1. The phrase carrying capacity refers to A. storing extra food for winter B. the number of organisms a habitat can support C. transporting food to organisms in an area D. the maximum possible weight of an individual organism 2. What is the carrying capacity for rabbits? В. 20 A. 5 C. 40 D. 65 3. What kind of growth does this graph show? A. Linear B. Logistic C. Exponential D. Lag

Human Anatomy & Physiology (11th Edition)
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**Ecology Populations & Biodiversity Test**

**Use the graph to answer questions 1-3.**

1. The phrase *carrying capacity* refers to  
   A. storing extra food for winter  
   B. the number of organisms a habitat can support  
   C. transporting food to organisms in an area  
   D. the maximum possible weight of an individual  

2. What is the carrying capacity for rabbits?  
   A. 5  
   B. 20  
   C. 40  
   D. 65  

3. What kind of growth does this graph show?  
   A. Linear  
   B. Logistic  
   C. Exponential  
   D. Lag  

**Graph Explanation:**

The graph displayed is a logistic growth curve for a rabbit population. The x-axis represents time from May 1st to September 1st, while the y-axis shows the number of rabbits, ranging from 0 to 10. The graph indicates rapid population growth initially, followed by a plateau, illustrating the concept of carrying capacity. The curve’s growth slows as it reaches a stable point, suggesting the maximum population size that the environment can sustain is around 8 rabbits.
Transcribed Image Text:**Ecology Populations & Biodiversity Test** **Use the graph to answer questions 1-3.** 1. The phrase *carrying capacity* refers to A. storing extra food for winter B. the number of organisms a habitat can support C. transporting food to organisms in an area D. the maximum possible weight of an individual 2. What is the carrying capacity for rabbits? A. 5 B. 20 C. 40 D. 65 3. What kind of growth does this graph show? A. Linear B. Logistic C. Exponential D. Lag **Graph Explanation:** The graph displayed is a logistic growth curve for a rabbit population. The x-axis represents time from May 1st to September 1st, while the y-axis shows the number of rabbits, ranging from 0 to 10. The graph indicates rapid population growth initially, followed by a plateau, illustrating the concept of carrying capacity. The curve’s growth slows as it reaches a stable point, suggesting the maximum population size that the environment can sustain is around 8 rabbits.
**Understanding Population Dynamics: Key Concepts and Questions**

1. **The phrase "carrying capacity" refers to:**
   - A. storing extra food for winter
   - B. the number of organisms a habitat can support
   - C. transporting food to organisms in an area
   - D. the maximum possible weight of an individual

2. **What is the carrying capacity for rabbits?**
   - A. 5
   - B. 20
   - C. 40
   - D. 65

3. **What kind of growth does this graph show?**
   - A. Linear
   - B. Logistic
   - C. Exponential

Note: While a specific graph is mentioned, no visible graph is available in the provided text. Typically, a logistic graph shows an S-curve, indicating limited growth, whereas exponential growth displays a J-curve with rapid increase. Linear growth presents a straight, consistent slope.
Transcribed Image Text:**Understanding Population Dynamics: Key Concepts and Questions** 1. **The phrase "carrying capacity" refers to:** - A. storing extra food for winter - B. the number of organisms a habitat can support - C. transporting food to organisms in an area - D. the maximum possible weight of an individual 2. **What is the carrying capacity for rabbits?** - A. 5 - B. 20 - C. 40 - D. 65 3. **What kind of growth does this graph show?** - A. Linear - B. Logistic - C. Exponential Note: While a specific graph is mentioned, no visible graph is available in the provided text. Typically, a logistic graph shows an S-curve, indicating limited growth, whereas exponential growth displays a J-curve with rapid increase. Linear growth presents a straight, consistent slope.
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