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Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)
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Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Dec 18, 2015

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Melinda Phelps
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Page 1: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Quadratic Equations From Their Solutions

From solutions to factors to final equations (10.3)

Page 2: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

POD

Solve the following equations.

022

065

2

2

xx

xx

Page 3: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

POD

Solve the following equations.

We moved from equation to solution here.

3

2

0)3)(2(

0652

x

x

xx

xx

ii

x

xx

12

22

2

42

12

21442

0222

Page 4: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Today we start with solutions

Then we determine the factors from those solutions.

Then we multiply the factors to find the final equation.

It’s the opposite direction from the POD.

Page 5: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

1. The solutions for this quadratic equation are 5 and -7, and the leading coefficient is 1.

Find the factors.

Give the equation.

Page 6: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

1. The solutions for this quadratic equation are 5 and -7, and the leading coefficient is 1.

Find the factors. (x - 5) and (x + 7)

Give the equation. y = (x – 5)(x + 7) y = x2 + 2x - 35

Page 7: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

2. The solutions are 5/3 and -2.

Give an equation with a leading coefficient of one.

Give an equation with integer coefficients.

Page 8: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

2. The solutions are 5/3 and -2.

Give an equation with a leading coefficient of one.

The factors are (x – 5/3) and (x + 2).

The equation is y = (x – 5/3)(x + 2)

y = x2 + x/3 – 10/3.

Page 9: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

2. The solutions are 5/3 and -2. Give an equation with integer coefficients.

All we have to do is multiply every term by 3. y = 3x2 + x – 10.

Although it’s a different parabola, it has the same zeros.

Page 10: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

3. The solutions are 1/4 and 2/3. Find an equation with integer coefficients.

Page 11: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

3. The solutions are 1/4 and 2/3. Find an equation with integer coefficients.

The factors are (x – 1/4) and (x – 2/3).

The equation is y = x2 – 11x/12 + 1/6.

With integer coefficients it would be

y = 12x2 – 11x + 2.

How would you check it?

Page 12: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

3. With integer coefficients it would be

y = 12x2 – 11x + 2.

Check it using the quadratic formula.

Page 13: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

4. The solutions are 2+i and 2-i.

Page 14: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

4. The solutions are 2+i and 2-i.

The factors will be

(x-(2+i)) and (x-(2-i)).

Page 15: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

4. FOILing will be useful here.

How would you check your answer?

54

514)224()2)(2(:

2)2(:

2)2(:

:

))2())(2((

2

2

2

xxy

iiiiiL

xixxiI

xixxiO

xF

ixixy

Page 16: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

The Rule

Imaginary solutions come in complex conjugate pairs.

So, if 2 + 3i is a solution, what must another solution be?

What is an equation?

Page 17: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

The Rule

Imaginary solutions come in complex conjugate pairs.

So, if 2 + 3i is a solution, what must another solution be? 2 - 3i

What is an equation? y = x2 - 4x + 13

Page 18: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Factoring with imaginary roots

The process is the same, whether the roots are real or imaginary:

1. With imaginary roots, just determine the complex conjugates.

2. Once you have roots, draft the factors.

3. Multiply the factors.

Page 19: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Reality check

Real roots for a parabola (or any function) mean that the graph of the function crosses the x-axis at that point.

In other words, they are _____________

Page 20: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Reality check

Real roots for a parabola (or any function) mean that the graph of the function crosses the x-axis at that point.

In other words, they are x-intercepts.

Page 21: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Reality check

Imaginary roots for a parabola mean that the graph of the function does not cross the x-axis at all.

There are no x-intercepts.

Page 22: Quadratic Equations From Their Solutions From solutions to factors to final equations (10.3)

Try it

4. Make your own. Start with a complex number solution. Find the complex conjugate that must be the other solution. Then find the factors and the equation.

Everyone use a small white board!