C6H12O6 + 6 O2 > 6 CO2 + 6 H2O + Energy
In the overall equation for cellular respiration above, it is clear that this reaction is__A__because energy is a product of this reaction which results in a__B__ ΔG. This suggests that this reaction will be__C__within a biological system which means that it can occur on its own. In addition to the energetics, we are able to tell that entropy__D__as this reaction proceeds because there is more__E__in the products than in the reactants. During the course of this reaction, we observe the organic carbon molecules of glucose being broken apart into individual inorganic carbons of CO2 making this reaction a(n)__F__reaction. The energy released from the bonds is used to produce ATPand we see oxygen__G__in this reaction as it forms water. In forming ATP, we will phosphorylate ADP in a reaction that requires an investment of at least 7.3 kcal/mol. This energy input requirement allows us to characterize the phosphorylation as a(n) __H__ reaction.
Choose the term that most appropriately fills in each letter blank in the paragraph:
i. Endergonic
ii. Hydrogen
iii. Electrons
iv. Enthalpy
v. Catabolic
vi. Oxidized
vii. Spontaneous
viii. Exergonic
ix. Entropy
x. Non-spontaneous
xi. Activation energy
xii. Increases
xiii. Decreases
xiv. Order
xv. Exothermic
xvi. Free Energy
xvii. Heat
xviii. Positive
xix. Reduced
xx. Negative
xxi. Energized
xxii. Anabolic
xxiii. Chaos
xxiv. Endothermic
xxv. Potential Energy
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C6H12O6 + 6 O2 > 6 CO2 + 6 H2O + Energy
In the overall equation for cellular respiration above,...
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