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 Solving Quadratics with Square Roots Solving Quadratics by Graphing Solving Quadratics with the Quadratic Formula Solving Quadratic Inequalities Miscellaneous 10 10 10 10 10 20 20 20 20 20 30 30 30 30 30 40 40 40 40 40 50 50 50 50 50 Final Question

x^2 = 1
x^2 = 1
x = 1 and x = -1
4y^2 = 16
4y^2 = 16
y = 2 and y = -2
t^2 - 64 = 0
t^2 - 64 = 0
t = 8 and t = -8
5x^2 + 125 = 0
5x^2 + 125 = 0
No real solution
Simplify the square root of 150
Simplify the square root of 150

2x^2 = 32
2x^2 = 32
x = 4 and x = -4
x^2 + 37 = 118
x^2 + 37 = 118
x = 9 and x = -9
2x^2 - 8x = 10
2x^2 - 8x = 10
x = -1 and x = 5
-x^2 - x + 6 = 0
-x^2 - x + 6 = 0
x = -3 and x = 2
x^2 + 6x - 7 = 0
x^2 + 6x - 7 = 0
x = -7 and x = 1
x^2 - 6x - 27 = 0
x^2 - 6x - 27 = 0
x = 9 and x = -3
-x^2 + 3x + 10 = 0
-x^2 + 3x + 10 = 0
x = 5 and x = -2
3x^2 + 4x - 7 = 0
3x^2 + 4x - 7 = 0
x = 1 and x = -7/3 or 2.33
2x^2 + 4 = 6x
2x^2 + 4 = 6x
x = 1 and x = 2
12 = 2x^2 - 2x
12 = 2x^2 - 2x
x = -2 and x = 3
y < x^2 + 2x - 3
y < x^2 + 2x - 3

y <= -x^2 + 5x - 4
y <= -x^2 + 5x - 4

y >= x^2 + 7x + 6
y >= x^2 + 7x + 6

y < -4x^2 + 8x - 5
y < -4x^2 + 8x - 5

y <= -x^2 + 2x - 3
y <= -x^2 + 2x - 3

Find the discriminant and determine the number of solutions: -3x^2 + x - 2 = 0
Find the discriminant and determine the number of solutions: -3x^2 + x - 2 = 0
-23 no solution
Find the discriminant and determine the number of solutions: x^2 - 4x + 4 = 0
Find the discriminant and determine the number of solutions: x^2 - 4x + 4 = 0
0 one solution
Find the discriminant and determine the number of solutions: 5x^2 - 2x - 6 = 0
Find the discriminant and determine the number of solutions: 5x^2 - 2x - 6 = 0
124 two solutions
Simplify the square root of: 24/45
Simplify the square root of: 24/45
square root of 15/ 5
Simplify the square root of: 2(square root of 6/18)
Simplify the square root of: 2(square root of 6/18)
2(square root of 3) / 3
Suppose you are standing on a bridge over a creek, holding a stone 20 feet above the water. You toss a stone straight up with an initial velocity of 30 feet per second. How long will it take the stone to reach the water? Use the equation: h = -16t^2 + vt + s
Suppose you are standing on a bridge over a creek, holding a stone 20 feet above the water. You toss a stone straight up with an initial velocity of 30 feet per second. How long will it take the stone to reach the water? Use the equation: h = -16t^2 + vt + s

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