The more substrate the faster the rate of reaction up to a point where it levels out. Basically the enzymes and substrates bounce around until they meet the substrate that the enzyme can catalyse so obviously with more substrate there's more chance of he enzyme bumping into the right substrate
Hypotonic and hypertonic describe the concentration of the solute.
solvent
solute
During the pay-off phase of glycolysis.During the Krebs phase, ATP is produced directly by substrate-level phosphorylation. ATP stands for adenosine triphosphate.
equilibrium is reaching that state of equal concentration. isotonic is how you describe the cell that has equal concentration.
As the substrate concentration increases so does the reaction rate because there is more substrate for the enzyme react with.
Substrate-level phosphorylation can best be describe as the direct transfer of phosphate from one substrate to another. Oxidative phosphorylation is different from substrate level phosphorylation is that it generates ATP by using a proton motive force.
Based on Michaelis-Menten enzyme kinetics, the initial rate of reaction, vi, is dependent on maximum rate Vmax, substrate concentration [S], and the enzyme's Michaelis constant Km, which represents the the tendency of the substrate/enzyme complex to dissociate. The dependence on enzyme concentration is factored into the maximum rate. The equation to describe this is: vi = Vmax([S]/(Km+[S])) Follow the link below for details.
Hypotonic and hypertonic describe the concentration of the solute.
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Describe the relationship between mass and weight.
The concentration.
solvent
The increase of enzyme concentration increase the rate of reaction. Given a fixed amount of substrates, it means that the substrates will be digested faster as there are more enzymes to do the work. Substrate concentration, temperature, and pH value of the surrounding where the enzymes work on also affects the rate.
Diffusion.
describe each of the characters and their relationship with one another?
solute