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Chapter 5: Elasticity

5.3Elasticity and Pricing

FIGURE 5.7A Supply Curve A supply curve is a straight line reaching up from the origin. Between each pair of points, the percentage increase in is the same as the percentage increase in .

5.3 Elasticity and Pricing

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

  • Analyze how elasticities impact
  • Evaluate how can cause shifts in and supply
  • Predict how the long-run and short-run impacts of affect
  • Explain how the of and supply determine the incidence of a tax on buyers and sellers

Studying elasticities is useful for a number of reasons, pricing being most important. Let’s explore how relates to and pricing, both in the long and . First, let’s look at the elasticities of some common goods and services. shows a selection of elasticities for different goods and services drawn from a variety of different studies by economists, listed in order of increasing . Goods and Services of Housing 0.12 Transatlantic air travel (economy class) 0.12 Rail transit (rush hour) 0.15 Electricity 0.20 Taxi cabs 0.22 Gasoline 0.35 Transatlantic air travel (first class) 0.40 Wine 0.55 TABLE 5.2Some Selected Elasticities of Goods and Services of Beef 0.59 Transatlantic air travel (business class) 0.62 Kitchen and household appliances 0.63 Cable TV (basic rural) 0.69 Chicken 0.64 Soft drinks 0.70 Beer 0.80 New vehicle 0.87 Rail transit (off-) 1.00 Computer 1.44 Cable TV (basic urban) 1.51 Cable TV () 1.77 Restaurant meals 2.27 TABLE 5.2Some Selected Elasticities of Note that for necessities such as housing and electricity is inelastic, while items that are not necessities such as restaurant meals are more -sensitive. If the price of a restaurant meal increases by 10%, the quantity demanded will decrease by 22.7%. A 10% increase in the price of housing will cause only a slight decrease of 1.2% in the quantity of housing demanded. LINK IT UP Read this article (https://openstax.org/l/Movietickets) for an example of price elasticity that may have affected you.

Does Raising Price Bring in More Revenue?

Imagine that a band on tour is playing in an indoor arena with 15,000 seats. To keep this example simple, assume that the band keeps all the from ticket sales. Assume further that the band pays the costs for its appearance, but that these costs, like travel, and setting up the stage, are the same regardless of how many people are in the audience. Finally, assume that all the tickets have the same . (The same insights apply if ticket prices are more expensive for some seats than for others, but the calculations become more complicated.) The band knows that it faces a downward-sloping ; that is, if the band raises the ticket , it will sell fewer seats. How should the band set the ticket to generate the most total , which in this example, because costs are fixed, will also mean the highest profits for the band? Should the band sell more tickets at a lower or fewer tickets at a higher ? The key concept in thinking about collecting the most is the . Total is times the quantity of tickets sold. Imagine that the band starts off thinking about a certain price, which will result in the sale of a certain quantity of tickets. The three possibilities are in . If is elastic at that level, then the band should cut the , because the percentage drop in will result in an even larger percentage increase in the quantity sold—thus raising total . However, if is inelastic at that original quantity level, then the band should raise the ticket , because a certain percentage increase in will result in a smaller percentage decrease in the quantity sold—and total will rise. If has a at that quantity, then an equal percentage change in quantity will offset a moderate percentage change in the —so the band will earn the same revenue whether it (moderately) increases or decreases the ticket price. If Demand Then . . . Therefore . . . Is . . . Elastic A given % rise in P will be more than offset by a larger % fall in Q so that total revenue (P × Q) falls. Unitary A given % rise in P will be exactly offset by an equal % fall in Q so that total revenue (P × Q) is unchanged. Inelastic A given % rise in P will cause a smaller % fall in Q so that total revenue (P × Q) rises. TABLE 5.3Will the Band Earn More Revenue by Changing Ticket Prices? What if the band keeps cutting price, because demand is elastic, until it reaches a level where it sells all 15,000 seats in the available arena? If demand remains elastic at that quantity, the band might try to move to a bigger arena, so that it could slash ticket prices further and see a larger percentage increase in the quantity of tickets sold. However, if the 15,000-seat arena is all that is available or if a larger arena would add substantially to costs, then this option may not work. Conversely, a few bands are so famous, or have such fanatical followings, that demand for tickets may be inelastic right up to the point where the arena is full. These bands can, if they wish, keep raising the ticket price. Ironically, some of the most popular bands could make more revenue by setting prices so high that the arena is not full—but those who buy the tickets would have to pay very high prices. However, bands sometimes choose to sell tickets for less than the absolute maximum they might be able to charge, often in the hope that fans will feel happier and spend more on recordings, T-shirts, and other paraphernalia.

Can Businesses Pass Costs on to Consumers?

Most businesses face a day-to-day struggle to figure out ways to produce at a lower cost, as one pathway to their goal of earning higher profits. However, in some cases, the of a key input over which the has no control may rise. For example, many chemical companies use petroleum as a key input, but they have no control over the world for crude oil. Coffee shops use coffee as a key input, but they have no control over the world of coffee. If the cost of a key input rises, can the pass those higher costs along to consumers in the form of higher prices? Conversely, if new and less expensive ways of producing are invented, can the keep the benefits in the form of higher profits, or will the pressure them to pass the gains along to consumers in the form of lower prices? The plays a key role in answering these questions. Imagine that as a consumer of legal pharmaceutical products, you read a newspaper story that a technological breakthrough in the of aspirin has occurred, so that every aspirin factory can now produce aspirin more cheaply. What does this discovery mean to you? illustrates two possibilities. In (a), the is highly inelastic. In this case, a technological breakthrough that shifts supply to the right, from S0 to S1, so that the shifts from E0 to E1, creates a substantially lower for the product with relatively little impact on the quantity sold. In (b), the is highly elastic. In this case, the technological breakthrough leads to a much greater quantity sold in the at very close to the original . Consumers benefit more, in general, when the is more inelastic because the shift in the supply results in a much lower for consumers.

FIGURE 5.8Passing along Cost Savings to Consumers Cost-saving gains cause supply to shift out to the right from S0 to S1; that is, at any given , firms will be willing to supply a greater quantity. If is inelastic, as in (a), the result of this cost-saving technological improvement will be substantially lower prices. If is elastic, as in (b), the result will be only slightly lower prices. Consumers benefit in either case, from a greater quantity at a lower , but the benefit is greater when is inelastic, as in (a). Aspirin producers may find themselves in a nasty bind here. The situation in , with extremely , means that a new may cause the to drop dramatically while quantity changes little. As a result, the new can lead to a drop in the that firms earn from aspirin sales. However, if strong competition exists between aspirin producers, each producer may have little choice but to search for and implement any breakthrough that allows it to reduce costs. After all, if one decides not to implement such a cost-saving , other firms that do can drive them out of business. Since for food is generally inelastic, farmers may often face the situation in (a). That is, a surge in leads to a severe drop in that can actually decrease the total that farmers receive. Conversely, poor weather or other conditions that cause a terrible year for farm can sharply raise prices so that the total that the farmer receives increases. The Clear It Up box discusses how these issues relate to coffee. CLEAR IT UP How do coffee prices fluctuate? Coffee is an international crop. The top five coffee-exporting nations are Brazil, Vietnam, Colombia, Indonesia, and Ethiopia. In these nations and others, 20 million families depend on selling coffee beans as their main source of . These families are exposed to enormous , because the world of coffee bounces up and down. For example, in 1993, the world of coffee was about 50 cents per pound. In 1995 it was four times as high, at $2 per pound. By 1997 it had fallen by half to $1.00 per pound. In 1998 it leaped back up to $2 per pound. By 2001 it had fallen back to 46 cents a pound. By early 2011 it rose to about $2.31 per pound. By the end of 2012, the had fallen back to about $1.31 per pound. Since then, the of coffee has continued to fluctuate. The reason for these fluctuations lies in a combination of inelastic demand and shifts in supply. The elasticity of coffee demand is only about 0.3; that is, a 10% rise in the price of coffee leads to a decline of about 3% in the quantity of coffee consumed. When a major frost hit the Brazilian coffee crop in 1994, coffee supply shifted to the left with an inelastic demand curve, leading to much higher prices. Conversely, when Vietnam entered the world coffee market as a major producer in the late 1990s, the supply curve shifted out to the right. With a highly inelastic demand curve, coffee prices fell dramatically. (a) illustrates this situation. also reveals whether firms can pass higher costs that they incur on to consumers. Addictive substances, for which is inelastic, are products for which producers can pass higher costs on to consumers. For example, the for cigarettes is relatively inelastic among regular smokers who are somewhat addicted. Economic research suggests that increasing cigarette prices by 10% leads to about a 3% reduction in the quantity of cigarettes that adults smoke, so the of for cigarettes is 0.3. If society increases taxes on companies that produce cigarettes, the result will be, as in (a), that the supply curve shifts from S0 to S1. However, as the moves from E0 to E1, governments mainly pass along these taxes to consumers in the form of higher prices. These higher taxes on cigarettes will raise tax for the government, but they will not much affect the quantity of smoking. If the goal is to reduce the quantity of cigarettes demanded, we must achieve it by shifting this back to the left, perhaps with public programs to discourage cigarette use or to help people to quit. For example, anti-smoking campaigns have shown some ability to reduce smoking. However, if cigarette were more elastic, as in (b), then an increase in taxes that shifts supply from S0 to S1 and from E0 to E1 would reduce the quantity of cigarettes smoked substantially. Youth smoking seems to be more elastic than adult smoking—that is, the quantity of youth smoking will fall by a greater percentage than the quantity of adult smoking in response to a given percentage increase in .

FIGURE 5.9Passing along Higher Costs to Consumers Higher costs, like a higher tax on cigarette companies for the example we gave in the text, lead supply to shift to the left. This shift is identical in (a) and (b). However, in (a), where is inelastic, companies largely can pass the cost increase along to consumers in the form of higher prices, without much of a decline in . In (b), is elastic, so the results primarily in a lower . Consumers do not benefit in either case, but in (a), they pay a higher for the same quantity, while in (b), they must buy a lower quantity (and presumably needing to shift their consumption elsewhere).

Elasticity and Tax Incidence

The example of cigarette taxes demonstrated that because is inelastic, taxes are not effective at reducing the of smoking, and they are mainly passed along to consumers in the form of higher prices. The analysis, or manner, of how a tax burden is divided between consumers and producers is called . Typically, the , or burden, falls both on the consumers and producers of the taxed good. However, if one wants to predict which group will bear most of the burden, all one needs to do is examine the of and supply. In the tobacco example, the tax burden falls on the most inelastic side of the . If is more inelastic than supply, consumers bear most of the tax burden, and if supply is more inelastic than , sellers bear most of the tax burden. The intuition for this is simple. When the is inelastic, consumers are not very responsive to changes, and the reduces only modestly when the tax is introduced. In the case of smoking, the demand is inelastic because consumers are addicted to the product. The government can then pass the tax burden along to consumers in the form of higher prices, without much of a decline in the equilibrium quantity. Similarly, when a government introduces a tax in a market with an inelastic supply, such as, for example, beachfront hotels, and sellers have no alternative than to accept lower prices for their business, taxes do not greatly affect the equilibrium quantity. The tax burden now passes on to the sellers. If the supply was elastic and sellers had the possibility of reorganizing their businesses to avoid supplying the taxed good, the tax burden on the sellers would be much smaller. The tax would result in a much lower quantity sold instead of lower prices received. illustrates this relationship between the and of and supply.

FIGURE 5.10Elasticity and Tax IncidenceAn introduces a wedge between the paid by consumers (Pc) and the received by producers (Pp). The vertical distance between Pc and Pp is the amount of the tax per unit. Pe is the prior to introduction of the tax. (a) When the is more elastic than supply, the on consumers Pc – Pe is lower than the on producers Pe – Pp. (b) When the supply is more elastic than , the on consumers Pc – Pe is larger than the on producers Pe – Pp. The more elastic the and supply curves, the lower the tax . In (a), the supply is inelastic and the is elastic, such as in the example of beachfront hotels. While consumers may have other vacation choices, sellers can’t easily move their businesses. By introducing a tax, the government essentially creates a wedge between the paid by consumers Pc and the received by producers Pp. In other words, of the total paid by consumers, part is retained by the sellers and part is paid to the government in the form of a tax. The distance between Pc and Pp is the tax rate. The new is Pc, but sellers receive only Pp per unit sold, as they pay Pc-Pp to the government. Since we can view a tax as raising the costs of , this could also be represented by a leftward shift of the supply curve, where the new supply curve would intercept the at the new quantity Qt. For simplicity, omits the shift in the supply curve. The tax is given by the shaded area, which we obtain by multiplying the tax per unit by the total quantity sold Qt. The on the consumers is given by the difference between the paid Pc and the initial Pe. The on the sellers is given by the difference between the initial Pe and the they receive after the tax is introduced Pp. In (a), the tax burden falls disproportionately on the sellers, and a larger proportion of the tax (the shaded area) is due to the resulting lower received by the sellers than by the resulting higher prices paid by the buyers. (b) describes the example of the tobacco where the supply is more elastic than . The now falls disproportionately on consumers, as shown by the large difference between the they pay, Pc, and the initial , Pe. Sellers receive a lower than before the tax, but this difference is much smaller than the change in consumers’ . From this analysis one can also predict whether a tax is likely to create a large or not. The more elastic the , the more likely that consumers will reduce quantity instead of paying higher prices. The more elastic the supply curve, the more likely that sellers will reduce the quantity sold, instead of taking lower prices. In a where both the and supply are very elastic, the imposition of an generates low revenue. Some believe that excise taxes hurt mainly the specific industries they target. For example, the medical device excise tax, which was implemented in 2013, has been controversial for it can delay industry profitability and therefore hamper start-ups and medical innovation. The tax was repealed in late 2019. However, whether the tax burden falls mostly on the medical device industry or on the patients depends simply on the elasticity of demand and supply.

Long-Run vs. Short-Run Impact

Elasticities are often lower in the than in the . On the side of the , it can sometimes be difficult to change Qd in the , but easier in the . Consumption of energy is a clear example. In the , it is not easy for a person to make substantial changes in energy consumption. Maybe you can carpool to work sometimes or adjust your home thermostat by a few degrees if the cost of energy rises, but that is about all. However, in the you can purchase a car that gets more miles to the gallon, choose a job that is closer to where you live, buy more energy-efficient home appliances, or install more insulation in your home. As a result, the of for energy is somewhat inelastic in the , but much more elastic in the . is an example, based roughly on historical experience, for the responsiveness of Qd to changes. In 1973, the of crude oil was $12 per barrel and total consumption in the U.S. economy was 17 million barrels per day. That year, the nations who were members of the Organization of Petroleum Exporting Countries (OPEC) cut off oil to the United States for six months because the Arab members of OPEC disagreed with the U.S. support for Israel. OPEC did not bring back to their earlier levels until 1975—a policy that we can interpret as a shift of the supply curve to the left in the U.S. petroleum . (a) and (b) show the same original point and the same identical shift of a supply curve to the left from S0 to S1.

FIGURE 5.11How a Can Affect or Quantity The intersection (E0) between D and supply curve S0 is the same in both (a) and (b). The shift of supply to the left from S0 to S1 is identical in both (a) and (b). The new (E1) has a higher and a lower quantity than the original (E0) in both (a) and (b). However, the shape of the D is different in (a) and (b), being more elastic in (b) than in (a). As a result, the can result either in a new with a much higher and an only slightly smaller quantity, as in (a), with more , or in a new with only a small increase in price and a relatively larger reduction in quantity, as in (b), with more elastic demand. (a) shows for oil in the similar to that which existed for the United States in 1973. In (a), the new (E1) occurs at a of $25 per barrel, roughly double the before the OPEC shock, and an of 16 million barrels per day. (b) shows what the outcome would have been if the U.S. for oil had been more elastic, a result more likely over the long term. This alternative (E1) would have resulted in a smaller increase to $14 per barrel and larger reduction in to 13 million barrels per day. In 1983, for example, U.S. petroleum consumption was 15.3 million barrels a day, which was lower than in 1973 or 1975. U.S. petroleum consumption was down even though the U.S. economy was about one-fourth larger in 1983 than it had been in 1973. The primary reason for the lower quantity was that higher energy prices spurred conservation efforts, and after a decade of home insulation, more fuel-efficient cars, more efficient appliances and machinery, and other fuel-conserving choices, the for energy had become more elastic. On the supply side of markets, producers of goods and services typically find it easier to expand in the long term of several years rather than in the of a few months. After all, in the it can be costly or difficult to build a new factory, hire many new workers, or open new stores. However, over a few years, all of these are possible. In most markets for goods and services, prices bounce up and down more than quantities in the , but quantities often move more than prices in the . The underlying reason for this pattern is that supply and are often inelastic in the , so that shifts in either demand or supply can cause a relatively greater change in prices. However, since supply and demand are more elastic in the long run, the long-run movements in prices are more muted, while quantity adjusts more easily in the long run.

5.4 Elasticity in Areas Other Than Price

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

  • Calculate the of and the
  • Calculate the in labor and markets through an understanding of the of labor supply and the
  • Apply concepts of to real-world situations

The basic idea of —how a percentage change in one variable causes a percentage change in another variable—does not just apply to the responsiveness of and to changes in the of a product. Recall that (Qd) depends on , tastes and preferences, the prices of related goods, and so on, as well as . Similarly, (Qs) depends on factors such as the cost of , as well as . We can measure for any determinant of and quantity demanded, not just the price.

Income Elasticity of Demand

The of is the percentage change in divided by the percentage change in . For most products, most of the time, the of is positive: that is, a rise in will cause an increase in the . This pattern is common enough that we refer to these goods as normal goods. However, for a few goods, an increase in means that one might purchase less of the good. For example, those with a higher might buy fewer hamburgers, because they are buying more steak instead, or those with a higher income might buy less cheap wine and more imported beer. When the income elasticity of demand is negative, we call the good an inferior good. We introduced the concepts of normal and inferior goods in Demand and Supply. A higher level of income causes a demand curve to shift to the right for a normal good, which means that the income elasticity of demand is positive. How far the demand shifts depends on the income elasticity of demand. A higher income elasticity means a larger shift. However, for an inferior good, that is, when the income elasticity of demand is negative, a higher level of income would cause the demand curve for that good to shift to the left. Again, how much it shifts depends on how large the (negative) income elasticity is.

Cross-Price Elasticity of Demand

A change in the of one good can shift the for another good. If the two goods are , like bread and peanut butter, then a drop in the of one good will lead to an increase in the of the other good. However, if the two goods are substitutes, like plane tickets and train tickets, then a drop in the of one good will cause people to substitute toward that good, and to reduce consumption of the other good. Cheaper plane tickets lead to fewer train tickets, and vice versa. The puts some meat on the bones of these ideas. The term “cross-” refers to the idea that the of one good is affecting the of a different good. Specifically, the is the percentage change in the quantity of good A that is demanded as a result of a percentage change in the of good B. Substitute goods have positive cross-price elasticities of demand: if good A is a substitute for good B, like coffee and tea, then a higher price for B will mean a greater quantity consumed of A. Complement goods have negative cross-price elasticities: if good A is a complement for good B, like coffee and sugar, then a higher price

Text from Principles of Microeconomics 3e, OpenStax, licensed CC BY-NC-SA 4.0. Access for free at openstax.org.

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