Unit 2: The Living World: Biodiversity
Env. Science · Unit 2 · Paper 3

The Living World: Biodiversity unit test

A test on this unit alone, marked as a percentage and a letter grade — for the test your class is actually sitting, rather than for May. Answer everything, then submit once: seeing the answer to question 3 before attempting question 4 makes the final percentage meaningless.

Each paper is built from this unit’s 16 terms and is the same for everyone, so a teacher can assign “Unit 2, Paper 3” and every student sits the identical test. Multiple choice is marked objectively; the written sections you mark yourself against the model answer and rubric.
Suggested time 37 min 34 points0/17 attempted
1

Keystone species

2

Wildlife corridors

3

Ecosystem services from biodiversity

4

Pioneer species

5

Why genetic diversity matters

6

Simpson's diversity index

7

Edge effects

8

Ecosystem resilience vs resistance

9

Ecological tolerance

10

Habitat fragmentation

11

Adaptations to disturbance

12

Levels of biodiversity

Short answer 1. Define or explain: Ecological succession

3 pts

Short answer 2. Define or explain: Climax community

3 pts

Short answer 3. Define or explain: Indicator species

3 pts

Short answer 4. Define or explain: Island biogeography

3 pts

Free response

10 pts

This course has no free-response prompt tagged to this unit, so one from elsewhere in the course is used. It is still worth writing — the skill transfers.

A city of 500,000 residents is developing a climate action plan. At present each resident drives an average of 12,000 km per year in a vehicle averaging 10 km per liter of gasoline, and burning one liter of gasoline releases 2.3 kg of CO₂.

Calculate the total distance driven per year and the fuel used.

Calculate the annual CO₂ emissions in metric tons.

Recalculate the fuel used and emissions under the improved fuel economy.

State the annual reduction in emissions that the improvement achieves.

Identify the effect that could reduce the real-world benefit of better fuel economy.

Explain how that effect offsets part of the expected reduction.

Identify ONE source of the city's greenhouse-gas emissions that does not come from vehicles.

Describe a policy that would reduce emissions from that source.

Distinguish between mitigation and adaptation.

Classify improved fuel economy as one of the two, and justify your choice.