AP HUMAN GEOGRAPHY • CITIES AND URBAN LAND-USE

The Internal Structure of Cities

How competing urban models explain the spatial organization of land use, social class, and economic activity within cities.

Historical Context & Motivation

Cities have fascinated scholars for millennia, but it was not until the rapid industrialization and urbanization of the nineteenth and twentieth centuries that geographers and sociologists began to develop formal models explaining why certain land uses cluster in particular locations within a metropolitan area. As factories drew millions of rural migrants into dense urban cores, patterns of residential segregation, commercial concentration, and industrial zoning became impossible to ignore. Early urban theorists sought to identify regularities—predictable spatial arrangements—that could be observed across many different cities, much as biologists classify organisms by shared anatomical features. These efforts produced the three classic models of urban structure that remain central to the AP Human Geography curriculum: the concentric zone model, the sector model, and the multiple nuclei model.

1925
Concentric Zone Model
Ernest Burgess publishes his concentric zone model based on observations of Chicago, proposing that cities grow outward in a series of rings from a central business district.
1939
Sector Model
Homer Hoyt challenges Burgess by arguing that land uses extend outward from the CBD in wedge-shaped sectors aligned with transportation corridors, not uniform rings.
1945
Multiple Nuclei Model
Chauncy Harris and Edward Ullman propose that cities develop around several distinct nodes of activity rather than a single center, reflecting the complexity of modern metropolitan areas.
1991
Galactic / Edge City Model
Joel Garreau's Edge City documents the rise of suburban business centers, leading to models that account for decentralized metropolitan structure and edge cities surrounding older cores.
2000s
Latin American & Postmodern Models
Geographers develop region-specific models—such as the Griffin-Ford Latin American city model—and postmodern frameworks that emphasize fragmentation, global capital flows, and cultural diversity within urban form.

The central question that all of these models attempt to answer is deceptively simple: Why are different parts of a city used for different purposes, and what forces determine where wealthy residents, industrial facilities, and commercial enterprises locate? Understanding the spatial logic of cities is essential not only for the AP exam but also for grasping contemporary debates about gentrification, suburban sprawl, environmental justice, and equitable urban planning.

Core Principles & Definitions

Before examining specific models, it is important to establish the foundational concepts that underpin all theories of urban structure. Every model of the internal structure of cities rests on the idea that land within a metropolitan area has different values and that competition among land uses drives spatial sorting. The following principles form the conceptual bedrock for understanding how and why cities are organized the way they are.

1

Central Business District (CBD)

The downtown core of a city where commercial, financial, and retail activities concentrate due to maximum accessibility. Land values are highest here, and the CBD serves as the primary node of economic activity in classic models.
2

Bid-Rent Theory

The principle that different land uses—commercial, industrial, residential—compete for locations based on their willingness and ability to pay rent. Rent declines with distance from the CBD, and each land use dominates the zone where its bid-rent curve is highest.
3

Filtering & Invasion-Succession

Filtering describes the process by which housing passes from higher-income to lower-income occupants as structures age. Invasion-succession refers to the broader phenomenon of one social group or land use gradually replacing another in a neighborhood.
4

Functional Zonation

The spatial separation of land uses into distinct districts—residential, commercial, industrial—driven by zoning laws, market forces, and the desire of similar activities to cluster together for mutual benefit (agglomeration).
5

Edge Cities & Suburban Nodes

Suburban concentrations of employment, shopping, and entertainment that function as secondary CBDs. Their growth reflects automobile dependence, highway construction, and the decentralization of economic activity away from the traditional urban core.
KEY TAKEAWAY
Think of a city's land market like an auction at a farmers' market with a limited number of stalls. The stall closest to the entrance (the CBD) gets the most foot traffic, so bakeries and coffee vendors (commercial uses) bid aggressively for it. Flower growers (residential uses) prefer quieter stalls farther from the noise. Truck farmers (industry) need large stalls with loading access and choose the periphery. The result is a predictable spatial sorting—not because anyone planned it, but because each bidder's priorities differ.

Visual Explanation — The Three Classic Models

The diagram below presents the three classic urban structure models side by side. Each model offers a different geometric interpretation of how land uses distribute themselves within a city, yet all share the assumption that the CBD occupies a position of central importance. Examine the spatial arrangement of zones in each model carefully, noting how the transition from commercial to residential to industrial land uses changes depending on the model's assumptions about transportation, topography, and economic activity.

Left: Burgess's concentric zone model shows uniform rings expanding from the CBD. Center: Hoyt's sector model depicts wedge-shaped zones following transportation corridors. Right: Harris and Ullman's multiple nuclei model illustrates distinct activity nodes scattered across the metropolitan area.

In the concentric zone model (left), zones radiate symmetrically from the CBD: the innermost ring is a zone of transition characterized by mixed industrial and residential uses, followed by working-class housing, middle-class residential areas, and finally a suburban commuter zone. The sector model (center) modifies this picture by recognizing that high-income neighborhoods, factories, and low-income housing tend to extend outward in pie-shaped wedges, often along rail lines or major highways. The multiple nuclei model (right) breaks further from concentricity by positing that a city develops around several discrete centers of activity—an airport, a university, an industrial park—each of which attracts compatible land uses and repels incompatible ones.

How It Works — Bid-Rent Theory & Land-Use Sorting

While the three classic models describe what cities look like, bid-rent theory explains the economic mechanism that drives spatial sorting. Developed from the work of William Alonso in the 1960s, bid-rent theory holds that each category of land user—commercial, industrial, residential—has a different willingness to pay for proximity to the city center. Commercial enterprises, which depend on foot traffic and accessibility, bid the highest rents near the CBD but their willingness to pay drops off sharply with distance. Residential users have a flatter bid-rent curve, meaning they are willing to trade longer commutes for cheaper land and more space. Industrial users, needing large parcels and highway access, are least sensitive to CBD proximity and locate on the urban periphery.

BID-RENT RELATIONSHIP
R(d) = R₀ − f(d)
Where R(d) is the rent a user is willing to pay at distance d from the CBD, R₀ is the maximum rent at the CBD, and f(d) is the transportation cost function that increases with distance. The slope of f(d) varies by land-use type: steep for commercial, moderate for residential, and gentle for industrial.

The practical implication is that at any given distance from the CBD, the land use that can afford to pay the highest rent will dominate that zone. Near the center, commercial uses outbid everyone; at moderate distances, residential users outbid industry; at the fringe, industrial and agricultural uses prevail. This logic directly produces the concentric pattern that Burgess observed, although Hoyt's and Harris-Ullman's modifications remind us that transportation networks, historical accidents, and agglomeration economies distort the idealized rings into sectors and clusters.

Bid-rent curves show how the willingness to pay for land declines with distance from the CBD. Commercial users (red) have the steepest curve, residential users (violet) have a moderate slope, and industrial users (cyan) have the flattest curve. The colored bar at the bottom shows which land use dominates at each distance.
KEY TAKEAWAY
Bid-rent theory functions like a silent auction where the highest bidder wins each plot. Near the CBD, retailers and office towers outbid everyone because accessibility translates directly into profit. Farther out, families outbid factories because they value space but still need reasonable commute times. Factories, needing large cheap plots with highway access, end up at the edge. The result is a predictable zonation of land uses dictated by the economics of location.

Detailed Breakdown of Urban Models

Each of the classic models—and the more recent additions to the urban geography canon—carries specific assumptions and describes particular types of cities. The AP exam frequently tests your ability to distinguish among these models by their structure, historical context, and applicability to different world regions. The table below provides a comprehensive comparison, followed by a discussion of region-specific models that extend the classic framework.

Comparison of Major Urban Structure Models
ModelShape / StructureKey AssumptionBest Applies To
Concentric ZoneFive concentric rings radiating from the CBDFlat terrain, uniform accessibility, growth by outward expansionPre-automobile industrial cities (e.g., early 20th-century Chicago)
SectorWedge-shaped sectors extending from the CBD along transport routesTransport corridors (railroads, highways) shape directional growthCities with strong radial highways (e.g., many U.S. and European cities)
Multiple NucleiMultiple distinct nodes of activity scattered across the metro areaCities develop around several focal points, not just one CBDLarge, complex metros with airports, universities, and industrial parks
Galactic City / Edge CityPeripheral suburban nodes linked by beltways surrounding an older coreAutomobile dependency and suburban office/retail growthPost-1970s U.S. Sun Belt cities (e.g., Phoenix, Atlanta, Houston)
Griffin-Ford (Latin American)CBD with a commercial spine, elite residential sector, concentric zones of decreasing wealth, and peripheral squatter settlementsIncome inequality, informal housing, industrial spine along a major corridorLatin American cities (e.g., Mexico City, São Paulo, Buenos Aires)

The Griffin-Ford Latin American City Model

The AP exam increasingly tests knowledge of non-Western urban models, and the Griffin-Ford model is the most frequently assessed. Unlike North American cities, many Latin American cities feature a prominent commercial spine extending from the CBD, with an elite residential sector flanking this boulevard. Wealth generally decreases with distance from the center—the reverse of the typical North American pattern. At the urban periphery, squatter settlements (often called favelas, barrios, or colonias populares) house the poorest residents, often lacking formal infrastructure. An industrial sector and a zone of in situ accretion—where informal settlements gradually become more permanent—are also distinctive features of this model.

📝 AP EXAM TIP
FRQ prompts often ask you to compare the internal structure of cities in two different world regions. A strong response explicitly names the model, identifies at least two structural differences (e.g., where the wealthy live relative to the CBD), and provides a real-world city as an example for each model.

Worked Example — Applying Urban Models to a City Profile

Suppose you are given a description of a city and asked to identify which urban model best explains its structure. This is a common AP FRQ task. Walk through the analysis systematically.

Identifying the Best-Fit Urban Model
1
Step 1 — Read the City ProfileThe prompt describes a large city in South America with a well-defined CBD containing high-rise office buildings and luxury shops. A wide boulevard extends south from the CBD, lined with upscale apartments and boutiques. Wealth generally decreases with distance from the center. On the northern outskirts, informal housing communities have developed without municipal services.
2
Step 2 — Identify Key Structural FeaturesHighlight the distinguishing features: (a) a prominent commercial spine (the boulevard), (b) an elite residential sector adjacent to the spine, (c) wealth declining toward the periphery, and (d) squatter settlements on the urban fringe.
Features: commercial spine, elite sector, peripheral poverty, squatter settlements
3
Step 3 — Match to a ModelThe concentric zone model places the poorest housing near the CBD (zone of transition), not at the periphery—so it does not fit. The sector model correctly identifies wedge-shaped zones but does not account for the commercial spine or peripheral squatter settlements. The multiple nuclei model focuses on dispersed activity nodes, which is not the dominant pattern here. The Griffin-Ford Latin American city model explicitly features a commercial spine, an elite residential sector, declining wealth outward, and peripheral informal settlements.
Best-fit model: Griffin-Ford Latin American City Model
4
Step 4 — Justify with SpecificsIn your FRQ response, name the model, cite at least two structural features that match, and provide a real-world example: 'The city described most closely resembles the Griffin-Ford Latin American city model. The prominent commercial spine extending from the CBD, the adjacent elite residential sector, and the peripheral squatter settlements are all hallmarks of this model. Buenos Aires, Argentina, exhibits a similar pattern with its Avenida 9 de Julio functioning as a commercial spine and villas miserias on the urban fringe.'
Complete answer: Name model + cite features + real-world example

Strengths & Limitations of Urban Models

No single urban model perfectly captures the complexity of a real city. Each model was developed in a specific historical and geographic context, and each carries assumptions that limit its applicability. Understanding these strengths and limitations is essential for AP FRQ responses, which often ask students to evaluate models rather than simply recall them.

Strengths and Limitations of Major Urban Models
ModelStrengthsLimitations
Concentric ZoneSimple and intuitive; effectively describes early industrial cities; logically connected to bid-rent theoryAssumes flat terrain and uniform transport; ignores physical barriers (rivers, hills); based on one city (Chicago); outdated for automobile-era cities
SectorAccounts for the role of transportation corridors; recognizes directional growth of land uses; more realistic than perfect ringsStill assumes a single dominant CBD; does not fully address suburban employment centers; limited applicability to non-Western cities
Multiple NucleiRecognizes polycentric structure; accommodates diversity of functions; more reflective of modern metropolitan areasLess predictive because it allows many configurations; difficult to test empirically; does not specify how nuclei form
Galactic / Edge CityCaptures post-suburban growth; reflects highway-oriented development; applicable to Sun Belt metrosPrimarily describes U.S. cities; less applicable in regions with strong public transit; may not apply to cities in the Global South
Griffin-FordAddresses wealth gradient and informality; includes commercial spine and squatter zones absent from North American modelsGeneralizes across a diverse continent; rapid urbanization and globalization are altering the pattern; does not account for gated communities on the periphery
KEY TAKEAWAY
Urban models are like map projections: every projection distorts reality in some way, and the "best" projection depends on the purpose of the map. Similarly, no urban model is universally correct. The concentric zone model is a useful first approximation for compact industrial cities, the sector model adds nuance for cities shaped by rail and highway corridors, and the multiple nuclei model better describes sprawling, polycentric metros. On the AP exam, the strongest answers acknowledge both the explanatory power and the limitations of the model they discuss.

Connections to Contemporary Urban Theory

The classic models provide a useful framework, but contemporary urban geography has moved toward more dynamic and globally inclusive theories. Understanding how the foundational models connect to advanced concepts will strengthen your FRQ responses and help you see urban structure as an evolving process rather than a static pattern.

Classic Urban Concepts and Their Contemporary Extensions
Classic ConceptContemporary ExtensionKey Insight
CBD as single urban corePolycentricity & edge citiesMany metros now have multiple employment centers; the CBD may no longer dominate job concentration
Filtering & invasion-successionGentrificationThe classic process can reverse: wealthier residents move into formerly low-income neighborhoods, raising property values and displacing existing residents
Concentric zones of poverty near the CBDSuburbanization of povertyIn many U.S. cities, low-income populations are increasingly located in inner-ring suburbs, inverting the Burgess pattern
Functional zonationMixed-use development & New UrbanismPlanning movements now intentionally blend residential, commercial, and recreational uses to reduce car dependence and promote walkability
Griffin-Ford periphery squatter zonesMegacity informalityRapid urbanization in Africa and South Asia has produced massive informal settlements that do not fit neatly into any single model

These connections illustrate that the internal structure of cities is not fixed; it is constantly reshaped by economic forces, policy decisions, technological change, and cultural preferences. On the AP exam, demonstrating awareness of how classic models relate to current urban trends—such as gentrification, suburbanization of poverty, and New Urbanism—will earn you credit for analytical depth and conceptual sophistication.

Practice Problems

1
Which of the following best describes a key difference between the concentric zone model and the sector model of urban structure?
2
According to bid-rent theory, which land-use type will dominate the areas closest to the central business district?
3
A city in Central America has a well-defined CBD, a commercial spine extending along a broad boulevard, an elite residential zone flanking the spine, declining wealth with distance from the center, and informal squatter settlements on the urban periphery. Which urban model best describes this city's internal structure?
PROBLEM 4APPLIED
Identify TWO ways in which gentrification challenges the predictions of the Burgess concentric zone model. Then explain ONE social consequence of gentrification for the original residents of the affected neighborhood.
PROBLEM 5CRITICAL THINKING
The table below shows the percentage of total metropolitan employment located in the CBD versus suburban employment centers for two U.S. cities, City X and City Y, measured in 1970 and 2020. | Location | City X – 1970 | City X – 2020 | City Y – 1970 | City Y – 2020 | |---|---|---|---|---| | CBD | 52% | 18% | 45% | 35% | | Suburban centers | 20% | 55% | 25% | 30% | | Dispersed | 28% | 27% | 30% | 35% | (A) Identify the urban model that best described City X in 1970, and explain your reasoning. (B) Describe the shift in City X's employment structure between 1970 and 2020, and identify the urban model that best describes City X's 2020 structure. (C) Explain ONE economic factor and ONE infrastructure factor that could account for the employment shift observed in City X. (D) Compare City Y's trajectory to City X's and explain why City Y's structure may have changed less dramatically.

Summary — The Internal Structure of Cities

The internal structure of cities is explained by several competing but complementary models. The concentric zone model (Burgess, 1925) envisions uniform rings of land use expanding from a central CBD. The sector model (Hoyt, 1939) modifies this by arranging land uses in wedge-shaped sectors along transportation corridors. The multiple nuclei model (Harris & Ullman, 1945) recognizes that modern cities develop around several distinct activity nodes. The underlying economic logic is provided by bid-rent theory, which explains how competition among land uses for accessible locations drives spatial sorting.

Beyond North America, the Griffin-Ford Latin American city model captures a distinct pattern of declining wealth from center to periphery, a commercial spine, and peripheral squatter settlements. Contemporary extensions—including gentrification, edge cities, suburbanization of poverty, and New Urbanism—demonstrate that urban form is dynamic. For the AP exam, always name the model, cite specific structural features as evidence, provide a real-world example, and acknowledge each model's limitations.

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