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In this case, your x intercepts are the values for x which make either term in parentheses = 0. Some equations in the ax 2 + bx + c form can be easily factored into the form (dx + e)(fx +g), where dx × fx = ax 2, (dx × g + fx × e) = bx, and e × g = c. x = 11 and 13 are the parabola's x-intercepts. This method may work for simple quadratic equations, especially in vertex form, but will prove exceedingly difficult for more complicated ones. Simply set f(x) = 0 and solve the equation.Otherwise, solve for your x intercepts with one of the following methods: If your parabola has a vertex opens upward and has a vertex above the x axis or if it opens downward and has a vertex below the x axis, it won't have any x intercepts. However, not all parabolas have x-intercepts. Even if you're not to find them, these two points can be invaluable for drawing an accurate parabola. X Research source Often, on schoolwork, you'll be asked to find a parabola's x-intercepts (which are either one or two points where the parabola meets the x axis). If necessary, find and plot x intercepts. The coordinates of the vertex in standard form are given by: h = -b/2a and k = f(h), while in vertex form, h and k are specified in the equation. To graph either of these types of equations, we need to first find the vertex of the parabola, which is the central point (h,k) at the "tip" of the curve.
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If you're doing a homework problem, you'll usually receive the problem in one of these two forms - in other words, you won't be able to choose, so it's best to understand both. You can use either form to graph a quadratic equation the process for graphing each is slightly different. The quadratic equation can be written in three different forms: the standard form, vertex form, and the quadratic form. Determine which form of quadratic equation you have.
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