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

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 solution to a two-variable system is the point on a graph at which the lines cross?

That's the "coordinate origin" or simply the "origin".


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


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


If the discriminant is negative the graph of a quadratic function will cross or touch the x-axis time s?

If the discriminant is negative, the equation has no real solution - in the graph, the parabola won't cross the x-axis.


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


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.