Rapid transit. A new rapid transit system has just started operating. In the first month of operation, it is found that 25 % of commuters are using the system, while 75 % still travel by car. The following transition matrix was determined from records of other rapid transit systems: Next month R a p i d t r a n s i t C a r Current month R a p i d t r a n s i t C a r .8 .2 .3 .7 (A) What is the initial-state matrix? (B) What percentage of commuters will be using the new system after 1 month? After 2 months? (C) Find the percentage of commuters using each type of transportation after the new system has been in service for a long time.
Rapid transit. A new rapid transit system has just started operating. In the first month of operation, it is found that 25 % of commuters are using the system, while 75 % still travel by car. The following transition matrix was determined from records of other rapid transit systems: Next month R a p i d t r a n s i t C a r Current month R a p i d t r a n s i t C a r .8 .2 .3 .7 (A) What is the initial-state matrix? (B) What percentage of commuters will be using the new system after 1 month? After 2 months? (C) Find the percentage of commuters using each type of transportation after the new system has been in service for a long time.
Solution Summary: The author explains the initial-state matrix, where 25% of commuters are using the rapid transit system, and 75% are not using it.
Rapid transit. A new rapid transit system has just started operating. In the first month of operation, it is found that
25
%
of commuters are using the system, while
75
%
still travel by car. The following transition matrix was determined from records of other rapid transit systems:
Next month
R
a
p
i
d
t
r
a
n
s
i
t
C
a
r
Current
month
R
a
p
i
d
t
r
a
n
s
i
t
C
a
r
.8
.2
.3
.7
(A) What is the initial-state matrix?
(B) What percentage of commuters will be using the new system after
1
month? After
2
months?
(C) Find the percentage of commuters using each type of transportation after the new system has been in service for a long time.
Consider the following data and corresponding weights.
xi
Weight(wi)
3.2
6
2.0
3
2.5
2
5.0
8
a. Compute the weighted mean (to 2 decimals).
b. Compute the sample mean of the four data values without weighting. Note the difference in the results provided by the two computations (to 3 decimals).
Expert only,if you don't know it don't attempt it, no Artificial intelligence or screen shot it solving
Find the general solution of the given differential equation.
(1+x)dy/dx - xy = x +x2
Chapter 9 Solutions
Finite Mathematics for Business, Economics, Life Sciences, and Social Sciences (13th Edition)
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