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Source · ThetaWave · PDF · Photosynthesis: follow the energy and the carbonPractice questions
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Original photosynthesis handout · 3 pages

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Photosynthesis: follow the energy and the carbon

Page 1 of 3

A map of the chloroplast

A leaf makes organic molecules using light energy, water, and carbon dioxide. In plant cells, photosynthesis takes place in chloroplasts. Carbon dioxide enters leaves through stomata: pores that also allow water vapor to escape.

Inside a chloroplast, thylakoids are membrane sacs. Chlorophyll in their membranes absorbs light; it does not supply the carbon in sugars. The stroma is the fluid around the thylakoids. Keep these two locations separate when tracing the reactions.

Track two paths through the next pages: energy moves from light into ATP and NADPH, then into organic molecules; carbon moves from CO₂ into organic molecules. Oxygen released by photosynthesis comes from water.

Page 2 of 3

Light reactions: water to energy carriers

Light-dependent reactions operate at the thylakoid membrane. Light excites electrons in photosystems. Splitting water replaces electrons lost from photosystem II and releases H⁺ and oxygen (O₂). The released oxygen is not made by splitting CO₂.

Electron transport helps build a high concentration of H⁺ inside the thylakoid. H⁺ flows back toward the stroma through ATP synthase. This flow powers ATP production. If the gradient collapses, this route of ATP production decreases.

The light reactions also reduce NADP⁺ to NADPH. ATP supplies energy and NADPH supplies reducing electrons to the Calvin cycle. Neither ATP nor NADPH supplies the carbon skeleton of the new organic molecules.

Page 3 of 3

The Calvin cycle: carbon into G3P

The Calvin cycle takes place in the stroma. During carbon fixation, the enzyme Rubisco joins CO₂ to RuBP, an existing five-carbon molecule. The carbon added to the cycle therefore comes from CO₂, not from sunlight.

ATP and NADPH support the conversion of the fixed carbon into G3P, a three-carbon molecule. Some G3P is a net output that can help build sugars; the rest is used to regenerate RuBP. The cycle does not directly release a finished glucose molecule each turn.

Light-independent means that the Calvin cycle does not directly absorb photons. It still relies on ATP and NADPH supplied by light reactions. It is not a process that must occur only at night or that can continue indefinitely without those supplies.

This is an authored and reviewed example using the PDF below. To study your own material, sign in and upload your PDF in ThetaWave.

Original ThetaWave learning handout and reviewed practice. Scientific references: OpenStax Biology 2e, sections 8.1–8.3.

Scientific references

Practice questionsPhotosynthesis sample
Question 1 of 8 · Source Page 2 · Light reactions: water to energy carriers: Which chloroplast structure hosts the light-dependent reactions?

Practice Quiz

Question 1 of 8 · Source Page 2 · Light reactions: water to energy carriers

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Which chloroplast structure hosts the light-dependent reactions?

All questions and explanations
  1. 1. Which chloroplast structure hosts the light-dependent reactions?

    Answer: Thylakoid membrane

    Photosystems and the electron-transport machinery sit in the thylakoid membrane. The stroma hosts the Calvin cycle.

    Page 2 · Light reactions: water to energy carriers

  2. 2. A plant releases O₂ during photosynthesis. Which molecule supplied those oxygen atoms?

    Answer: Water

    Water splitting releases oxygen and supplies replacement electrons to photosystem II. Carbon dioxide supplies carbon for organic molecules.

    Page 2 · Light reactions: water to energy carriers

  3. 3. Which pair transfers energy and reducing electrons from light reactions to the Calvin cycle?

    Answer: ATP and NADPH

    ATP supplies energy; NADPH supplies reducing electrons. CO₂ supplies carbon instead of acting as this energy-carrier pair.

    Page 2 · Light reactions: water to energy carriers

  4. 4. Where does the Calvin cycle take place in a plant chloroplast?

    Answer: Stroma

    The stroma is the fluid surrounding the thylakoids and the site of the Calvin cycle. Stomata are pores in the leaf.

    Page 3 · The Calvin cycle: carbon into G3P

  5. 5. What is the source of the new carbon incorporated during carbon fixation?

    Answer: CO₂

    Rubisco incorporates CO₂ into the cycle. Light provides energy, while ATP and NADPH help process the fixed carbon.

    Page 3 · The Calvin cycle: carbon into G3P

  6. 6. Which molecule is a net carbon output of the Calvin cycle that can help build sugars?

    Answer: G3P

    Some three-carbon G3P leaves the cycle to support sugar synthesis. Other G3P regenerates RuBP; glucose is not its immediate output each turn.

    Page 3 · The Calvin cycle: carbon into G3P

  7. 7. Why does ‘light-independent’ not mean that the Calvin cycle works only at night?

    Answer: It uses ATP and NADPH but does not directly absorb photons.

    The term describes the absence of direct photon absorption. The cycle still needs the energy and reducing power supplied by light reactions.

    Page 3 · The Calvin cycle: carbon into G3P

  8. 8. The H⁺ gradient across a thylakoid membrane collapses. Which process is most directly reduced?

    Answer: ATP production powered by H⁺ flow through ATP synthase

    ATP synthase uses H⁺ flowing down its gradient. Removing that gradient reduces this source of energy for ATP production.

    Page 2 · Light reactions: water to energy carriers

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