Finding a δ for a Given ε In Exercises 41-46, Find the limit L . Then Find δ such that | f ( x ) − L | < ε whenever 0 < | x − c | < δ for (a) ε = 0.01 and (b) ε = 0.005 . lim x → 2 ( 3 x + 2 )
Finding a δ for a Given ε In Exercises 41-46, Find the limit L . Then Find δ such that | f ( x ) − L | < ε whenever 0 < | x − c | < δ for (a) ε = 0.01 and (b) ε = 0.005 . lim x → 2 ( 3 x + 2 )
Solution Summary: The author explains the function undersetxto 2mathrmlim
Finding a
δ
for a Given
ε
In Exercises 41-46, Find the limit L. Then Find
δ
such that
|
f
(
x
)
−
L
|
<
ε
whenever
0
<
|
x
−
c
|
<
δ
for (a)
ε
=
0.01
and (b)
ε
=
0.005
.
Suppose the planet of Tattooine currently has a population of 6500 people and an annual growth rate of
0.35%. Use this information for all the problems below.
1. Find an exponential function f(t) that gives the population of Tattooine t years from now. (3
points)
A house was valued at $95,000 in the year 1988. The value appreciated to $170,000 by the year 2007.
A) If the value is growing exponentially, what was the annual growth rate between 1988 and 2007?
Round the growth rate to 4 decimal places.
r =
B) What is the correct answer to part A written in percentage form?
r = 3
%.
B
G
R
+
K
Match each equation with a graph above
- 3(0.9)*
1
a. green (G)
3(1.5)*
b. black (K)
3(0.73)*
c. blue (B)
d. red (R)
I
✪ 4(1.21)*
- 3(1.21)*
e. orange (O)
Chapter 2 Solutions
Bundle: Calculus: Early Transcendental Functions, Loose-leaf Version, 6th + WebAssign Printed Access Card for Larson/Edwards' Calculus: Early Transcendental Functions, 6th Edition, Multi-Term
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