Profile of a sustainable farmer. Sustainable development or sustainable farming means finding ways to live and workthe Earth without jeopardizing the future. Studies wereconducted in five Midwestern states to develop a profileof a sustainable farmer. The results revealed that farmerscan be classified along a sustainability scale, dependingon whether they are likely (L) or unlikely (U) to engagein the following practices: (1) raise a broad mix of crops;(2) raise livestock; (3) use chemicals sparingly; and (4) usetechniques for regenerating the soil, such as crop rotation.

  1. List the different sets of classifications that are possible for the four practices (e.g., LUUL).
  2. Suppose you plan to interview farmers across the country to determine the frequency with which they fall into the classification sets you listed for part a. Because no information is yet available, assume initially that there is an equal chance of a farmer falling into any single classification set. Using that assumption, what is the probability that a farmer will be classified as unlikely on all four criteria (i.e., classified as a non-sustainable farmer)?
  3. Using the same assumption as in part b, what is the probability that a farmer will be classified as likely on at least three of the criteria (i.e., classified as a near sustainable farmer)?

Short Answer

Expert verified
  1. The samples are LLLL, LLLU, LLUL, LULL, ULLL, LLUU, LULU, LUUL, ULLU, ULUL, UULL, LUUU, ULUU, UULU, UUUL, UUUU
  2. The probability of unlikely on all four criteria is 116.
  3. The probability is likely on at least three of the criteria.

Step by step solution

01

Important formula

The formula for probability is P=FavourableoutcomesTotaloutcomes

02

(a) List the different sets of classifications that are possible for the four practices

L = likely

U = unlikely

The different sets of classifications are:

LLLL, LLLU, LLUL, LULL, ULLL, LLUU, LULU, LUUL, ULLU, ULUL, UULL, LUUU, ULUU, UULU, UUUL, UUUU.

So, the total events are 16.

03

(b) Find the probability that a farmer will be classified as unlikely on all four criteria

The sample as unlikely on all four criteria is UUUU.

P(UUUU)=116.

Hence, the probability of unlikely on all four criteria is 116.

04

(c) Determine the probability that a farmer will be classified as likely on at least three of the criteria

The sample is likely based on at least three criteria: LLLL, LLLU, ULLL, LLUL, and LULL.

So,P(UUUU)=516 .

Therefore, the probability is likely on at least three of the criteria.

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Most popular questions from this chapter

Stock market participation and IQ.Refer to The Journal of Finance(December 2011) study of whether the decisionto invest in the stock market is dependent on IQ, Exercise3.46 (p. 182). The summary table giving the number ofthe 158,044 Finnish citizens in each IQ score/investment category is reproduced below. Again, suppose one of the citizens is selected at random.

IQ Score

Invest in Market

No Investment

Totals

1

2

3

4

5

6

7

8

9

893

1,340

2,009

5,358

8,484

10,270

6,698

5,135

4,464

4,659

9,409

9,993

19,682

24,640

21,673

11,260

7,010

5,067

5,552

10,749

12,002

25,040

33,124

31,943

17,958

12,145

9,531

Totals

44,651

113,393

158,044

Source:Based on M. Grinblatt, M. Keloharju, and J. Linnainaa, “IQ and Stock Market Participation,” The Journal of Finance, Vol. 66, No. 6, December 2011 (data from Table 1 and Figure 1).

a.Given that the Finnish citizen has an IQ score of 6 or higher, what is the probability that he/she invests in the stock market?

b.Given that the Finnish citizen has an IQ score of 5 or lower, what is the probability that he/she invests in the stock market?

c.Based on the results, parts a and b, does it appear that investing in the stock market is dependent on IQ? Explain.

Cell phone handoff behaviour. A “handoff” is a term used in wireless communications to describe the process of a cell phone moving from the coverage area of one base station to that of another. Each base station has multiple channels (called color codes) that allow it to communicate with the cell phone. The Journal of Engineering, Computing and Architecture (Vol. 3., 2009) published a cell phone handoff behavior study. During a sample driving trip that involved crossing from one base station to another, the different color codes accessed by the cell phone were monitored and recorded. The table below shows the number of times each color code was accessed for two identical driving trips, each using a different cell phone model. (Note: The table is similar to the one published in the article.) Suppose you randomly select one point during the combined driving trips.

Color code

0

5

b

c

Total

Model 1

20

35

40

0

85

Model 2

15

50

6

4

75

Total

35

85

46

4

160

a. What is the probability that the cell phone was using color code 5?

b. What is the probability that the cell phone was using color code 5 or color code 0?

c. What is the probability that the cell phone used was Model 2 and the color code was 0?

Working on summer vacation.Refer to the Harris Interactive(July 2013) poll of whether U.S. adults workduring summer vacation, Exercise 3.13 (p. 169). Recall thatthe poll found that 61% of the respondents work duringtheir summer vacation, 22% do not work at all while onvacation, and 17% were unemployed. Also, 38% of thosewho work while on vacation do so by monitoring theirbusiness emails.

a.Given that a randomly selected poll respondent will work while on summer vacation, what is the probability that the respondent will monitor business emails?

b.What is the probability that a randomly selected poll respondent will work while on summer vacation and will monitor business emails?

c.What is the probability that a randomly selected poll respondent will not work while on summer vacation and will monitor business emails?

Jamming attacks on wireless networks. Refer to the International Journal of Production Economics (Vol. 172, 2016) study of U.S. military jamming attacks on wireless networks used by terrorists, Exercise 2.8 (p. 73). Recall that 80 recent jamming attacks were classified according to network type (WLAN, WSN, or AHN) attacked and the network's number of channels (single- or multi-channel). The results are reproduced in the accompanying table.

a. Find the probability that a recent jamming attack involved a single-channel network.

b. Find the probability that a recent jamming attack involved a WLAN network.


Network Type/Number of Channels

Number of Jamming Attacks

WLAN / Single

31

WSN / Single

13

AHN / Single

8

WLAN / Multi

14

WSN / Multi

9

AHN / Multi

5

TOTAL

80

Source: S. Vadlamani et al., "Jamming Attacks on Wireless Networks: A Taxonomic Survey, "International Journal of Production Economics, Vol. 172, 2016 (Figure 6)

An experiment results in one of three mutually exclusive events, A, B, or C. It is known that P (A)= .30, P(B)= .55 , and P(C)= .15. Find each of the following probabilities:

a. P(AB)

b.P(AC)

c. P (A/B)

d. P(BC)

e. Are B and C independent events? Explain.

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