SOLUTION: Use the Gauss-Jordan method to solve the following system of equations x+y=9 4x+3y=30

Algebra.Com
Question 902277: Use the Gauss-Jordan method to solve the following system of equations
x+y=9 4x+3y=30

Answer by richwmiller(17219)   (Show Source): You can put this solution on YOUR website!
1,1,9
4,3,30

add down (-4) *row 1 to row 2
1,1,9
0,-1,-6
divide row 2 by -1
1,1,9
0,1,6
We now have the value for the last variable.
We will work our way up and get the other solutions.
add up (-1) *row 2 to row 1
1,0,3
0,1,6
final
1,0,3
0,1,6
1,0,3
0,1,6
"3","6"
(3,6)
Solved by pluggable solver: Solving a System of Linear Equations by Elimination/Addition


Lets start with the given system of linear equations




In order to solve for one variable, we must eliminate the other variable. So if we wanted to solve for y, we would have to eliminate x (or vice versa).

So lets eliminate x. In order to do that, we need to have both x coefficients that are equal but have opposite signs (for instance 2 and -2 are equal but have opposite signs). This way they will add to zero.

So to make the x coefficients equal but opposite, we need to multiply both x coefficients by some number to get them to an equal number. So if we wanted to get 1 and 4 to some equal number, we could try to get them to the LCM.

Since the LCM of 1 and 4 is 4, we need to multiply both sides of the top equation by 4 and multiply both sides of the bottom equation by -1 like this:

Multiply the top equation (both sides) by 4
Multiply the bottom equation (both sides) by -1


So after multiplying we get this:



Notice how 4 and -4 add to zero (ie )


Now add the equations together. In order to add 2 equations, group like terms and combine them




Notice the x coefficients add to zero and cancel out. This means we've eliminated x altogether.



So after adding and canceling out the x terms we're left with:



Divide both sides by to solve for y



Reduce


Now plug this answer into the top equation to solve for x

Plug in


Multiply



Subtract from both sides

Combine the terms on the right side

Multiply both sides by . This will cancel out on the left side.


Multiply the terms on the right side


So our answer is

,

which also looks like

(, )

Notice if we graph the equations (if you need help with graphing, check out this solver)




we get



graph of (red) (green) (hint: you may have to solve for y to graph these) and the intersection of the lines (blue circle).


and we can see that the two equations intersect at (,). This verifies our answer.

RELATED QUESTIONS

x+y=7 x-y=0 Use the Gauss- Jordan method to solve the following system of... (answered by solver91311)
Use the Gauss-Jordan method to solve the system of equations. 4x-3y+z+w=21... (answered by stanbon)
Use the Gauss-Jordan elimination method to solve the system of linear Equations:... (answered by Edwin McCravy)
Use the Gauss - Jordan method to solve the following system of equations. 2x + y - z = (answered by CharlesG2)
Use the Gauss- Jordan method to solve each system of equations x+3y-6z=7 2x-y+2z=0... (answered by stanbon)
can someone help me please...... use the gauss-jordan method to solve each system of... (answered by stanbon,richwmiller)
use the gauss-Jordan method to solve for the following system of equations. 2x+9-z=0... (answered by mananth,richwmiller)
Use the Gauss-Jordan elimination method to solve the system of equations: -6x + 6y = -36 (answered by robertb)
use the Gauss-Jordan elimination to solve the following system of equations. x+y+z=2... (answered by zeynep)