When glucose, C 6 H 1 2 O 1 1 , is metabolized to CO 2 and H 2 O in living systems, the first step is the conversion of glucose to glucose-6-phosphate. glucose + H 3 PO 4 → glucose-6-phosphate + H 2 O Δ G ° = 13.4 kJ This nonspontaneous reaction can be made to proceed by coupling it with the hydrolysis of ATP. ATP + H 2 O → ADP + H 3 PO 4 Δ G ° = − 31.0 kJ (a) Write an equation for the coupled reaction and calculate ΔG °. (b) Estimate the number of moles of ATP required to convert glucose to glucose-6-phosphate.
When glucose, C 6 H 1 2 O 1 1 , is metabolized to CO 2 and H 2 O in living systems, the first step is the conversion of glucose to glucose-6-phosphate. glucose + H 3 PO 4 → glucose-6-phosphate + H 2 O Δ G ° = 13.4 kJ This nonspontaneous reaction can be made to proceed by coupling it with the hydrolysis of ATP. ATP + H 2 O → ADP + H 3 PO 4 Δ G ° = − 31.0 kJ (a) Write an equation for the coupled reaction and calculate ΔG °. (b) Estimate the number of moles of ATP required to convert glucose to glucose-6-phosphate.
Solution Summary: The author explains the Gibbs free energy, G, which governs the spontaneity of a chemical reaction.
When glucose, C6H12O11, is metabolized to CO2 and H2O in living systems, the first step is the conversion of glucose to glucose-6-phosphate.
glucose
+
H
3
PO
4
→
glucose-6-phosphate
+
H
2
O
Δ
G
°
=
13.4
kJ
This nonspontaneous reaction can be made to proceed by coupling it with the hydrolysis of ATP.
ATP
+
H
2
O
→
ADP
+
H
3
PO
4
Δ
G
°
=
−
31.0
kJ
(a) Write an equation for the coupled reaction and calculate ΔG°. (b) Estimate the number of moles of ATP required to convert glucose to glucose-6-phosphate.
Definition Definition Transformation of a chemical species into another chemical species. A chemical reaction consists of breaking existing bonds and forming new ones by changing the position of electrons. These reactions are best explained using a chemical equation.
in the scope of the SCH4U course! please show all steps as im still learning how to format my answers in the format given, thank you!
help me solve this HW
Molecules of the form AH2 can exist in two potential geometries: linear or bent. Construct molecular orbital diagrams for linear and bent CH2. Identify the relevant point group, include all of the appropriate symmetry labels and pictures, and fill in the electrons. Which geometry would you predict to be more stable, and why? (Please draw out the diagram and explain)
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