Use the Intermediate Value Theorem to show that the given function has a zero in the interval 0, 3. f (x) = x2 +4x- 4 f (x) Click for List on the interval (0, 3]. f (0): Number f (3) =Number By the Intermediate Value Theorem, there is a value c in [0, 3] such that f (c) = 0, since f (0) O and f (3) 0. Click for List Click for List

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 52E
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Use the Intermediate Value Theorem to show that the given function has a zero in the interval 0, 3.
f (x) = a2 +4x – 4
f (x) Click for List
on the interval [0, 3|].
f (0) =
Number
f (3) =
Number
By the Intermediate Value Theorem, there is a value c in 0, 3] such thatƒ (c) = 0, since
f (0)
0 and f (3)
Click for List
Click for List
0.
Transcribed Image Text:Use the Intermediate Value Theorem to show that the given function has a zero in the interval 0, 3. f (x) = a2 +4x – 4 f (x) Click for List on the interval [0, 3|]. f (0) = Number f (3) = Number By the Intermediate Value Theorem, there is a value c in 0, 3] such thatƒ (c) = 0, since f (0) 0 and f (3) Click for List Click for List 0.
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