Lesson 3.5.4.1
3.5.4.1 Carbon and nitrogen cycles Quiz: AQA Biology, Unit 5
20 questions
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Lesson 3.5.4.1, Carbon and nitrogen cycles: 20 multiple choice questions for the AQA Biology (7402), Unit 5: Energy transfers in and between organisms, written with Revision Ninja.
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The 20 questions
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Which process removes carbon dioxide from the atmosphere in the carbon cycle?
- Denitrification
- Photosynthesis
- Respiration
- Combustion
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Which process converts atmospheric nitrogen gas into compounds that organisms can use?
- Decomposition by fungi only
- Nitrogen fixation
- Ammonification
- Denitrification
-
Which process converts nitrates into nitrogen gas?
- Nitrification
- Ammonification
- Denitrification
- Nitrogen fixation
-
What is ammonification?
- Bacteria converting nitrate into nitrogen gas
- Decomposers converting nitrogen-containing compounds, such as proteins and urea, into ammonia
- Plants absorbing nitrogen as nitrogen gas
- Conversion of ammonia into nitrates in the soil
-
What is nitrification?
- Fixation of nitrogen gas in root nodules
- Breakdown of glucose to ethanol
- Oxidation of ammonium ions to nitrite and then to nitrate
- Reduction of nitrate to nitrogen gas
-
What role do saprobionts play in nutrient cycles?
- They produce oxygen in photosynthesis
- They fix nitrogen gas from the atmosphere
- They store carbon as fossil fuel
- They decompose dead matter and release mineral ions back into the soil
-
How do mycorrhizae help plants?
- They fix carbon dioxide into sugars in the leaves
- They make plants resistant to all herbivores
- They convert nitrate directly into oxygen
- They increase the uptake of water and inorganic ions by plant roots
-
A waterlogged soil has very little oxygen. Which nitrogen process is most likely to increase?
- Nitrogen fixation by aerobic bacteria
- Denitrification
- Aerobic decomposition
- Nitrification
-
Which sequence correctly shows nitrogen moving from organic matter back to nitrogen gas?
- Denitrification, then nitrification, then ammonification
- Nitrogen fixation, then denitrification, then ammonification
- Ammonification, then nitrification, then denitrification
- Nitrification, then ammonification, then denitrification
-
Why is nitrate important for plants?
- It is needed for the light-dependent reaction only
- It is used to make amino acids and therefore proteins
- It is stored in the xylem as oxygen
- It is the main energy store used in respiration
-
Which process releases carbon dioxide back to the atmosphere from dead organic matter?
- Nitrogen fixation
- Respiration by saprobionts
- Photosynthesis by producers
- Denitrification
-
Which feature is shared by the carbon cycle and the nitrogen cycle?
- Both involve living organisms that recycle elements through the ecosystem
- Neither involves decomposers
- Both occur only in the sea
- Both depend on the Krebs cycle to fix nitrogen
-
Which combustion process adds carbon dioxide to the atmosphere?
- Nitrogen fixation in legume nodules
- Photolysis in chloroplasts
- Denitrification in waterlogged soil
- Burning of fossil fuels
-
Which best describes nitrogen fixation?
- Conversion of nitrate into nitrogen gas
- Oxidation of ammonia to nitrite
- Release of ammonia from urea by decomposers
- Conversion of atmospheric nitrogen gas into ammonia or related compounds usable by organisms
-
If decomposers stopped working in an ecosystem, what would be the most likely result?
- Photosynthesis would stop at once in every plant
- Fossil fuels would form more quickly
- Nutrients would remain locked in dead matter, and nitrates and carbon dioxide would not be released for plant use
- Nutrients would be released faster into the atmosphere
-
A plot with mycorrhizal fungi shows higher phosphate uptake by plants than a plot without them. What is the best explanation?
- The fungi make phosphate in the leaves by photosynthesis
- The fungi remove carbon dioxide from the soil
- The fungi increase the surface area for uptake of inorganic ions such as phosphate
- The fungi stop nitrogen fixation in the roots
-
Which statement best explains why nutrients are described as recycled rather than used up?
- Nutrients are created by photosynthesis from light energy
- Nutrients are constantly removed from the ecosystem as oxygen
- Nutrients are never used by living organisms
- Decomposers and other organisms return elements to the soil or atmosphere, so they can be taken up again
-
Which statement about the carbon cycle is correct?
- Carbon leaves the ecosystem permanently in every reaction
- Carbon moves between the atmosphere, living organisms and dead matter
- Carbon is found only in the nitrogen cycle
- Carbon is fixed only by bacteria
-
Why are bacteria important in the nitrogen cycle?
- They replace the need for fertilisers entirely
- They are the only producers in ecosystems
- They carry out nitrogen fixation, nitrification and denitrification
- They make oxygen in photosynthesis
-
A plant grows in soil where no nitrogen-fixing bacteria are present. Which nitrogen source must it rely on?
- Carbon dioxide converted to nitrates by the roots
- Nitrogen gas taken directly from the air by the leaves
- Nitrates and ammonium ions from the soil
- Oxygen released by decomposers
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