The succinate dehydrogenase complex couples the oxidation of succinate to the reduction of ubiquinone (Q) according to the following equation. succinate + Q --> fumarate + QH2 Given that E'° for the fumarate/succinate redox pair is + 0.031V and Eº for the Q/QH2 redox pair is + 0.045V, calculate the standard free energy change (A G") for the oxidation of succinate by ubiquinone. Ag° = - 1.35 kJ/mol Ag° = - 2.7 kJ/mol OAG° = - 280 kJ/mol OAG° = + 1.35 kJ/mol Ag° = + 2.7 kJ/mol

Human Anatomy & Physiology (11th Edition)
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The succinate dehydrogenase complex couples the oxidation of succinate to the
reduction of ubiquinone (Q) according to the following equation.
succinate + Q
--> fumarate + QH2
Given that E'° for the fumarate/succinate redox pair is + 0.031V and E'° for the
Q/QH2 redox pair is + 0.045V, calculate the standard free energy change (AG") for
the oxidation of succinate by ubiquinone.
1º = - 1.35 kJ/mol
Ag° = - 2.7 kJ/mol
OAG° = - 280 kJ/mol
OAG° = + 1.35 kJ/mol
%3D
OAG° = + 2.7 kJ/mol
%3D
Transcribed Image Text:The succinate dehydrogenase complex couples the oxidation of succinate to the reduction of ubiquinone (Q) according to the following equation. succinate + Q --> fumarate + QH2 Given that E'° for the fumarate/succinate redox pair is + 0.031V and E'° for the Q/QH2 redox pair is + 0.045V, calculate the standard free energy change (AG") for the oxidation of succinate by ubiquinone. 1º = - 1.35 kJ/mol Ag° = - 2.7 kJ/mol OAG° = - 280 kJ/mol OAG° = + 1.35 kJ/mol %3D OAG° = + 2.7 kJ/mol %3D
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