t(t + 8) (t + 2)²(t+ 7)" t³ (t + 8)²(t+7)³(t - 6)²′ Given g(t) Round all answers to 3 decimal places as needed. If the answer doesn't exist, type DNE. ,answer the following questions: a) The domain of g in set notation and interval notation is: Set Notation: {tt is a real number and t + Interval Notation: b) The t-intercept(s) are: c) The vertical asymptotes of g are at t Write the answer(s) as just numbers separated by commas.

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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t5 (t + 8) ¹ (t + 2)¹ (t + 7)*
t³ (t + 8)^(t + 7)³ (t-6) ²²
Given g(t) =
Round all answers to 3 decimal places as needed. If the answer doesn't exist, type DNE.
answer the following questions:
a) The domain of g in set notation and interval notation is:
Set Notation: {t | t is a real number and t +
Interval Notation:
b) The t-intercept(s) are:
c) The vertical asymptotes of g are at t
Write the answer(s) as just numbers separated by commas.
d) g has a hole at the ordered pair:
Write each hole as an ordered pair. Do not do any rounding until the final answer.
e) The g(t)-intercept is:
f) The end behavior of g is:
RH: As
LH: As
↑
↑
↑
↑
Horizontal Asymptote:
Write the horizontal asymptote as y = # if it exists. If it doesn't exist, type DNE.
Transcribed Image Text:t5 (t + 8) ¹ (t + 2)¹ (t + 7)* t³ (t + 8)^(t + 7)³ (t-6) ²² Given g(t) = Round all answers to 3 decimal places as needed. If the answer doesn't exist, type DNE. answer the following questions: a) The domain of g in set notation and interval notation is: Set Notation: {t | t is a real number and t + Interval Notation: b) The t-intercept(s) are: c) The vertical asymptotes of g are at t Write the answer(s) as just numbers separated by commas. d) g has a hole at the ordered pair: Write each hole as an ordered pair. Do not do any rounding until the final answer. e) The g(t)-intercept is: f) The end behavior of g is: RH: As LH: As ↑ ↑ ↑ ↑ Horizontal Asymptote: Write the horizontal asymptote as y = # if it exists. If it doesn't exist, type DNE.
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