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Motivation of drug dealers.Consider a study of drug dealers and their motivation for participating in the illegal drug market (Applied Psychology in Criminal Justice, September 2009). The sample consisted of 100 convicted drug dealers who attended a court-mandated counseling program. Each dealer was scored on the Wanting Recognition (WR) Scale, which provides a quantitative measure of a person’s level of need for approval and sensitivity to social situations. (Higher scores indicate a greater need for approval.) The sample of drug dealers had a mean WR score of 39, with a standard deviation of 6. Assume the distribution of WR scores for drug dealers is mound-shaped and symmetric.

a.Give a range of WR scores that will contain about 95% of the scores in the drug dealer sample.

b.What proportion of the drug dealers had WR scores above 51?

c.Give a range of WR sores that contain nearly all the scores in the drug dealer sample.

Short Answer

Expert verified

(a) 27 to 51

(b) 2.5%

(c) 21 to 57

Step by step solution

01

Identifying the range where approx. 95% of WR scores will fall

Mean = 39

Standard Deviation = 6

As the data is assumed to be mound-shaped, we will use the Empirical rule.

We know that, 95% measurements fall between 2 standard deviations from mean.

The range will be,

x¯±2sUpperrange=x¯+2s=39+2(6)=39+12=51Lowerrange=x¯-2s=39-2(6)=39-12=27

Therefore, 95% of the WR scores fall between 27 and 51.

02

Computing the proportion of scores above 51.

We know that 95% of scores fall between 27 and 51. This only leaves 5% of scores on either sides of the distribution. As the curve is bell shaped and divided by the mean, 2.5% scores will be below 27 and 2.5% scores will be above 51.

03

Finding the range of scores that contains almost all the scores.

According to the Empirical rule, 99.7% scores should fall between 3 standard deviation and the mean.

x¯±3sUpperrange=x¯+3s=39+3(6)=39+18=57Lowerrange=x¯-2s=39-3(6)=39-18=21

Therefore, 57-21 is the range where almost all the WR scores will fall.

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Most popular questions from this chapter

Compare the z-scores to decide which of the following x values lie the greatest distance above the mean and the greatest distance below the mean.

a. x=100,  μ=50,  σ=25b. x=1,  μ=4,  σ=1c. x=0,  μ=200,  σ=100d.x=10,  μ=5,  σ=3

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Rank

University

Public/

Private

Academic Reputation Score

(100 pt. scale)

Average Financial Aid Awarded

Average Net Cost Attend

Median Salary During Early Career

% High Meaning

%Stem Degrees

1

Harvard University

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99

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28%

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97

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University of

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Public

79

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\(59,500

50%

31%

23

University of Virginia

Public

76

\)16,834

\(12,672

\)54,700

52%

24%

27

Carnegie Mellon

University

Private

76

\(24,263

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Pepperdine University

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60

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a.4, 6, 6, 5, 6, 7

b.- \(1, \)4, - \(3, \)0, - \(3, - \)6

c.3/5 %, 4/5 %, 2/5 %, 1/5 %, 1/16 %

d.Calculate the range of each data set in parts a–c.

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Nuclear power plants.According to the Nuclear Energy Institute (NEI), 62 nuclear power plants were operating in the United States in 2015. The table at top of the next column lists the 30 states that operate nuclear power

plants, the number of plants in each state, and whether the state has passed legislation supporting nuclear energy expansion (regulated) or not (deregulated).

a.Find the mean, median, and mode of the number of power plants per state. Interpret these values.

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State

Status

Number of Power Plants

Alabama

Regulated

2

Arizona

Regulated

1

Arkansas

Regulated

1

California

Regulated

1

Connecticut

Deregulated

1

Florida

Regulated

3

Georgia

Regulated

2

Illinois

Deregulated

6

Iowa

Deregulated

1

Kansas

Regulated

1

Louisiana

Regulated

2

Maryland

Deregulated

1

Massachusetts

Deregulated

1

Michigan

Deregulated

3

Minnesota

Regulated

2

Mississippi

Regulated

1

Missouri

Regulated

1

Nebraska

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2

New Hampshire

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1

New Jersey

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3

New York

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4

North Carolina

Regulated

3

Ohio

Deregulated

2

Pennsylvania

Deregulated

5

South Carolina

Regulated

4

Tennessee

Regulated

2

Texas

Deregulated

2

Virginia

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2

Washington

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1

Wisconsin

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1

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