Physical Chemistry and Its Biological ApplicationsPhysical Chemistry and Its Biological Applications ... |
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Page 379
... enzyme with temperature . The catalytic activity of enzymes is affected by both pH and tem- perature . There is usually a restricted range of pH in which a particu- lar catalyst is active , and some intermediate pH at which the activity ...
... enzyme with temperature . The catalytic activity of enzymes is affected by both pH and tem- perature . There is usually a restricted range of pH in which a particu- lar catalyst is active , and some intermediate pH at which the activity ...
Page 383
... enzyme reduce the activity of the enzyme ; these substances are referred to as inhibitors . Of course there are circumstances in which a chemical reaction occurs between the added substance and the enzyme that is essentially ...
... enzyme reduce the activity of the enzyme ; these substances are referred to as inhibitors . Of course there are circumstances in which a chemical reaction occurs between the added substance and the enzyme that is essentially ...
Page 397
... enzyme , as well as other dehydrogenases for which NAD - NADH , is a cofactor , the fluorescence of NADH , has been used as an analytical method in the temperature - jump experiment . The enzyme - bound NADH , gives a fluorescence ...
... enzyme , as well as other dehydrogenases for which NAD - NADH , is a cofactor , the fluorescence of NADH , has been used as an analytical method in the temperature - jump experiment . The enzyme - bound NADH , gives a fluorescence ...
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absorption acid activity adsorbed adsorption amino amount behavior benzene Calculate carbon carboxyl cell chain charge Chem chemical chemical shift chloride cm³ coefficient complex components concentration containing corresponding curve described diagram dipole dissociation distance effect electric electrolyte electron enthalpy entropy enzyme equal equation equilibrium constant example force free energy frequency function H₂O heat hydrogen atom hydrogen bonds increase interaction ionic ionization k₂ kcal kinetic magnetic field magnitude material measured membrane mixture molar mole fraction molecular weight molecules nuclei occurs orbital osmotic pressure oxidation oxygen particles polar potential protein proton quantum number radiation rate constant ratio reactant reaction represented resonance rotation sample shown in Figure sodium solid solubility solvent species spectra spectrum spin structure substance substrate sucrose surface tension temperature tion titration torr transition triplet tube vapor pressure velocity vibrational viscosity volume wave wavelength zero