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Packet #10 Rational Functions
Math 160 Packet #10 Rational Functions
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A rational function is a polynomial over a polynomial (that is π π₯ π π₯ ). Here are some examples:
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Most of the time, rational functions have vertical asymptotes and a horizontal asymptote. An asymptote is basically a line/curve to which the graph of the function gets closer and closer.
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Most of the time, rational functions have vertical asymptotes and a horizontal asymptote. An asymptote is basically a line/curve to which the graph of the function gets closer and closer.
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Visually, here are the four types of vertical asymptotes:
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When π₯β π β , π¦ββ
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When π₯β π + , π¦ββ
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When π₯β π β , π¦βββ
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When π₯β π + , π¦βββ
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Note: π₯β π β means βπ₯ approaches π from the leftβ π₯β π + means βπ₯ approaches π from the rightβ
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For rational functions, vertical asymptotes happen where the denominator is zero.
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Ex 1. Find the vertical asymptotes of the following functions
Ex 1. Find the vertical asymptotes of the following functions. For each vertical asymptote, determine happens to π¦ as π₯ approaches from the left and from the right (that is, does π¦ββ or π¦βββ?). π π₯ = π₯β1 π₯+2 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2
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Here are the two types of horizontal asymptotes:
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When π₯ββ, π¦βπ
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When π₯βββ, π¦βπ
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What is the horizontal asymptote (if any) of π π₯ π π₯
What is the horizontal asymptote (if any) of π π₯ π π₯ ? If deg(P) < deg (Q), then horizontal asymptote π¦=0. If deg(P) = deg(Q), then horizontal asymptote π¦= leading coefficient of π leading coefficient of π . If deg(P) > deg(Q), then no horizontal asymptotes.
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What is the horizontal asymptote (if any) of π π₯ π π₯
What is the horizontal asymptote (if any) of π π₯ π π₯ ? If deg(P) < deg (Q), then horizontal asymptote π¦=0. If deg(P) = deg(Q), then horizontal asymptote π¦= leading coefficient of π leading coefficient of π . If deg(P) > deg(Q), then no horizontal asymptotes.
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What is the horizontal asymptote (if any) of π π₯ π π₯
What is the horizontal asymptote (if any) of π π₯ π π₯ ? If deg(P) < deg (Q), then horizontal asymptote π¦=0. If deg(P) = deg(Q), then horizontal asymptote π¦= leading coefficient of π leading coefficient of π . If deg(P) > deg(Q), then no horizontal asymptotes.
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What is the horizontal asymptote (if any) of π π₯ π π₯
What is the horizontal asymptote (if any) of π π₯ π π₯ ? If deg(P) < deg (Q), then horizontal asymptote π¦=0. If deg(P) = deg(Q), then horizontal asymptote π¦= leading coefficient of π leading coefficient of π . If deg(P) > deg(Q), then no horizontal asymptotes.
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Ex 2. Find the horizontal asymptotes (if any) of the following functions. π π₯ = 8π₯+5 5 π₯ 2 β3π₯+1 π π₯ = 3 π₯ 2 β2π₯β1 2 π₯ 2 +3π₯β2 β π₯ = 6 π₯ 3 β π₯ π₯ 2 +4π₯β7
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Graphing Rational Functions 1. Factor numerator and denominator. 2
Graphing Rational Functions 1. Factor numerator and denominator. 2. Find π-intercepts and π-intercept. 3. Find vertical asymptotes (where denominator is 0). 4. Find horizontal asymptotes. 5. Graph (plot additional points as needed).
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Graphing Rational Functions 1. Factor numerator and denominator. 2
Graphing Rational Functions 1. Factor numerator and denominator. 2. Find π-intercepts and π-intercept. 3. Find vertical asymptotes (where denominator is 0). 4. Find horizontal asymptotes. 5. Graph (plot additional points as needed).
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Graphing Rational Functions 1. Factor numerator and denominator. 2
Graphing Rational Functions 1. Factor numerator and denominator. 2. Find π-intercepts and π-intercept. 3. Find vertical asymptotes (where denominator is 0). 4. Find horizontal asymptotes. 5. Graph (plot additional points as needed).
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Graphing Rational Functions 1. Factor numerator and denominator. 2
Graphing Rational Functions 1. Factor numerator and denominator. 2. Find π-intercepts and π-intercept. 3. Find vertical asymptotes (where denominator is 0). 4. Find horizontal asymptotes. 5. Graph (plot additional points as needed).
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Graphing Rational Functions 1. Factor numerator and denominator. 2
Graphing Rational Functions 1. Factor numerator and denominator. 2. Find π-intercepts and π-intercept. 3. Find vertical asymptotes (where denominator is 0). 4. Find horizontal or slant asymptotes (if any). 5. Graph (plot additional points as needed).
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Graphing Rational Functions 1. Factor numerator and denominator. 2
Graphing Rational Functions 1. Factor numerator and denominator. 2. Find π-intercepts and π-intercept. 3. Find vertical asymptotes (where denominator is 0). 4. Find horizontal or slant asymptotes (if any). 5. Graph (plot additional points as needed).
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 3. Graph π π₯ = 2 π₯ 2 +7π₯β4 π₯ 2 +π₯β2
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Ex 4. Graph π π₯ = π₯β3 π₯ 2 +4π₯+4
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Sometimes rational functions have slant asymptotes (also called oblique asymptotes), which are neither vertical nor horizontal.
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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Ex 5. Graph β π₯ = π₯ 2 β4π₯β5 π₯β3
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