Sketch the graph of the given function. Check your sketch using technology. f(x) = x2 + 2x + 1 (a) Indicate the x- and y-intercepts. (If an answer does not exist, enter DNE.) x-intercept (X, y) = y-intercept (x, y) = (b) Indicate any extrema. (If an answer does not exist, enter DNE.) ---Select-- v (x, y) = (c) Indicate any points of inflection. (If an answer does not exist, enter DNE.) (x, y) =| (d) Indicate the behavior near singular points of f. O y → +o as x → 0 O y 0 as x → -1 O y → +o as x→ -1 y +o as x → 1 O The function is defined everywhere on the domain. (e) Indicate the behavior at infinity.

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter5: Inverse, Exponential, And Logarithmic Functions
Section5.3: The Natural Exponential Function
Problem 44E
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Sketch the graph of the given function. Check your sketch using technology. f(x)=x^2+2x+1 Indicate the X and Y intercepts. (If the answer does not exist, enter DNE) (b) Indicate any extrema. (If the answer doesn’t exist enter DNE.) (c) Indicate any points of inflection. (If the answer does not exist, enter DNE) Indicate the behavior near singular points of F. Indicate the behavior at infinity.
Sketch the graph of the given function. Check your sketch using technology.
f(x) = x2 + 2x + 1
(a) Indicate the x- and y-intercepts. (If an answer does not exist, enter DNE.)
x-intercept
(X, y) =
y-intercept
(X, y) =
(b) Indicate any extrema. (If an answer does not exist, enter DNE.)
---Select-- v
(x, y) =
(c) Indicate any points of inflection. (If an answer does not exist, enter DNE.)
(х, у) 3D
(d) Indicate the behavior near singular points of f.
O y → +o as x → 0
Oy → 0 as x → -1
O y → +o as x → -1
O y → +o as x → 1
O The function is defined everywhere on the domain.
(e) Indicate the behavior at infinity.
Transcribed Image Text:Sketch the graph of the given function. Check your sketch using technology. f(x) = x2 + 2x + 1 (a) Indicate the x- and y-intercepts. (If an answer does not exist, enter DNE.) x-intercept (X, y) = y-intercept (X, y) = (b) Indicate any extrema. (If an answer does not exist, enter DNE.) ---Select-- v (x, y) = (c) Indicate any points of inflection. (If an answer does not exist, enter DNE.) (х, у) 3D (d) Indicate the behavior near singular points of f. O y → +o as x → 0 Oy → 0 as x → -1 O y → +o as x → -1 O y → +o as x → 1 O The function is defined everywhere on the domain. (e) Indicate the behavior at infinity.
(d) Indicate the behavior near singular points of f.
O y +o as x 0
O y 0 as x → -1
O y +o as x -1
Oy +o as x 1
O The function is defined everywhere on the domain.
(e) Indicate the behavior at infinity.
Oy 0 as x → -00; y +o as x →
+oo
O y → -o as x → to
Oy→ +0 as x → -o; y → -00 as x →
+oo
O y → +o as x → to
Oy → -1 as x → to
Transcribed Image Text:(d) Indicate the behavior near singular points of f. O y +o as x 0 O y 0 as x → -1 O y +o as x -1 Oy +o as x 1 O The function is defined everywhere on the domain. (e) Indicate the behavior at infinity. Oy 0 as x → -00; y +o as x → +oo O y → -o as x → to Oy→ +0 as x → -o; y → -00 as x → +oo O y → +o as x → to Oy → -1 as x → to
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ISBN:
9781133382119
Author:
Swokowski
Publisher:
Cengage