27 results on '"Katō, Toshiko"'
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2. Transition state dynamics of N2O4⇌2NO2 in liquid state
3. Molecular dynamics simulation of liquid N2O4⇌2NO2 by orientation-sensitive pairwise potential. III. Reaction dynamics
4. Molecular dynamics simulation of liquid N2O4⇌2NO2 by orientation-sensitive pairwise potential. II. Vibrational dephasing of the dissociation mode
5. Molecular dynamics simulation of liquid N2O4⇌2NO2 by orientation-sensitive pairwise potential. I. Chemical equilibrium
6. Nonequilibrium unimolecular dissociation influenced by intramolecular vibrational energy redistribution
7. Phase space bottlenecks and rates of no‐barrier fragmentation reactions into polyatomic molecules
8. Transition state and dynamics of unimolecular no‐barrier fragmentation: Thermal dissociation of N2O4
9. Molecular dynamics of thermal dissociation in liquid N2O4
10. Cation dependence of the ionic dynamics in computer simulated molten nitrates
11. Molecular motion and vibrational dephasing in a model of liquid N2O4
12. Vibrational dephasing in computer simulated molten LiNO3
13. Ionic dynamics in computer simulated molten LiNO3. III. Effect of the potential well on the translational and reorientational motions
14. Homogeneous and inhomogeneous vibrational dephasing processes in aqueous thiocyanate solutions
15. Vibrational dephasing by bonding interaction in liquids
16. Raman study of vibrational dephasing process in aqueous nitrate solutions
17. Raman study of rotational motion and vibrational dephasing dynamics of NO3-in molten nitrates
18. Vibrational line broadening in molten nitrate mixtures: A static model for the coordination number and concentration fluctuations
19. Dynamics of SCN-ions in molten thiocyanates and aqueous solutions by Raman spectroscopy
20. Ionic dynamics in computer simulated molten LiNO3. I. Translational and reorientational motion
21. Ionic dynamics in computer simulated molten LiNO3. II. Tumbling and spinning motions of nitrate ions
22. Raman spectral studies of the dynamics of ions in molten LiNO3–RbNO3 mixtures. I. Rotational relaxation
23. Raman spectral studies of the dynamics of ions in molten LiNO3–RbNO3 mixtures. II. Vibrational dephasing: Roles of fluctuations of coordination number and concentration
24. Raman study of vibrational and rotational dynamics of thiocyanate anion in aqueous solutions
25. Optical Activity of Iron Group Selenate Crystals. II. Theoretical Analysis
26. Optical Activity of Iron Group Selenate Crystals. I. Experimental Studies
27. Optical Activity Caused by Exciton Dispersion
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