, x=-1.93



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