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The final electron acceptor for the electron transport chain of aerobic respiration is which of the following?
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
In the Kreb\\\'s cycle, production of ATP requires
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
Glycolysis yields
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
For each molecule of glucose entering glycolysis, there is a net gain of
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
During glycolysis, NADH is formed when hydrogen atoms are transferred to an electron acceptor called
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
To maximise ATP production, glycolsis must be followed by
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
ATP releases energy when
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
Which of the following is NOT part of cellular respiration?
2 ATP
Calvin Cycle
the Kreb\\\'s cycle
the bonds between phsophate groups are broken
NAD+
2 pyruvic acid molecules 2 NADH molecules and 4 ATP molecules
all of the choicesq
oxygen
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