(a) Name the type of nutrition exhibited by organisms that carry out photosynthesis - Leaving Cert Biology - Question 11 - 2020
Question 11
(a) Name the type of nutrition exhibited by organisms that carry out photosynthesis.
(b) Write a balanced chemical equation to summarise photosynthesis.
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Worked Solution & Example Answer:(a) Name the type of nutrition exhibited by organisms that carry out photosynthesis - Leaving Cert Biology - Question 11 - 2020
Step 1
Name the type of nutrition exhibited by organisms that carry out photosynthesis.
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Answer
The type of nutrition exhibited by organisms that carry out photosynthesis is autotrophic nutrition. These organisms, such as plants and certain algae, produce their own food using sunlight, carbon dioxide, and water.
Step 2
Write a balanced chemical equation to summarise photosynthesis.
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Answer
The balanced chemical equation for photosynthesis is:
6CO2+6H2OightarrowC6H12O6+6O2
This equation indicates that six molecules of carbon dioxide and six molecules of water, in the presence of light energy, are converted into one molecule of glucose and six molecules of oxygen.
Step 3
What is the role of the stomata in photosynthesis?
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The stomata are small pores located on the surface of leaves that play a crucial role in gas exchange during photosynthesis. They allow the entry of carbon dioxide, which is essential for the synthesis of glucose, and facilitate the release of oxygen as a byproduct of photosynthesis.
Step 4
Which of the labelled part (A, B or C) would you expect to contain the most chloroplasts?
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Answer
Part B of the diagram would contain the most chloroplasts. This is typically where active photosynthesis occurs, as this area is generally rich in chlorophyll — enhancing the plant's ability to capture sunlight.
Step 5
What is the role of the chlorophyll molecules in photosynthesis?
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Answer
Chlorophyll molecules absorb light energy, mainly from the blue and red wavelengths of sunlight. This absorbed energy is essential for converting carbon dioxide and water into glucose and oxygen during the photosynthetic process.
Step 6
What particles are released from chlorophyll during the light dependent stage of photosynthesis?
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Answer
The particles released from chlorophyll during the light dependent stage are electrons (e⁻). These electrons are crucial for creating energy carriers like ATP and NADPH.
Step 7
Give an account of the events of pathway 2.
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In pathway 2, the electrons that are released from chlorophyll are captured by the electron transport chain. Electrons are transported through a series of proteins embedded in the thylakoid membrane. As they move through the chain, they lose energy, which is used to pump hydrogen ions (H⁺) into the thylakoid lumen, creating a proton gradient. This gradient drives ATP synthase to produce ATP from ADP and inorganic phosphate. At the end of the chain, the electrons reduce NADP⁺ to NADPH. Thus, the pathway results in the formation of ATP and NADPH, which are vital energy carriers for the Calvin cycle.
Step 8
Name the 3-carbon molecule which enters the mitochondrion.
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Answer
The 3-carbon molecule which enters the mitochondrion is pyruvate (or pyruvic acid).
Step 9
Name the two products formed when the 3-carbon molecule at (i) above is broken down.
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When pyruvate is broken down, the two products formed are carbon dioxide (CO₂) and acetyl CoA (Acetyl Coenzyme A).
Step 10
Name the series of reactions that take place.
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The series of reactions that take place after pyruvate enters the mitochondrion is known as the Krebs Cycle (or Citric Acid Cycle).
Step 11
Outline the events that take place in the electron transport chain (system).
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In the electron transport chain, high energy electrons are passed along a series of carriers (electrons lose energy as they are transferred). This energy is used to pump protons (H⁺) from the mitochondrial matrix into the intermembrane space, creating a proton gradient. Protons flow back into the matrix through ATP synthase, synthesizing ATP from ADP and inorganic phosphate. Finally, electrons combine with oxygen (the final electron acceptor) and hydrogen ions (H⁺) to form water.
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