Housing trends. The 2000 census reported that 41.9 % of the households in the District of Columbia were homeowners and the remainder were renters. During the next decade, 15.3 % of homeowners became renters, and the rest continued to be homeowners. Similarly. 17.4 % of renters became homeowners, and the rest continued to rent. (A) Write the appropriate transition matrix. (B) According to this transition matrix, what percentage of households were homeowners in 2010 ? (C) If the transition matrix remains the same, what percentage of households will be homeowners in 2030 ?
Housing trends. The 2000 census reported that 41.9 % of the households in the District of Columbia were homeowners and the remainder were renters. During the next decade, 15.3 % of homeowners became renters, and the rest continued to be homeowners. Similarly. 17.4 % of renters became homeowners, and the rest continued to rent. (A) Write the appropriate transition matrix. (B) According to this transition matrix, what percentage of households were homeowners in 2010 ? (C) If the transition matrix remains the same, what percentage of households will be homeowners in 2030 ?
Solution Summary: The author calculates the transition matrix P when in 2000, 41.9% of the households in District of Columbia were households with homeowners and the rest were renters.
Housing trends. The
2000
census reported that
41.9
%
of the households in the District of Columbia were homeowners and the remainder were renters. During the next decade,
15.3
%
of homeowners became renters, and the rest continued to be homeowners. Similarly.
17.4
%
of renters became homeowners, and the rest continued to rent.
(A) Write the appropriate transition matrix.
(B) According to this transition matrix, what percentage of households were homeowners in
2010
?
(C) If the transition matrix remains the same, what percentage of households will be homeowners in
2030
?
Use a graph of f to estimate lim f(x) or to show that the limit does not exist. Evaluate f(x) near x = a to support your conjecture. Complete parts (a) and (b).
x-a
f(x)=
1 - cos (4x-4)
3(x-1)²
; a = 1
a. Use a graphing utility to graph f. Select the correct graph below..
A.
W
→
✓
Each graph is displayed in a [- 1,3] by [0,5] window.
B.
in
✓
○ C.
und
☑
Use the graphing utility to estimate lim f(x). Select the correct choice below and, if necessary, fill in the answer box to complete your choice.
x-1
○ A. The limit appears to be approximately ☐ .
(Round to the nearest tenth as needed.)
B. The limit does not exist.
b. Evaluate f(x) for values of x near 1 to support your conjecture.
X
0.9
0.99
0.999
1.001
1.01
1.1
f(x)
○ D.
+
☑
(Round to six decimal places as needed.)
Does the table from the previous step support your conjecture?
A. No, it does not. The function f(x) approaches a different value in the table of values than in the graph, after the approached values are rounded to the…
x²-19x+90
Let f(x) =
.
Complete parts (a) through (c) below.
x-a
a. For what values of a, if any, does lim f(x) equal a finite number? Select the correct choice below and, if necessary, fill in the answer box to complete your choice.
x→a+
○ A.
a=
(Type an integer or a simplified fraction. Use a comma to separate answers as needed.)
B. There are no values of a for which the limit equals a finite number.
b. For what values of a, if any, does lim f(x) = ∞o? Select the correct choice below and, if necessary, fill in the answer boxes to complete your choice.
x→a+
A.
(Type integers or simplified fractions)
C. There are no values of a that satisfy lim f(x) = ∞.
+
x-a
c. For what values of a, if any, does lim f(x) = -∞0? Select the correct choice below and, if necessary, fill in the answer boxes to complete your choice.
x→a+
A. Either a
(Type integers or simplified fractions)
B.
Sketch a possible graph of a function f, together with vertical asymptotes, that satisfies all of the following conditions.
f(2)=0
f(4) is undefined
lim f(x)=1
X-6
lim f(x) = -∞
x-0+
lim f(x) = ∞
lim f(x) = ∞
x-4
_8
Chapter 9 Solutions
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University Calculus: Early Transcendentals (4th Edition)
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