Density functional theory (B3LYP quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) CI (CIS quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Transition state theory (RRKM quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Excited singlet state (S1 quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Isotope effect (deuterium quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Polyenes Role: CPS (Chemical process), PEP (Physical, engineering or chemical process), PRP (Properties), RCT (Reactant), PROC (Process), RACT (Reactant or reagent) (diphenylpolyenes quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Vibrational frequency (excited state and reaction coordinate quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Isomerization (photoisomerization, adiabatic cis-trans quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Isomerization kinetics (photoisomerization, cis-trans quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) AM1 Ab initio methods Activation energy Basis sets Normal modes Potential barrier Transition state structure Zero point energy (quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) Isotopomers Role: CPS (Chemical process), PEP (Physical, engineering or chemical process), PRP (Properties), RCT (Reactant), PROC (Process), RACT (Reactant or reagent) (quant. representation of specific rate consts. k(E) for photoisomerization of diphen Potential energy hypersurface (reaction coordinate quant. representation of specific rate consts. k(E) for photoisomerization of diphenylpolyenes) quant representation specific rate const photoisomerization diphenylpolyene
«