Show that the line y=x+ 1 is an oblique asymptote for the graph of y = f(x), summarize all pertinent information obtained by applying the graphing strategy, and sketch the graph of y = f(x) 1. ((x)=x+ 1+ V In the limit, V becomes negligibly small, and ignoring this term results in the equation which implies that y =x+ 1 is an To show that y =x+ 1 is an oblique asymplote for the given function, take the limit of f(x) as x approaches oblique asymptote for the given function. (Type an equation using x as the variable Simplify your answer.) Find the domain of ((x) Select the correct choice below and, if necessary, fill in the answer box to complete your choice O A. The domain is all real x, except x= (Type an integer or a decimal. Use a comma to separate answers as needed.) O B. The domain is all real x Find the x-intercepts of f(x) Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. The x-intercept(s) islare at x= (Type an integer or a decimal. Use a comma to separate answers as needed.) O B. There are no x-intercepts Find the y-intercepts of 1(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice O A. The y-intercept(s) is/are at y= (Type an integer or a decimal. Use a comma to separate answers needed.) OB. There are no y-intercepts Find any horizontal asymptotes of f(x) Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice.

Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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Show that the line y = x + 1 is an oblique asymptote for the graph of y = f(x), summarize all pertinent information obtained by applying the graphing strategy, and sketch the graph of y = f(x).
f(x) = x+ 1+ -
重 :
which implies that y=x+ 1 is an
In the limit,
becomes negligibly small, and ignoring this term results in the equation
To show that y =x+ 1 is an oblique asymptote for the given function, take the limit of f(x) as x approaches
oblique asymptote for the given function.
(Type an equation using x as the variable. Simplify your answer.)
Find the domain of f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice.
O A. The domain is all real x, except x =
(Type an integer or a decimal. Use a comma to separate answers as needed.)
O B. The domain is all real x.
Find the x-intercepts of f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice.
O A. The x-intercept(s) is/are at x =
(Type an integer or a decimal. Use a comma to separate answers as needed.)
B. There are no x-intercepts.
Find the y-intercepts of f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice.
O A. The y-intercept(s) is/are at y =
(Type an integer or a decimal. Use a comma to separate answers as needed.)
B. There are no y-intercepts.
Find any horizontal asymptotes of f(x). Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice.
Transcribed Image Text:Show that the line y = x + 1 is an oblique asymptote for the graph of y = f(x), summarize all pertinent information obtained by applying the graphing strategy, and sketch the graph of y = f(x). f(x) = x+ 1+ - 重 : which implies that y=x+ 1 is an In the limit, becomes negligibly small, and ignoring this term results in the equation To show that y =x+ 1 is an oblique asymptote for the given function, take the limit of f(x) as x approaches oblique asymptote for the given function. (Type an equation using x as the variable. Simplify your answer.) Find the domain of f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. The domain is all real x, except x = (Type an integer or a decimal. Use a comma to separate answers as needed.) O B. The domain is all real x. Find the x-intercepts of f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. The x-intercept(s) is/are at x = (Type an integer or a decimal. Use a comma to separate answers as needed.) B. There are no x-intercepts. Find the y-intercepts of f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. The y-intercept(s) is/are at y = (Type an integer or a decimal. Use a comma to separate answers as needed.) B. There are no y-intercepts. Find any horizontal asymptotes of f(x). Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice.
Show that the line y=x+ 1 is an oblique asymptote for the graph of y= f(x), summarize all pertinent information obtained by applyıng the graphing strategy, and sketch the graph of y= f(x).
f(x) = x + 1 +-
Find any horizontal asymptotes of f(x). Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice.
O A. The function has one horizontal asymptote,
(Type an equation.)
and the bottom asymptote is
O B. The function has two horizontal asymptotes. The top asymptote is
(Type equations.)
O C. There are no horizontal asymptotes.
Find any vertical asymptotes of f(x). Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice.
O A. The function has one vertical asymptote,
(Type an equation.)
O B. The function has two vertical asymptotes. The leftmost asymptote is
and the rightmost asymptote is
(Type equations.)
O C. There are no vertical asymptotes.
Find the intervals where f(x) is increasing or decreasing. Select the correct choice below and fill in the answer box(es) to complete your choice.
O A. The function is increasing on
It is never decreasing.
(Type an exact answer. Type your answer in interval notation. Use a comma to separate answers as needed.)
O B. The function is increasing on
It is decreasing on
(Type exact answers. Type your answers in interval notation. Use commas to separate answers as needed.)
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Transcribed Image Text:Show that the line y=x+ 1 is an oblique asymptote for the graph of y= f(x), summarize all pertinent information obtained by applyıng the graphing strategy, and sketch the graph of y= f(x). f(x) = x + 1 +- Find any horizontal asymptotes of f(x). Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice. O A. The function has one horizontal asymptote, (Type an equation.) and the bottom asymptote is O B. The function has two horizontal asymptotes. The top asymptote is (Type equations.) O C. There are no horizontal asymptotes. Find any vertical asymptotes of f(x). Select the correct choice below and, if necessary, fill in the answer box(es) to complete your choice. O A. The function has one vertical asymptote, (Type an equation.) O B. The function has two vertical asymptotes. The leftmost asymptote is and the rightmost asymptote is (Type equations.) O C. There are no vertical asymptotes. Find the intervals where f(x) is increasing or decreasing. Select the correct choice below and fill in the answer box(es) to complete your choice. O A. The function is increasing on It is never decreasing. (Type an exact answer. Type your answer in interval notation. Use a comma to separate answers as needed.) O B. The function is increasing on It is decreasing on (Type exact answers. Type your answers in interval notation. Use commas to separate answers as needed.) 13% LCO IType here to search PrtSc Insert Delete F10 F11 F12 C F5 F8 F9 F6 F7 F4 Esc F2 F3 F1 & Backspace C@ %23 %3D 5 7 080 CO
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