ormation to answer the next question. The graph y = f(x) has undergone one reflection and one translation in order to obtain the graph of y = g(x), shown below: y = f(x) y = g(x) 10 -10937 16 se the code below to describe the transformations that will map the graph of y = f(x) onto the graph of = g(x): B *

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.1: Inverse Functions
Problem 56E
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Use the following information to answer the next question.
The graph y = f(x) has undergone one reflection and one translation in order to obtain the graph of
y = g(x), shown below:
y = f(x)
y = g(x)
+
10-
E/
Use the code below to describe the transformations that will map the graph of y = f(x) onto the graph of
y = g(x):
1- Reflection about the y-axis
2- Reflection about the x-axis
3- Horizontal translation to the right
4- Horizontal translation to the left
5- Vertical translation downwards
6- Vertical translation upwards
5. In the first box record the number that describes the first transformation. In the second box record the
number that describes the type of the second transformation.
Transcribed Image Text:Use the following information to answer the next question. The graph y = f(x) has undergone one reflection and one translation in order to obtain the graph of y = g(x), shown below: y = f(x) y = g(x) + 10- E/ Use the code below to describe the transformations that will map the graph of y = f(x) onto the graph of y = g(x): 1- Reflection about the y-axis 2- Reflection about the x-axis 3- Horizontal translation to the right 4- Horizontal translation to the left 5- Vertical translation downwards 6- Vertical translation upwards 5. In the first box record the number that describes the first transformation. In the second box record the number that describes the type of the second transformation.
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