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By the end of this section, you will be able to:

  • Interpret labor-leisure budget constraint graphs
  • Predict consumer choices based on wages and other compensation
  • Explain the backward-bending supply curve of labor

People do not obtain utility just from products they purchase. They also obtain utility from leisure time. Leisure time is time not spent at work. The decision-making process of a utility-maximizing household applies to what quantity of hours to work in much the same way that it applies to purchases of goods and services. Choices made along the labor-leisure budget constraint , as wages shift, provide the logical underpinning for the labor supply curve. The discussion also offers some insights about the range of possible reactions when people receive higher wages, and specifically about the claim that if people are paid higher wages, they will work a greater quantity of hours—assuming that they have a say in the matter.

According to the Bureau of Labor Statistics, U.S. workers averaged 38.6 hours per week on the job in 2014. This average includes part-time workers; for full-time workers only, the average was 42.5 hours per week. [link] shows that more than half of all workers are on the job 35 to 48 hours per week, but significant proportions work more or less than this amount.

[link] breaks down the average hourly compensation received by private industry workers, including wages and benefits. Wages and salaries are about three-quarters of total compensation received by workers; the rest is in the form of health insurance, vacation pay, and other benefits. The compensation workers receive differs for many reasons, including experience, education, skill, talent, membership in a labor union, and the presence of discrimination against certain groups in the labor market. Issues surrounding the inequality of incomes in a market-oriented economy are explored in the chapters on Poverty and Economic Inequality and Issues in Labor Markets: Unions, Discrimination, Immigration .

(Source: http://www.bls.gov/news.release/empsit.t18.htm)
Persons at work, by average hours worked per week in 2013 (total number of workers: 137.7 million)
Hours Worked per Week Number of Workers Percentage of Workforce
1–14 hours 6.9 million 5.0%
15–34 hours 27.6 million 20.1%
35–40 hours 68.5 million 49.9%
41–48 hours 11.9 million 8.6%
49–59 hours 13.3 million 9.6%
60 hours and over 9.3 million 6.8%
(Source: http://www.bls.gov/news.release/pdf/ecec.pdf)
Hourly compensation: wages, benefits, and taxes in 2014
Compensation, Wage, Salary, and Benefits $30.92 per hour
Wages and Salaries $20.92
Benefits
Vacation $2.09
Supplemental Pay $0.84
Insurance $2.15
Health Benefits $2.36
Retirement and Savings $1.24
Defined Benefit $0.57
Defined Contribution $0.064
Legally Required $2.46

The labor-leisure budget constraint

How do workers make decisions about the number of hours to work? Again, let’s proceed with a concrete example. The economic logic is precisely the same as in the case of a consumption choice budget constraint , but the labels are different on a labor-leisure budget constraint.

Questions & Answers

A golfer on a fairway is 70 m away from the green, which sits below the level of the fairway by 20 m. If the golfer hits the ball at an angle of 40° with an initial speed of 20 m/s, how close to the green does she come?
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A mouse of mass 200 g falls 100 m down a vertical mine shaft and lands at the bottom with a speed of 8.0 m/s. During its fall, how much work is done on the mouse by air resistance
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2. A sled plus passenger with total mass 50 kg is pulled 20 m across the snow (0.20) at constant velocity by a force directed 25° above the horizontal. Calculate (a) the work of the applied force, (b) the work of friction, and (c) the total work.
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Samuel Reply
can someone explain to me, an ignorant high school student, why the trend of the graph doesn't follow the fact that the higher frequency a sound wave is, the more power it is, hence, making me think the phons output would follow this general trend?
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Nevermind i just realied that the graph is the phons output for a person with normal hearing and not just the phons output of the sound waves power, I should read the entire thing next time
Joseph
Follow up question, does anyone know where I can find a graph that accuretly depicts the actual relative "power" output of sound over its frequency instead of just humans hearing
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"Generation of electrical energy from sound energy | IEEE Conference Publication | IEEE Xplore" ***ieeexplore.ieee.org/document/7150687?reload=true
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A string is 3.00 m long with a mass of 5.00 g. The string is held taut with a tension of 500.00 N applied to the string. A pulse is sent down the string. How long does it take the pulse to travel the 3.00 m of the string?
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Source:  OpenStax, Openstax microeconomics in ten weeks. OpenStax CNX. Sep 03, 2014 Download for free at http://legacy.cnx.org/content/col11703/1.2
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