(d) Consider the set [1, √5] C [−1, √10]. Explain f is not continuous by connectedness, compactness, the Intermediate Value Theorem.

College Algebra
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Chapter3: Functions
Section3.3: Rates Of Change And Behavior Of Graphs
Problem 2SE: If a functionfis increasing on (a,b) and decreasing on (b,c) , then what can be said about the local...
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Consider the function f : [-1, √10] → R defined by
-G
I,
f(x)
10
8
6
4
2
compactness,
0
f(x) =
0
[x², x > 2;
x ≤ 2.
1
x
Answer each of the following questions on the discontinuity of f.
Compute and compare lim 2+ f(x) and lim-2- f(x).
2
By using the ed definition, explain why lime-2 f(x) does not exist.
2
3
Consider the set (0,5). Find the preimage f-¹((0,5)) and use the topological
characterization of continuous functions.
the Intermediate Value Theorem.
(d) Consider the set [1, √5] C [-1, √10]. Explain f is not continuous by
connectedness,
Transcribed Image Text:Consider the function f : [-1, √10] → R defined by -G I, f(x) 10 8 6 4 2 compactness, 0 f(x) = 0 [x², x > 2; x ≤ 2. 1 x Answer each of the following questions on the discontinuity of f. Compute and compare lim 2+ f(x) and lim-2- f(x). 2 By using the ed definition, explain why lime-2 f(x) does not exist. 2 3 Consider the set (0,5). Find the preimage f-¹((0,5)) and use the topological characterization of continuous functions. the Intermediate Value Theorem. (d) Consider the set [1, √5] C [-1, √10]. Explain f is not continuous by connectedness,
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