Course review

C1.3 Photosynthesis

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Learning objective

C1.3.1—Light energy → chemical energy

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• Photosynthesis converts light energy into chemical energy in carbon compounds • Photoautotrophs use chlorophyll in chloroplasts or cyanobacterial membranes

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Learning objective

C1.3.2—CO₂ → glucose

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• Carbon dioxide is reduced to carbohydrate using hydrogen from water • Glucose represents the main stored product, though many compounds are synthesized

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Learning objective

C1.3.3—Oxygen as by-product

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• Oxygen is released from photolysis of water, not directly from CO₂ • Oxygenic photosynthesis occurs in plants, algae, and cyanobacteria

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Learning objective

C1.3.4—Photosynthetic pigment separation

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• Paper chromatography separates chlorophylls and accessory pigments • Rf values compare pigment movement relative to solvent front

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Learning objective

C1.3.5—Absorption of specific wavelengths

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• Chlorophyll and accessory pigments absorb specific wavelengths • Absorbed light excites electrons for light-dependent reactions

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Learning objective

C1.3.6—Absorption vs. action spectra

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• Absorption spectra show wavelengths absorbed by pigments • Action spectra show wavelengths most effective for photosynthesis rate

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Learning objective

C1.3.7—Limiting factors investigation

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• Light intensity, CO₂ concentration, and temperature can limit photosynthesis • Investigations change one variable and estimate rate from O₂ production or CO₂ uptake

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Learning objective

C1.3.8—CO₂ enrichment experiments

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• CO₂ enrichment tests whether increased CO₂ raises photosynthesis or growth • Greenhouse and FACE experiments compare realistic crop and ecosystem responses

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