ADP
Two molecules of ATP are consumed in the energy investment phase, while four molecules of ATP and two molecules of NADH are produced in the energy payoff phase. This results in a net gain of two molecules of ATP per molecule of glucose oxidized to pyruvate.
The maximum number of ATP per molecule of glucose is produced during the Kreb's Cycle of cellular respiration.
Glycolysis is a 10 step enzymatically catalyzed reaction which splits up a glucose molecule into two molecules of pyruvate. The process of glycolysis can occur in absence of oxygen. A net yield of 2 ATP is obtained at the end of gylcolysis for every molecule of glucose oxidized.
ATP is an active molecule in cellular processes.
2 ATP are produced in anaerobic respiration(fermentation)
oxidized
Two molecules of ATP are consumed in the energy investment phase, while four molecules of ATP and two molecules of NADH are produced in the energy payoff phase. This results in a net gain of two molecules of ATP per molecule of glucose oxidized to pyruvate.
7
Yes, when a molecule gives up an electron, it becomes ionized because it now has a net positive charge. Additionally, the molecule is oxidized because it loses an electron, which is a defining characteristic of oxidation in chemical reactions.
it becomes weak
This process is called phosphorylation.
When the phosphate group is hydrolyzed from ATP to form ADP (adenosine diphosphate), energy is released and becomes available for cellular processes like muscle contractions or synthesizing molecules.
phosphorilation
The maximum number of ATP per molecule of glucose is produced during the Kreb's Cycle of cellular respiration.
yes it is oxidized substrate reduces itself and oxidize others
it becomes ADP. ATP is adenosine triphosphate, while ADP is adenosine diphosphate.
C6H12O6 + 6O2 --> 6CO2 + 6H2O ( + the energy currency of the cell, ATP synthesis ) This is the equation of cellular respiration where glucose is oxidized and oxygen reduced while 36 ATP are synthesized from every molecule of glucose. ATP does the cell's work and with this energy locked in the bonds of the ATP molecule you could not live a second.