Analyze the polynomial function f(x) = (x + 6)²(1 – x) using parts (a) through (e). (a) Determine the end behavior of the graph of the function. The graph of f behaves like y = for large values of |x|. (b) Find the x- and y-intercepts of the graph of the function. The x-intercept(s) is/are. (Simplify your answer. Type an integer or a fraction. Use a comma to separate answers as needed. Type each answer only once.) The y-intercept is. (Simplify your answer. Type an integer or a fraction.) (c) Determine the zeros of the function and their multiplicity. Use this information to determine whether the graph crosses or touches the x-axis at each x-intercept. The zero(s) of f is/are. (Simplify your answer. Type an integer or a fraction. Use a comma to separate answers as needed. Type each answer only once.) The lesser zero of the function is of multiplicity. so the graph of f V the x-axis at x= The greater zero of the function of multiplicity. so the graph of f V the x-axis at x=

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Chapter4: Polynomial And Rational Functions
Section4.2: Polynomial Functions
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Analyze the polynomial function f(x) = (x + 6)ʻ(1 – x) using parts (a) through (e).
(a) Determine the end behavior of the graph of the function.
The graph of f behaves like y = for large values of x.
(b) Find the x- and y-intercepts of the graph of the function.
The x-intercept(s) is/are
(Simplify your answer. Type an integer or a fraction. Use a comma to separate answers as needed. Type each answer only once.)
The y-intercept is
(Simplify your answer. Type an integer or a fraction.)
(c) Determine the zeros of the function and their multiplicity. Use this information to determine whether the graph crosses or touches the x-axis at each x-intercept.
The zero(s) of f is/are.
(Simplify your answer. Type an integer or a fraction. Use a comma to separate answers as needed. Type each answer only once.)
The lesser zero of the function is of multiplicity
so the graph of f
the x-axis at x =
The greater zero of the function is of multiplicity
so the graph of f
the x-axis at x =
(d) Determine the maximum number of turning points on the graph of the function.
|(Type a whole number.)
Transcribed Image Text:Analyze the polynomial function f(x) = (x + 6)ʻ(1 – x) using parts (a) through (e). (a) Determine the end behavior of the graph of the function. The graph of f behaves like y = for large values of x. (b) Find the x- and y-intercepts of the graph of the function. The x-intercept(s) is/are (Simplify your answer. Type an integer or a fraction. Use a comma to separate answers as needed. Type each answer only once.) The y-intercept is (Simplify your answer. Type an integer or a fraction.) (c) Determine the zeros of the function and their multiplicity. Use this information to determine whether the graph crosses or touches the x-axis at each x-intercept. The zero(s) of f is/are. (Simplify your answer. Type an integer or a fraction. Use a comma to separate answers as needed. Type each answer only once.) The lesser zero of the function is of multiplicity so the graph of f the x-axis at x = The greater zero of the function is of multiplicity so the graph of f the x-axis at x = (d) Determine the maximum number of turning points on the graph of the function. |(Type a whole number.)
(d) Determine the maximum number of turning points on the graph of the function.
(Type a whole number.)
(e) Use the above information to draw a complete graph of the function. Choose the correct graph below.
O A.
В.
О с.
O D.
Ay
100–
Ay
100
Ay
100-
100-
X
-20
20
-20
20
-20
20
-20
20
-100-
-100–
-100-
-160-
Transcribed Image Text:(d) Determine the maximum number of turning points on the graph of the function. (Type a whole number.) (e) Use the above information to draw a complete graph of the function. Choose the correct graph below. O A. В. О с. O D. Ay 100– Ay 100 Ay 100- 100- X -20 20 -20 20 -20 20 -20 20 -100- -100– -100- -160-
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