QUESTION IMAGE
Question
- what is ammonification in the nitrogen cycle?
a. the uptake of nitrates by plants
b. the process of converting nitrogen gas into ammonia
c. the conversion of ammonia into nitrates
d. the breakdown of organic matter by decomposers, releasing ammonia back into the soil
- which population growth model takes into account the carrying capacity of an environment?
a. arithmetic growth
b. logistic growth
c. geometric growth
d. exponential growth
- if 30 baby birds hatch in a colony of 300 birds within a year, what is the birth rate per 1,000 individuals?
a. 300
b. 10
c. 1,000
d. 100
- which process involves the breakdown of phosphate rocks, releasing phosphate ions into the soil and water?
a. assimilation
b. siltation
c. weathering
d. decomposition
- which strategy is not mentioned in the context as a method for conserving endangered species?
a. urban development
b. captive breeding
c. habitat preservation
d. reintroduction programs
- which of the following best describes the interconnectedness of biogeochemical cycles?
a. each cycle only affects its own specific environment
b. they operate independently of one another
c. they are only relevant to terrestrial ecosystems
d. they are interconnected and mutually dependent, creating a complex web that sustains life
- how can transitioning to renewable energy benefit the environment?
a. it promotes deforestation
b. it increases fossil fuel dependency
c. it has no significant impact
d. it reduces greenhouse gas emissions
Question 8:
Ammonification in the nitrogen cycle is the process where decomposers break down organic matter, releasing ammonia back into the soil. Option a is nitrogen uptake by plants (assimilation or absorption), option b is nitrogen fixation (converting N₂ to ammonia), option c is nitrification (converting ammonia to nitrates). So the correct option is d.
Logistic growth model accounts for carrying capacity (\(K\)) of an environment, where population growth slows as it approaches \(K\). Arithmetic growth is linear, geometric and exponential growth are unregulated (don't consider carrying capacity). So the correct option is b.
Step1: Recall birth rate formula
Birth rate per 1000 individuals = \(\frac{\text{Number of births}}{\text{Total population}} \times 1000\)
Step2: Plug in values
Number of births = 30, Total population = 300. So \(\frac{30}{300} \times 1000 = 100\)? Wait, no—wait, 30 births in 300 individuals. Wait, \(\frac{30}{300} = 0.1\), times 1000 is 100? Wait, no, wait the options: a. 300, b. 10, c. 1,000, d. 100. Wait, let's recalculate: \(\frac{30}{300} \times 1000 = \frac{30 \times 1000}{300} = \frac{30000}{300} = 100\). So the birth rate per 1000 is 100.
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d. The breakdown of organic matter by decomposers, releasing ammonia back into the soil