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In this way, the energy released by the exergonic reaction can be partially harnessed to drive the endergonic one.
Even if a reaction is exergonic (energy-releasing), it may not proceed if its activation energy is too high.
In this strongly exergonic reaction, the high-energy phosphate of PEP is conserved as ATP.
The changes of mechanical power are supported by a sequence of exergonic processes that over the last decades have been the subject of extensive research in biochemistry and biophysics.
With its highly exergonic free energy change, the flow of electrons through Complex I is more than adequate to drive ATP synthesis.
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