photosynthesis lab review. photosynthesis plants, algae, and some bacteria convert light energy into...

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Photosynthesis Lab Review

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Page 1: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Photosynthesis Lab Review

Page 2: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Photosynthesis• Plants, algae, and some bacteria convert light

energy into chemical energy that is stored in sugars

• Chlorophyll is the primary pigment in chloroplasts

Page 3: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Plant Pigment Chromatography

• Paper chromotography is used to separate a mixture into its component molecules

• The different molecules move up the paper at different rates because of differences in:– Solubility, molecular

mass, and hydrogen bonding with the paper

Page 4: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

• You separated plant pigments using an organic solvent (acetone)

Page 5: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Analysis of Results

• Movement of pigment relative to movement of solvent is a constant, Rf (Reference front)

• Rf = distance pigment moved/distance solvent moved

Page 6: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Photosynthesis—Light Reactions• Light energy excites electrons in plant pigments• Boosts them to

a higher energy state

• High energy electrons reduce electron acceptors in the thylakoid membrane

• Energy is captured in NADPH & ATP

Page 7: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

DPIP as an Electron Acceptor

• You measured rate of electron excitation when light hits chlorophyll

• DPIP is an electron acceptor• As DPIP is reduced, it changes from blue to

colorless• To measure the color change, you used a

spectrophotometer– Measures amount of light absorbed or transmitted

by the sample

Page 8: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Design of the Experiment

Page 9: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Results• As

chlorophyll’s electrons are exited, they reduce the DPIP, and the sample becomes more and more pale, and the transmittance increases

Page 10: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Cellular Respiration Lab• Occurs in every cell of all living things• Mitochondria• Nutrients (sugars) convert ADP to ATP• ATP used for all cellular activities that require

energy• C6H12O6 + 6O2 -------->

6CO2 + 6H2O + ~38 ATP

Page 11: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Design of the Experiment

• You measured amount of oxygen consumed by peas using a respirometer

Page 12: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Design of the Experiment

Page 13: Photosynthesis Lab Review. Photosynthesis Plants, algae, and some bacteria convert light energy into chemical energy that is stored in sugars Chlorophyll

Results– temp = respiration– germination = respiration