The graph of a quadratic function, typically expressed in the form (y = ax^2 + bx + c), is a parabola. If the leading coefficient (a) is positive, the parabola opens upwards, while if (a) is negative, it opens downwards. The vertex represents the highest or lowest point of the graph, and the axis of symmetry is a vertical line that passes through the vertex. The parabola can intersect the x-axis at zero, one, or two points, depending on the discriminant of the quadratic equation.
Like a parabola. Not "like": it would be.
the graph for a quadratic equation ct5r
It is the graph of a quadratic equation of the formy = ax^2 + bx + c
The graph (on Cartesian coordinates) of a quadratic equation is a parabola.
It depends on what variable is represented by the graph.
Like a parabola. Not "like": it would be.
A quadratic relationship is a mathematical relationship that can be expressed by a quadratic formula in which the highest exponent is two (i.e., x squared). On a graph, this relationship will look like a parabola.
The graph of a quadratic equation is called a parabola.The graph of a quadratic equation is called a parabola.The graph of a quadratic equation is called a parabola.The graph of a quadratic equation is called a parabola.
The graph of a quadratic relation is a parobolic.
the graph for a quadratic equation ct5r
They will be on the horizontal x axis of the graph (look for the x-intercepts).
The graph of a quadratic equation has the shape of a parabola.
It is the graph of a quadratic equation of the formy = ax^2 + bx + c
the graph of a quadratic function is a parabola. hope this helps xP
A quadratic equation looks like bow.
When the graph of a quadratic crosses the x-axis twice it means that the quadratic has two real roots. If the graph touches the x-axis at one point the quadratic has 1 repeated root. If the graph does not touch nor cross the x-axis, then the quadratic has no real roots, but it does have 2 complex roots.
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