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Cellular Respiratio n

Cellular Respiration. Photosynthesis Exergonic Reactions

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Page 1: Cellular Respiration. Photosynthesis Exergonic Reactions

Cellular Respiration

Page 2: Cellular Respiration. Photosynthesis Exergonic Reactions

Photosynthesis

Page 3: Cellular Respiration. Photosynthesis Exergonic Reactions

Exergonic Reactions

Page 4: Cellular Respiration. Photosynthesis Exergonic Reactions

ATP

Page 5: Cellular Respiration. Photosynthesis Exergonic Reactions

Fermentation

Page 6: Cellular Respiration. Photosynthesis Exergonic Reactions

EndergonicReactions

Page 7: Cellular Respiration. Photosynthesis Exergonic Reactions

Chemosynthesis

Page 8: Cellular Respiration. Photosynthesis Exergonic Reactions

Lactic AcidFermentation

Page 9: Cellular Respiration. Photosynthesis Exergonic Reactions

AlcoholicFermentation

Page 10: Cellular Respiration. Photosynthesis Exergonic Reactions

Aerobic Respiration

Page 11: Cellular Respiration. Photosynthesis Exergonic Reactions

AnaerobicRespiration

Page 12: Cellular Respiration. Photosynthesis Exergonic Reactions

Enzymes

Page 13: Cellular Respiration. Photosynthesis Exergonic Reactions

Heterotroph

Page 14: Cellular Respiration. Photosynthesis Exergonic Reactions

Autotroph

Page 15: Cellular Respiration. Photosynthesis Exergonic Reactions

Reactants

Page 16: Cellular Respiration. Photosynthesis Exergonic Reactions

Products

Page 17: Cellular Respiration. Photosynthesis Exergonic Reactions

Process where food molecules

are converted to energy

Page 18: Cellular Respiration. Photosynthesis Exergonic Reactions

Plant cells capture energy from the sun

and convert into food (carbohydrates)

Page 19: Cellular Respiration. Photosynthesis Exergonic Reactions

Molecule that stores and

releases energy when bonds are

created or broken

Page 20: Cellular Respiration. Photosynthesis Exergonic Reactions

Occurs in the absence of oxygen to produce

ATP until oxygen becomes available

again

Page 21: Cellular Respiration. Photosynthesis Exergonic Reactions

Form of fermentation that

occurs in plant cells

Page 22: Cellular Respiration. Photosynthesis Exergonic Reactions

Form of fermentation that occurs in muscle

cells

Page 23: Cellular Respiration. Photosynthesis Exergonic Reactions

Form of respiration that requires the presence of oxygen and releases

energy from the breakdown of glucose

Page 24: Cellular Respiration. Photosynthesis Exergonic Reactions

Form of respiration that occurs in the absence of

oxygen and releases only a small amount of energy;

often called fermentation

Page 25: Cellular Respiration. Photosynthesis Exergonic Reactions

Consumer organism that gets its energy through cellular respiration

Page 26: Cellular Respiration. Photosynthesis Exergonic Reactions

Producer organism that gets its energy

through photosynthesis

Page 27: Cellular Respiration. Photosynthesis Exergonic Reactions

Process in which organisms capture

energy from breaking down sulfur or

nitrogen compounds

Page 28: Cellular Respiration. Photosynthesis Exergonic Reactions

Protein structures that regulate

biochemical reactions by acting as catalysts

Page 29: Cellular Respiration. Photosynthesis Exergonic Reactions

Chemical substance formed as the result

of a chemical reaction

Page 30: Cellular Respiration. Photosynthesis Exergonic Reactions

Substance that is the starting material

before a chemical change

Page 31: Cellular Respiration. Photosynthesis Exergonic Reactions

Chemical reactions that release energy

Page 32: Cellular Respiration. Photosynthesis Exergonic Reactions

Chemical reactions that require a net

input of energy