How do you solve ${{x}^{2}}-6=x$ using the quadratic formula?
Answer
624.3k+ views
Hint: By quadratic formula, we mean the Sridhar Acharya formula, which is more commonly known. We compare the given equation with the general form of a quadratic equation to find out the coefficients and put them in the formula $x=\dfrac{-b\pm \sqrt{{{b}^{2}}-4ac}}{2a}$ . After that, we get two solutions to the given equation.
Complete step-by-step solution:
The given equation is
${{x}^{2}}-6=x$
The equation can be rearranged by moving the $x$ term from the right hand side to the left hand side. The equation thus becomes,
$\Rightarrow {{x}^{2}}-x-6=0....equation1$
Now, let us consider the general form of a quadratic equation which is
$a{{x}^{2}}+bx+c=0$
By quadratic formula, we mean the Sridhar Acharya formula which states that the two roots of a quadratic equation can be expressed as
$x=\dfrac{-b\pm \sqrt{{{b}^{2}}-4ac}}{2a}$
Where, $a,b$ are the respective coefficients of the terms ${{x}^{2}}$ , $x$ and $c$ is the constant term. Comparing the given equation ${{x}^{2}}-x-6=0$ with the general quadratic equation $a{{x}^{2}}+bx+c=0$ , we get
$\begin{align}
& a=1 \\
& b=-1 \\
& c=-6 \\
\end{align}$
Having found out the coefficients, we put them in the Sridhar Acharya formula to get the two roots of the equation or the two values of $x$ that satisfy the given equation. Thus,
$\Rightarrow x=\dfrac{-\left( -1 \right)\pm \sqrt{{{\left( -1 \right)}^{2}}-4\left( 1 \right)\left( -6 \right)}}{2\left( 1 \right)}$
Simplifying the terms, we get,
$\Rightarrow x=\dfrac{1\pm \sqrt{1+4\left( 6 \right)}}{2}$
Further simplification gives
$\Rightarrow x=\dfrac{1\pm \sqrt{1+24}}{2}$
Adding the two numbers $24$ and $1$ and implementing the square root, we get,
$\Rightarrow x=\dfrac{1\pm 5}{2}$
Now, the two values of $x$ after separating the $+$ and the $-$ from the $\pm $ , are
$\Rightarrow x=\left( \dfrac{1+5}{2} \right)$ and $x=\left( \dfrac{1-5}{2} \right)$
On simplification, we get,
$\Rightarrow x=3$ and $x=-2$
Therefore, we can conclude that the two roots or solutions of the given equation ${{x}^{2}}-6=x$ are $x=3$ and $x=-2$ .
Note: We should remember the quadratic formula accurately and should not interpret it wrongly. As the coefficients play a vital role here, we must compare our equation with the general quadratic equation correctly. Also, there are various other ways to find the solution like, by plotting the corresponding graph and see where it intersects the $x-axis$ , by completing the square, or by the middle term method.
Complete step-by-step solution:
The given equation is
${{x}^{2}}-6=x$
The equation can be rearranged by moving the $x$ term from the right hand side to the left hand side. The equation thus becomes,
$\Rightarrow {{x}^{2}}-x-6=0....equation1$
Now, let us consider the general form of a quadratic equation which is
$a{{x}^{2}}+bx+c=0$
By quadratic formula, we mean the Sridhar Acharya formula which states that the two roots of a quadratic equation can be expressed as
$x=\dfrac{-b\pm \sqrt{{{b}^{2}}-4ac}}{2a}$
Where, $a,b$ are the respective coefficients of the terms ${{x}^{2}}$ , $x$ and $c$ is the constant term. Comparing the given equation ${{x}^{2}}-x-6=0$ with the general quadratic equation $a{{x}^{2}}+bx+c=0$ , we get
$\begin{align}
& a=1 \\
& b=-1 \\
& c=-6 \\
\end{align}$
Having found out the coefficients, we put them in the Sridhar Acharya formula to get the two roots of the equation or the two values of $x$ that satisfy the given equation. Thus,
$\Rightarrow x=\dfrac{-\left( -1 \right)\pm \sqrt{{{\left( -1 \right)}^{2}}-4\left( 1 \right)\left( -6 \right)}}{2\left( 1 \right)}$
Simplifying the terms, we get,
$\Rightarrow x=\dfrac{1\pm \sqrt{1+4\left( 6 \right)}}{2}$
Further simplification gives
$\Rightarrow x=\dfrac{1\pm \sqrt{1+24}}{2}$
Adding the two numbers $24$ and $1$ and implementing the square root, we get,
$\Rightarrow x=\dfrac{1\pm 5}{2}$
Now, the two values of $x$ after separating the $+$ and the $-$ from the $\pm $ , are
$\Rightarrow x=\left( \dfrac{1+5}{2} \right)$ and $x=\left( \dfrac{1-5}{2} \right)$
On simplification, we get,
$\Rightarrow x=3$ and $x=-2$
Therefore, we can conclude that the two roots or solutions of the given equation ${{x}^{2}}-6=x$ are $x=3$ and $x=-2$ .
Note: We should remember the quadratic formula accurately and should not interpret it wrongly. As the coefficients play a vital role here, we must compare our equation with the general quadratic equation correctly. Also, there are various other ways to find the solution like, by plotting the corresponding graph and see where it intersects the $x-axis$ , by completing the square, or by the middle term method.
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