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(x+3)(x+5) is factored while x2 + 8x +15 is not. To factor trinomials, you need to know how the 8x and the 15 were computed. The 8x came from adding 5x and 3x while 15 came from multiplying 5 and 3.
Example 2. A rancher has 500 yards of fencing to enclose two adjacent pig pens that rest against the barn. If the area of the two pens must total 20,700 square yards, what should the dimensions of the pens be?
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Example 3. During the course of an experiment, the temperature of oxygen must be monitored. Using the data from the experiment, the following quadratic can model the temperature of the oxygen,
To graph a quadratic, y = ax2 + bx + c , you should find: The vertex. The formula for the x coordinate is To find the y coordinate, substitute your answer for the x coordinate in the equation y = ax2 + bx + c . The x intercepts. Set y = 0 and solve the equation, 0 = ax2 + bx + c , using the quadratic formula The y intercept. Set x = 0 in the equation, y = ax2 + bx + c , and find y. Note, when x = 0, y = c. If a is negative, generally the graph looks like this: If a is positive, generally the graph looks like this:
This chapter introduced you to quadratics. The two major topics are the quadratic formula and graphs of quadratics. These topics have many applications in business, physics, and geometry. Factoring is an important topic in MAT 100, Intermediate Algebra.
where T is measured in Celsius, and m represents the minutes that the experiment has run. Determine when the temperature of the oxygen is 0 degree Celsius.
c. Suppose the company needs to earn $200,000 in profit (P = 200). Graph the line P = 200 and find how many juice boxes the company needs to make to earn $200,000.
The Time Intercepts, (0, 0) and (4, 0) represent when the rock is on the ground. The rock is on the ground at zero seconds, before it is shot, (which is the Height Intercept) and at 4 seconds, when it returns to the ground.
The company will earn a profit of more than $500,000 when the profit graph is above the horizontal line P = 500. This problem is similar to example 2d on page 203 in Section 2.9 "Applications of Graphs".
Example 1. A boy lying on his back uses a sling shot to fire a rock straight up in the air with an initial velocity (the force the boy uses to fire the rock) of 64 feet per second. The quadratic equation that models the height of the rock is
The height of the rock depends on the time, so h is the dependent variable, and t is the independent variable. The points have the form (t, h).
Example 4. During the course of an experiment, the temperature of oxygen must be monitored. Using the data from the experiment, the following quadratic can model the temperature of the oxygen,
To find the P intercept, set g = 0. P = -02 +84*0-625 P = -625 The P intercept is (0, -625). The company's start up costs are $625,000.
Before you think that factoring to solve quadratics is a lot easier than using the quadratic formula, you need to know that factoring doesn't always work. Consider changing Example 8 by just one to x2 - 11x + 31 = 0. You cannot find two integers that when added equal -11 and when multiplied equal 31. To factor x2 - 11x + 31 you must use the quadratic formula. You will learn how to factor any quadratic equation in Precalculus I, MAT 161.
The dimensions of the chicken coop that will yield an area of 700 square feet are 35 by 20 feet and 6.667 by 105 feet. (To get the length divide 700 by 6.667 and 35.)
We need two numbers that when added equal 8 and when multiplied equal 15. 3 and 5 add up to 8 and when multiplied are 15.
Why study quadratics? The graphs of quadratic equations result in parabolas (U shaped graphs that open up or down). This feature of quadratics makes them good models for describing the path of an object in the air or describing the profit of a company (examples of which you may see in Finite Mathematics or in Microeconomics.)
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Two techniques for factoring are presented in this unit. The first is common factors which uses the distributive property, ab + ac = a(b + c). The other one is factoring trinomials. To factor trinomials, you need to know how FOIL works. If you take MAT 100, Intermediate Algebra, you will see more factoring.
Substituted the revenue and cost equations into the formula for profit. Must use parentheses. Used the distributive property. Multiplied the revenue equation by 1 and the cost equation by -1. Combined like terms.
This example is called factoring the difference of perfect squares, and you will see this again if you take MAT 100, Intermediate Algebra.
According to the graph, the rock reaches its greatest height at 2 seconds. The maximum height is 64 feet. The maximum or minimum point of a quadratic is called the vertex. You will learn how to find the vertex in Section 4.3, Quadratic Applications and Graphs.
Vocabulary: The standard format of a quadratic equation is y = ax2 + bx + c; a, b, c are constants; x is the independent variable, and y is the dependent variable. Quadratics are also called second degree polynomials because the highest exponent is 2. The slope-intercept equation from the second chapter, y = mx + b is called a first degree polynomial because the highest exponent is one.
Example 5. The cost equation for making juice boxes is C = 0.6B2 - 24B + 36, and the revenue equation is R = -0.4B2 + 18B . B is in millions, and C and R are in thousands of dollars.
Study Tips: Quadratics are U shaped graphs. In some cases, they are U shaped as in the example above or shaped as in examples 1 through 3. If a in the equation, y = ax2 + bx + c, is positive, then the graph is U shaped, that is, opening up. If a is negative, the graph is shaped, that is, opening down. This fact should be written on a note card.
To graph a quadratic, y = ax2 + bx + c you must find: The vertex: The x coordinate is computed with the formula The y coordinate is computed by substituting the x coordinate into y = ax2 + bx + c. The x intercept: Set y = 0 and solve 0 = ax2 + bx + c using the quadratic formula. The y intercept: Substitute x = 0 into y = ax2 + bx + c . Note that when x = 0, y = c.
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We need two numbers that when added equal -4 and when multiplied equal -12. -6 and 2 add up to -4 and when multiplied are -12.
g. Using the graph and the answers to Part c, determine how many computer games must be made and sold to guarantee a profit greater than $500,000.
Couldn't combine the unlike terms inside the parantheses so we used the distributive property. After that, we multiplied 6x by 3 and then -5 by 3. Used the distributive property and combined like terms.
Vocabulary: To add or subtract quadratics, combine like terms. Like terms, originally presented in the Section 1.3, "Simplifying Algebraic Expressions," have the same variable and the same exponent. For example 2x2 and 5x2 are like terms while 3x2 and 7x are not.
Explanation: One explanation for the profit having two break even points is how efficient a company is at making a product. Making very few items is usually inefficient. At some point, the factory becomes very efficient at manufacturing the product, but if the factory tries to make too many items, the company becomes inefficient at producing its product.
Graphs of quadratics appear in subjects as diverse as microeconomics and physics. This section summarizes the major ideas of the unit.
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This section shows us how to solve a new type of equation, the quadratic. These have important applications in many fields, such as business, physics, and engineering. Learn the difference between the quadratic equation and the quadratic formula.
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Quadratics are important equations in physics and microeconomics. The technique for adding and subtracting quadratics is the same as we have been practicing all semester; that is, add or subtract the like terms. To multiply, use the distributive property or FOIL. The vertex of the quadratic will be explained in more detail in the section, "Graphing Quadratics and Applications." The vertex is the maximum or minimum point on the graph of the quadratic.
The vertex, (12, 576) represents the maximum area of the three dog pens. When W = 12, the maximum area will be 576. (The length of all three pens will be 48 or the length of one dog pen will be 16.) There will be three dog pens each 12 by 16 meters.
Factoring is an algebraic technique used to separate an expression into its component parts. When the component parts are multiplied together, the result is the original expression. This can sometimes be used to solve quadratic equations. Factoring is an important skill in MAT 100, Intermediate Algebra.
Explanation: a is the coefficient of the variable that is squared b is the coefficient of the variable to the first power. c is the constant.
Suppose D+++ needs to make a profit of $500,000 (P = 500) a month. Sketch this line on the graph obtained in Part b and find where the line intersects the graph of the quadratic. Write a sentence explaining what the answers mean.
The B intercepts (0.875, 0) and (41.13, 0) tell us that the company will break even if they sell .875 or 41.13 million juice boxes.
Example 1. Suppose you are standing on top of a cliff 375 feet above the canyon floor, and you throw a rock up in the air with an initial velocity of 82 feet per second. The equation that models the height of the rock above the canyon floor is:
The quadratic formula, solves the quadratic equation. The formula yields two solutions. The calculator is used to find the answers. The first step in evaluating the formula is to simplify the square root.
T = -2.916 is a meaningless answer since t is the time it takes the rock to hit the canyon floor, and time cannot be negative.
Explanation: Although 8x3 + 4x is equal to both 2x(4x2 + 2) and 4(2x3 + x) neither are considered completely factored because in both cases a common multiple, 2, in 2x(4x2 +2) and x in 4(2x3 +x) can still be factored from the terms in the parenthesis.
Study Tips: Practice the review test starting on the next page by placing yourself under realistic exam conditions. Find a quiet place and use a timer to simulate the length of the class period. Write your answers in your homework notebook or make a copy of the test. You may then re-take the exam for extra practice. Check your answers. There is an additional exam available on the MAT 011 web page. Do NOT wait until the night before to study.
This section explores further key points in the graph of a quadratic, the vertex and the intercepts. These points will be interpreted in applications.
A coefficient, originally presented in Section 1.3, "Simplifying Algebraic Expressions," is the number multiplying the variable. For example, the coefficient of 2x is 2, and the coefficient of -x2 is -1.
Vocabulary: a2 - b2 is the difference of perfect squares. The difference of perfect squares has a special factoring formula: a2 - b2 = (a - b)(a + b)
The vertex (21,405) represents the maximum profit. The company will obtain its maximum profit of $405,000 when they sell 21 million juice boxes.
Explanation: The graph gives an estimate of where the horizontal line, P = 500, and the equation for profit, P = -g2 +84g-625 intersect. Algebra gives the exact point where they intersect.
If you multiply two quantities and the result is zero, then you know that one of the quantities must be zero. In mathematical notation
The quadratic equation is ax2 + bx + c = 0. One side of the equation must be zero. a is the coefficient of x . b is the coefficient of x. c is the constant term.
Substituted the revenue and cost equations into the formula for profit. Must use parantheses. Used the distributive property and multiplied the revenue equation by 1 and cost equation by -1. Combined like terms.
Example 2. The company D+++ makes computer games. The cost of making g games per month is C = 0.4g2 - 32g + 625 . The revenue from selling g games per month is R = -0.6g2 +52g. The units for g are in hundreds, and C and R are in thousands of dollars.
Explanation: The most difficult part of the table is finding the value for length. If the farmer uses 10 meters for the width of the pens, and there are 4 widths, then he has used 4 times 10 , or 40 meters of fencing. To find how much fencing he has left for the length, subtract 40 from 96, the total amount of fencing available to the farmer.
Example 1. A boy lying on his back uses a sling shot to fire a rock straight up in the air with an initial velocity (the force the boy uses to shoot the rock) of 64 feet per second. The quadratic equation that models the height of the rock is
The vertex, (2,64) represents the maximum height of the rock. The rock reaches a maximum height of 64 feet in 2 seconds.
Go Back: This is the same model that was used in Example 3 on page 332. That example was worked when the temperature was zero.
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where T is measured in Celsius, and m represents the minutes that the experiment has run. Graph the equation by finding the vertex and the intercepts. Label these points on the graph and explain what the vertex and intercepts mean in terms of the model.
a, b, and c are numbers that will be substituted into the formula. a is the coefficient of the squared variable, b is the coefficient of the variable to the first power, c is the constant. The symbol ± gives two solutions to the equation. One solution is with the + sign, and the other solution is with the - sign, . is the square root symbol. The because 42 = 16. The because 5.9162 = 35. Your calculator is essential for this section. Make sure you can find the button on your calculator. You can only compute the square root of nonnegative numbers. If you try to compute your calculator will give an error message. If you take Intermediate Algebra, you will learn about square roots of negative numbers.
According to the graph, the rock is on the ground at zero seconds (right before the boy shoots it) and at 4 seconds (when the rock lands). These points are the time intercepts. You will learn how to find them in the next Section 4.2, "Applications of the Quadratic Formula."
Example 4. A farmer wants to enclose two adjacent chicken coops against a barn. He has 125 feet of fence. What should the dimensions be if he wants the total area to be 700 square feet.
The growth in new home construction and Multiple Dwelling Unit (MDU) construction has paved a new path for digital applications. Where rabbit ears and 2-wire telephone systems once dominated the analog world, new technologies and markets expand in the digital world.
Example 3. A kennel operator wants to enclose three adjacent dog pens of equal size against a wall. He has 96 meters of fence.
Study Tip: Write the quadratic equation and quadratic formula on note cards, so you can reference them when you do your homework.
a. Find the x coordinate: b. Find the y coordinate: Substitute the value for x obtained in Part a into the formula y = ax2 + bx + c.