Warm Up Problem of the Day Lesson Presentation Lesson Quizzes.

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Warm Up Problem of the Day Lesson Presentation Lesson Quizzes

Math Journal (5 Min) Venn Diagram - Each student will be given the title/title’s of the lesson that will be taught that day. They must then, at the beginning of class, construct a Venn Diagram by drawing 2 overlapping circles and fill out information in each circle on the topic’s (will be 2 topics) about what they know about the topic’s before they have been taught the lesson, and at the end of class, look over and refine their pervious Venn Diagram with information that they now know about the topic after they have been taught the lesson. Then, each student will discuss his/her answers within their group. Finally, to leave class, each student will have to give/write 1 common and different characteristic that they now know that pertained to the lesson. (Remember in a Venn Diagram: Unique characteristics of the two topics being compared are recorded in the outer of the two overlapping circles. Common characteristics are recorded where the circles overlap).

Homework Review (5 Min)

Warm Up Write the inequality for each situation. 1. There are at least 28 days in a month. 2. The temperature is above 72°. 3. At most 9 passengers can ride in the van. days in a month ≥ 28 temperature > 72° passengers ≤ 9

Problem of the Day Daryl gave the clerk less than $20 for a CD and received change of at least $5. He ended up with the CD and less money than he started with. Write a compound inequality to show what C, the cost in dollars of the CD, could have been. 0 < C < 15

Textbook Examples (I Do) (5 Min)

Learn to solve one-step inequalities by adding or subtracting.

Additional Example 1A: Using the Addition Property of Inequality Solve. Then graph the solution set on a number line. n – 7 ≤ 15 n – 7 ≤ 15 + 7 + 7 Add 7 to both sides. n ≤ 22 Draw a closed circle at 22 then shade the line to the left of 22. -44 -22 22 44 66 –88 -66

Additional Example 1B: Using the Addition Property of Inequality Solve. Then graph the solution set on a number line. a – 10 ≥ –3 a – 10 ≥ –3 + 10 +10 Add 10 to both sides. a ≥ 7 Draw a closed circle at 7. Then shade the line to the right. –4 –2 0 2 4 6 8 10

Check It Out: Example 1A Solve. Then graph the solution set on a number line. d – 12 ≤ –18 d – 12 ≤ –18 + 12 + 12 Add 12 to both sides. d ≤ –6 Draw a closed circle at –6 then shade the line to the left of –6. –8 –6 –4 –2 0 2 4 6

Remember! Draw a closed circle when the inequality includes the point and an open circle when it does not include the point.

Check It Out: Example 1B Solve. Then graph the solution set on a number line. b – 14 ≥ –8 b – 14 ≥ –8 + 14 +14 Add 14 to both sides. b ≥ 6 Draw a closed circle at 6. Then shade the line to the right. –4 –2 0 2 4 6 8 10

You can check the solution to an inequality is true by choosing any number in the solution set and substituting it into the original inequality.

Additional Example 2A: Using the Subtraction Property of Inequality Solve. Check each answer. d + 11 > 6 d + 11 > 6 –11 –11 Subtract 11 from both sides. d > –5 Check d + 11 > 6 0 + 11 > 6 ? 0 is greater than –5. Substitute 0 for d. 11 > 6 ?

Additional Example 2B: Solving Inequalities by Subtracting Solve. Check your answer. b + 12 ≤ 19 b + 12 ≤ 19 –12 –12 Subtract 12 from both sides. b 7 ≤ Check b + 12 ≤ 19 6 + 12 19 ≤ ? 6 is less than 7. Substitute 6 for b. 18 19 ? ≤

Solve. Check each answer. Check It Out: Example 2A Solve. Check each answer. c + 15 > 9 c + 15 > 9 –15 –15 Subtract 15 from both sides. c > –6 Check c + 15 > 9 0 + 15 > 9 ? 0 is greater than –6. Substitute 0 for c. 15 > 9 ?

Solve. Check your answer. Check It Out: Example 2B Solve. Check your answer. a + 15 ≤ 20 a + 15 ≤ 20 –15 –15 Subtract 15 from both sides. a 5 ≤ Check a + 15 ≤ 20 4 + 15 20 ≤ ? 4 is less than 5. Substitute 4 for a. 19 20 ? ≤

When checking your solution, choose a number in the solution set that is easy to work with. Helpful Hint

Additional Example 3: Money Application Edgar’s August profit of $137 was at least $20 higher than his July profit. What was July’s profit? Let p represent the profit increase from July to August. August profit was at least $20 higher than July’s profit. $137 ≥ 20 + p 137 ≥ 20 + p -20 -20 Subtract 20 from both sides. 117 ≥ p p ≤ 117 Rewrite the inequality. July’s profit was at most $117.

Check It Out: Example 3 Rylan’s March profit of $172 was at least $12 less than his February profit. What was February’s profit? Let p represent the profit decrease from February to march. March profit was at least $12 less than February’s profit. $172 ≥ -12 + p 172 ≥ -12 + p +12 +12 Add 12 to both sides. 184 ≥ p p ≤ 184 Rewrite the inequality. February’s profit was at most $184.

Class work Problems (We Do) (10 Min) Pg. 490-491 (1-7)

Small Group CW(Yall Do) (10 Min) Pg. 490-491 (8-42 EOE)

Homework (You Do) (10 Min) Pg. 490-491 (9, 15, 21, 23, 35 odd)

Math Journal (5 Min) Venn Diagram - Each student will be given the title/title’s of the lesson that will be taught that day. They must then, at the beginning of class, construct a Venn Diagram by drawing 2 overlapping circles and fill out information in each circle on the topic’s (will be 2 topics) about what they know about the topic’s before they have been taught the lesson, and at the end of class, look over and refine their pervious Venn Diagram with information that they now know about the topic after they have been taught the lesson. Then, each student will discuss his/her answers within their group. Finally, to leave class, each student will have to give/write 1 common and different characteristic that they now know that pertained to the lesson. (Remember in a Venn Diagram: Unique characteristics of the two topics being compared are recorded in the outer of the two overlapping circles. Common characteristics are recorded where the circles overlap).

Lesson Quizzes Standard Lesson Quiz Lesson Quiz for Student Response Systems

Lesson Quiz: Part I Solve. Then graph each solution set on a number line. 1. x – 4 > 17 2. z – 27 ≤ 19 Solve. Check each answer 3. p + 18 ≥ –6 13 15 17 19 21 23 25 x > 21 40 42 44 46 48 50 52 • z ≤ 46 p ≥ –24 4. k + 47 > 65 k > 18

Lesson Quiz: Part II Solve. Check each answer. 5. There are at least 17 more bus riders than walkers in a class. If there are 7 walkers, how many bus riders are there? bus riders ≥ 24

Lesson Quiz for Student Response Systems 1. Solve the given inequality, and then identify the graph of the solution set on the number line. p – 9 > 13 A. p < 9 B. p > 9 C. p > 22 D. p < 22

Lesson Quiz for Student Response Systems 2. Solve q + 15 > –8. A. q < 23 B. q < 7 C. q > –23 D. q > –7

Lesson Quiz for Student Response Systems 3. There are at least 15 more football players than baseball players in a class. If there are 12 baseball players, how many football players are there? A. at least 27 B. at most 27 C. at least 3 D. at most 3