Consider the function f(x) = Question 1 D Videos: Q1 p= a. The equation of the horizontal asymptote for this function is Question 2 In the function formula f(x) = q= b. The equation of the vertical asymptote for this function is and a = So that f(x) Videos: Q2 a x-p = Videos: 03 + q where D is the a intercept:( - 4,0) a Q x-p Question 3 Give the coordinates of the y-intercept: +q

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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Consider the function \( f(x) = \frac{a}{x-p} + q \) where \( D \) is the \( x \)-intercept: \( (-4, 0) \).

![Graph](file_path_placeholder)

The graph shows a rational function with:

- A vertical asymptote (dashed red line) passing through \( x = -2 \).
- A horizontal asymptote (dashed red line) at \( y = 1 \).

**Question 1**

a. The equation of the horizontal asymptote for this function is _______

b. The equation of the vertical asymptote for this function is _______

[Videos: Q1]

---

**Question 2**

In the function formula \( f(x) = \frac{a}{x-p} + q \)

- \( p = \) _______

- \( q = \) _______

- and \( a = \) _______

So that \( f(x) = \) ___________________

[Videos: Q2]

---

**Question 3**

Give the coordinates of the \( y \)-intercept:

( _______ , _______ )

[Videos: Q3]
Transcribed Image Text:Consider the function \( f(x) = \frac{a}{x-p} + q \) where \( D \) is the \( x \)-intercept: \( (-4, 0) \). ![Graph](file_path_placeholder) The graph shows a rational function with: - A vertical asymptote (dashed red line) passing through \( x = -2 \). - A horizontal asymptote (dashed red line) at \( y = 1 \). **Question 1** a. The equation of the horizontal asymptote for this function is _______ b. The equation of the vertical asymptote for this function is _______ [Videos: Q1] --- **Question 2** In the function formula \( f(x) = \frac{a}{x-p} + q \) - \( p = \) _______ - \( q = \) _______ - and \( a = \) _______ So that \( f(x) = \) ___________________ [Videos: Q2] --- **Question 3** Give the coordinates of the \( y \)-intercept: ( _______ , _______ ) [Videos: Q3]
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