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Multiple Choice
Which of the following sequences correctly represents the flow of electrons during photosynthesis?
A
Photosystem II \( \rightarrow \) H$_2$O \( \rightarrow \) Photosystem I \( \rightarrow \) NADP$^+$
B
NADP$^+$ \( \rightarrow \) Photosystem I \( \rightarrow \) Photosystem II \( \rightarrow \) H$_2$O
C
H$_2$O \( \rightarrow \) Photosystem II \( \rightarrow \) Photosystem I \( \rightarrow \) NADP$^+$
D
Photosystem I \( \rightarrow \) Photosystem II \( \rightarrow \) H$_2$O \( \rightarrow \) NADP$^+$
Verified step by step guidance
1
Step 1: Begin by understanding the process of photosynthesis, specifically the light-dependent reactions where the flow of electrons occurs. These reactions take place in the thylakoid membranes of chloroplasts.
Step 2: Recognize that the source of electrons in photosynthesis is water (H$_2$O). Water molecules are split during photolysis in Photosystem II, releasing electrons, protons, and oxygen.
Step 3: Electrons from water are transferred to Photosystem II, where they are energized by light energy absorbed by chlorophyll pigments. This energy allows the electrons to move through the electron transport chain.
Step 4: The electrons then pass through the electron transport chain to Photosystem I. In Photosystem I, they are re-energized by light energy and used to reduce NADP$^+$ to NADPH, which is an essential molecule for the Calvin cycle.
Step 5: Summarize the correct sequence of electron flow during photosynthesis: H$_2$O → Photosystem II → Photosystem I → NADP$^+$. This sequence reflects the movement of electrons from water to NADP$^+$ via the photosystems.