answersLogoWhite

0


Want this question answered?

Be notified when an answer is posted

Add your answer:

Earn +20 pts
Q: How can you tell what the solution is from the graph of a system?
Write your answer...
Submit
Still have questions?
magnify glass
imp
Related questions

The solution of a system of equation is?

the solution to a system is where the two lines intersect upon a graph.


Solving the system of equations by graphing?

Graph both equations on the same graph. Where they intersect is the solution to the system of equations


How many solutions will a system have if the graph of the solution is intersecting lines?

one solution


How many solutions will a system have if the graph of the solution is intersecting line?

One solution


How can you find the solution to a system of equatios using a graph?

Graph both and where they cross is the answer to both.


The graph of a system of equations with the same slope and the same y intercepts will have no solution?

The statement - The graph of a system of equations with the same slope and the same y intercepts will have no solution is True


How many solutions will a system have if the graph of the solution is parallel lines?

No Solutions


How many solutions will a system have if the graph of the solution is coinciding lines?

no solutions


Is the solution of a two-variable system the point on a graph at which the lines cross?

Yes


What does a single solution to a system of equations mean?

It represents the point of intersection on a graph.


Does the graph of a system of equations with different slopes have no solutions?

The graph of a system of equations with the same slope will have no solution, unless they have the same y intercept, which would give them infinitely many solutions. Different slopes means that there is one solution.


How you can obtain the solution to a system of equations by graphing?

In the same coordinate space, i.e. on the same set of axes: -- Graph the first equation. -- Graph the second equation. -- Graph the third equation. . . -- Rinse and repeat for each equation in the system. -- Visually examine the graphs to find the points (2-dimension graph) or lines (3-dimension graph) where all of the individual graphs intersect. Since those points or lines lie on the graph of each individual graph, they are the solution to the entire system of equations.