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How do we verify and find inverses of functions?

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Presentation on theme: "How do we verify and find inverses of functions?"— Presentation transcript:

1 How do we verify and find inverses of functions?
Inverse Functions M2 Unit 5a: Day 3 How do we verify and find inverses of functions?

2 Inverse functions: Two functions are inverses of one another if
The function g is denoted by , read as “f inverse.” To verify two functions are inverses, use compositions

3 Watch me as I work one. Ex: Verify that functions are inverses
Verify that and are inverses.

4 You try: Verify that f(x) and g(x) are inverse functions.

5 You try: Verify that f(x) and g(x) are inverse functions.

6 You try: Verify that f(x) and g(x) are inverse functions.

7 4. Which pair of functions are inverses
4. Which pair of functions are inverses? (Use composition to determine the answer.) a. b. c. d.

8 5. Which pair of functions are inverses
5. Which pair of functions are inverses? (Use composition to determine the answer.) a. b c. d.

9 Inverse Relations An inverse relation maps the output values back to their original input values. Basically, switch the domain and range of the relation to find the inverse. Ex: Find the inverse. Switch the x and y values x -2 -1 1 2 y 4 -4 x 4 2 -2 -4 y -1 1

10 Ex: 6 Now you try. Find the inverse of the relation. a) b) x 3 4 5 6 7
-4 -2 2 x -4 -2 2 4 Y 3 5 6 7 x 1 3 6 9 12 y -1 -3 -6 -9 -12 x -1 -3 -6 -9 -12 y 1 3 6 9 12

11 Example 7: Watch me as I work one:
Find g(x), the inverse of the function.

12 Example 8: Find the inverse of a function
Consider the function Find the inverse. Switch x and y and solve for y!

13 Example 9: Find g(x), the inverse of the function.

14 Example 10: Find the inverse of the function:
Switch x and y and solve for y! Is there any value that we can’t use for x?

15 11. Which of the following is the inverse of ?
a. b c. d.

16 How do you read the symbol ?
In summary… How do you read the symbol ? “f inverse” How do you verify that 2 functions are inverses of one another? Use compositions to show that f(g(x)) = x and g(f(x)) = x.

17 Homework: 4.3 Practice Worksheet (#1-8, 12-17)


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