Use the densities computed in part b to construct a


U.S. Census data for San Luis Obispo County, California, were used to construct the following frequency distribution for commute time (in minutes) of working adults (the given frequencies were read from a graph that appeared in the San Luis Obispo Tribune [September 1, 2002] and so are only approximate):

Time                 Frequency    

0 to 5

5,200

5 to 10

18,200

10 to 15

19,600

15 to 20

15,400

20 to 25

13,800

25 to 30

5,700

30 to 35                10,200

35 to 40                  2,000

40 to 45                  2,000

45 to 60                  4,000

60 to 90                  2,100

90 to 120                2,200

a. Notice that not all intervals in the frequency distribution are equal in width. Why do you think that unequal width intervals were used?

b. Construct a table that adds a relative frequency and a density column to the given frequency distribution (see Example 3.17).

c. Use the densities computed in Part (b) to construct a histogram for this data set. (Note: The newspaper displayed an incorrectly drawn histogram based on frequencies rather than densities!) Write a few sentences commenting on the important features of the histogram.

d. Compute the cumulative relative frequencies, and construct a cumulative relative frequency plot.

e. Use the cumulative relative frequency plot constructed in Part (d) to answer the following questions.

i. Approximately what proportion of commute times were less than 50 minutes?

ii. Approximately what proportion of commute times were greater than 22 minutes?

iii. What is the approximate commute time value that separates the shortest 50% of commute times from the longest 50%?

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Microeconomics: Use the densities computed in part b to construct a
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