Solve for x, y
x=6
y=0
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4x-11y=24,-16x+5y=-96
To solve a pair of equations using substitution, first solve one of the equations for one of the variables. Then substitute the result for that variable in the other equation.
4x-11y=24
Choose one of the equations and solve it for x by isolating x on the left hand side of the equal sign.
4x=11y+24
Add 11y to both sides of the equation.
x=\frac{1}{4}\left(11y+24\right)
Divide both sides by 4.
x=\frac{11}{4}y+6
Multiply \frac{1}{4} times 11y+24.
-16\left(\frac{11}{4}y+6\right)+5y=-96
Substitute \frac{11y}{4}+6 for x in the other equation, -16x+5y=-96.
-44y-96+5y=-96
Multiply -16 times \frac{11y}{4}+6.
-39y-96=-96
Add -44y to 5y.
-39y=0
Add 96 to both sides of the equation.
y=0
Divide both sides by -39.
x=6
Substitute 0 for y in x=\frac{11}{4}y+6. Because the resulting equation contains only one variable, you can solve for x directly.
x=6,y=0
The system is now solved.
4x-11y=24,-16x+5y=-96
Put the equations in standard form and then use matrices to solve the system of equations.
\left(\begin{matrix}4&-11\\-16&5\end{matrix}\right)\left(\begin{matrix}x\\y\end{matrix}\right)=\left(\begin{matrix}24\\-96\end{matrix}\right)
Write the equations in matrix form.
inverse(\left(\begin{matrix}4&-11\\-16&5\end{matrix}\right))\left(\begin{matrix}4&-11\\-16&5\end{matrix}\right)\left(\begin{matrix}x\\y\end{matrix}\right)=inverse(\left(\begin{matrix}4&-11\\-16&5\end{matrix}\right))\left(\begin{matrix}24\\-96\end{matrix}\right)
Left multiply the equation by the inverse matrix of \left(\begin{matrix}4&-11\\-16&5\end{matrix}\right).
\left(\begin{matrix}1&0\\0&1\end{matrix}\right)\left(\begin{matrix}x\\y\end{matrix}\right)=inverse(\left(\begin{matrix}4&-11\\-16&5\end{matrix}\right))\left(\begin{matrix}24\\-96\end{matrix}\right)
The product of a matrix and its inverse is the identity matrix.
\left(\begin{matrix}x\\y\end{matrix}\right)=inverse(\left(\begin{matrix}4&-11\\-16&5\end{matrix}\right))\left(\begin{matrix}24\\-96\end{matrix}\right)
Multiply the matrices on the left hand side of the equal sign.
\left(\begin{matrix}x\\y\end{matrix}\right)=\left(\begin{matrix}\frac{5}{4\times 5-\left(-11\left(-16\right)\right)}&-\frac{-11}{4\times 5-\left(-11\left(-16\right)\right)}\\-\frac{-16}{4\times 5-\left(-11\left(-16\right)\right)}&\frac{4}{4\times 5-\left(-11\left(-16\right)\right)}\end{matrix}\right)\left(\begin{matrix}24\\-96\end{matrix}\right)
For the 2\times 2 matrix \left(\begin{matrix}a&b\\c&d\end{matrix}\right), the inverse matrix is \left(\begin{matrix}\frac{d}{ad-bc}&\frac{-b}{ad-bc}\\\frac{-c}{ad-bc}&\frac{a}{ad-bc}\end{matrix}\right), so the matrix equation can be rewritten as a matrix multiplication problem.
\left(\begin{matrix}x\\y\end{matrix}\right)=\left(\begin{matrix}-\frac{5}{156}&-\frac{11}{156}\\-\frac{4}{39}&-\frac{1}{39}\end{matrix}\right)\left(\begin{matrix}24\\-96\end{matrix}\right)
Do the arithmetic.
\left(\begin{matrix}x\\y\end{matrix}\right)=\left(\begin{matrix}-\frac{5}{156}\times 24-\frac{11}{156}\left(-96\right)\\-\frac{4}{39}\times 24-\frac{1}{39}\left(-96\right)\end{matrix}\right)
Multiply the matrices.
\left(\begin{matrix}x\\y\end{matrix}\right)=\left(\begin{matrix}6\\0\end{matrix}\right)
Do the arithmetic.
x=6,y=0
Extract the matrix elements x and y.
4x-11y=24,-16x+5y=-96
In order to solve by elimination, coefficients of one of the variables must be the same in both equations so that the variable will cancel out when one equation is subtracted from the other.
-16\times 4x-16\left(-11\right)y=-16\times 24,4\left(-16\right)x+4\times 5y=4\left(-96\right)
To make 4x and -16x equal, multiply all terms on each side of the first equation by -16 and all terms on each side of the second by 4.
-64x+176y=-384,-64x+20y=-384
Simplify.
-64x+64x+176y-20y=-384+384
Subtract -64x+20y=-384 from -64x+176y=-384 by subtracting like terms on each side of the equal sign.
176y-20y=-384+384
Add -64x to 64x. Terms -64x and 64x cancel out, leaving an equation with only one variable that can be solved.
156y=-384+384
Add 176y to -20y.
156y=0
Add -384 to 384.
y=0
Divide both sides by 156.
-16x=-96
Substitute 0 for y in -16x+5y=-96. Because the resulting equation contains only one variable, you can solve for x directly.
x=6
Divide both sides by -16.
x=6,y=0
The system is now solved.
Examples
Quadratic equation
{ x } ^ { 2 } - 4 x - 5 = 0
Trigonometry
4 \sin \theta \cos \theta = 2 \sin \theta
Linear equation
y = 3x + 4
Arithmetic
699 * 533
Matrix
\left[ \begin{array} { l l } { 2 } & { 3 } \\ { 5 } & { 4 } \end{array} \right] \left[ \begin{array} { l l l } { 2 } & { 0 } & { 3 } \\ { -1 } & { 1 } & { 5 } \end{array} \right]
Simultaneous equation
\left. \begin{cases} { 8x+2y = 46 } \\ { 7x+3y = 47 } \end{cases} \right.
Differentiation
\frac { d } { d x } \frac { ( 3 x ^ { 2 } - 2 ) } { ( x - 5 ) }
Integration
\int _ { 0 } ^ { 1 } x e ^ { - x ^ { 2 } } d x
Limits
\lim _{x \rightarrow-3} \frac{x^{2}-9}{x^{2}+2 x-3}