Based on your calculations, it is probably not a good idea to consume glucose-6-phosphate instead of glucose because?

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Please solve this problem and also give answer of second MCQ. Thanks

Based on your calculations, it is probably not a good idea to consume glucose-6-phosphate instead of glucose because?
the energy normally produced in the first step of glycolysis is lost.
the delta G' for transport of glucose-6-phosphate is favorable and the delta G' for the transport of glucose is not favorable.
the delta G' for transport of glucose-6-phosphate is not favorable and the delta G' for transport of glucose is favorable.
it is ethically wrong to do so.
Transcribed Image Text:Based on your calculations, it is probably not a good idea to consume glucose-6-phosphate instead of glucose because? the energy normally produced in the first step of glycolysis is lost. the delta G' for transport of glucose-6-phosphate is favorable and the delta G' for the transport of glucose is not favorable. the delta G' for transport of glucose-6-phosphate is not favorable and the delta G' for transport of glucose is favorable. it is ethically wrong to do so.
As you start training for the Tour de France bicycle race you wonder how you can get an unfair metabolic advantage against the competition. What if you substituted glucose-6-
phosphate for the glucose in your diet? That way you would have a head start on the glycolysis pathway and save the molecule of ATP that seems to be wasted to start glycolysis.
You realize that because glucose 6-phosphate has a negative charge (-2) and charges affect the transport of molecules across membranes, you'd better check the math. In light of this
charge difference, calculate the delta G' for entry of glucose-6-phosphate when the temperature is 37°C, and the extracellular concentration of glucose-6-phosphate is 10 fold higher
compared to the concentration of glucose-6-phosphate in the cytoplasm. Assume the membrane potential is -60 mV.
R=1.98*10.3 kcal/mol °K and Faraday's constant is 23 kcal/V mol.
O A. +1.35 kcal/mol
O B. -1.35 kcal/mol
O C. +4.2 kcal/mol
O D. -4.2 kcal/mol
Transcribed Image Text:As you start training for the Tour de France bicycle race you wonder how you can get an unfair metabolic advantage against the competition. What if you substituted glucose-6- phosphate for the glucose in your diet? That way you would have a head start on the glycolysis pathway and save the molecule of ATP that seems to be wasted to start glycolysis. You realize that because glucose 6-phosphate has a negative charge (-2) and charges affect the transport of molecules across membranes, you'd better check the math. In light of this charge difference, calculate the delta G' for entry of glucose-6-phosphate when the temperature is 37°C, and the extracellular concentration of glucose-6-phosphate is 10 fold higher compared to the concentration of glucose-6-phosphate in the cytoplasm. Assume the membrane potential is -60 mV. R=1.98*10.3 kcal/mol °K and Faraday's constant is 23 kcal/V mol. O A. +1.35 kcal/mol O B. -1.35 kcal/mol O C. +4.2 kcal/mol O D. -4.2 kcal/mol
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