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Euclid was a Greek mathematician best known for his treatise on geometry: The Elements. This influenced the development of Western mathematics for more.

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Presentation on theme: "Euclid was a Greek mathematician best known for his treatise on geometry: The Elements. This influenced the development of Western mathematics for more."— Presentation transcript:

1 Euclid was a Greek mathematician best known for his treatise on geometry: The Elements. This influenced the development of Western mathematics for more than 2000 years. Euclid was a Greek mathematician best known for his treatise on geometry: The Elements. This influenced the development of Western mathematics for more than 2000 years. Euclid of Alexandria 325 – 265 B.C. Euclid of Alexandria 325 – 265 B.C.

2 So we say, This limit shows that f (x) has a horizontal asymptote at y = 1.

3 We take limits to infinity to analyze end-behavior of functions.

4 Left-Hand Behavior Right-Hand Behavior

5 Example 1

6 Example 2

7 As the denominator gets larger, the value of the fraction gets closer to zero. So by definition, y = 0 is a horizontal asymptote. Recall vertical asymptote at x = 0. horizontal asymptote at y = 0. Example 3

8 Find: x y When we graph this function, the limit appears to be zero. Example 4 (2)

9 Thus, by the Squeeze Theorem: x y Example 4 When we graph this function, the limit appears to be zero. Find:

10 Example 5 Evaluate the following limit

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14 Example 6 Dominating term

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16 Method IMethod II Algebraic Limits

17 Dominating term effect (DTE) we get, dominant terms in numerator and denominator Example 7

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19 Recall: Example

20 Example 8

21 Example 9 Hence, y = 0 is a horizontal asymptote. a.

22 Example 9 There is no left hand behavior because of the domain restriction. So, x = 0 is a vertical asymptote. Hence, there is no horizontal asymptote.

23 Example 9

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25 Example 11 Example 10

26 a. Find the domain of f (x). b. Determine any asymptotes for f (x). Example 12 Example 13 Determine if a steady state exists and give the steady-state value for the function below.


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