16 results on '"Ziman Li"'
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2. Alkylation effects on strong collisions of highly vibrationally excited alkylated pyridines with C[O.sub.2]
3. Trajectory study of supercollision relaxation in highly vibrationally excited pyrazine and CO2
4. Direct determination of collision rates beyond the Lennard-Jones model through state-resolved measurements of strong and weak collisions
5. State-resolved collisional quenching of vibrationally excited pyrazine (Evib=37 900 cm-1) by D35Cl(v=0).
6. Effects of alkylation on deviations from Lennard-Jones collision rates for highly excited aromatic molecules: collisions of methylated pyridines with HOD
7. Collisions of highly vibrationally excited pyrazine ([E.sub.vib] = 37 900 [cm.sup.-1]) with HOD: state-resolved probing of strong and weak collisions
8. Effects of Alkylation on Deviations from Lennard−Jones Collision Rates for Highly Excited Aromatic Molecules: Collisions of Methylated Pyridines with HOD
9. Energy-Dependent Quantum-State-Resolved Relaxation of Highly Vibrationally Excited Pyridine (Evib = 36 990−40 200 cm-1) through Collisions with CO2
10. Direct Determination of Collision Rates beyond the Lennard-Jones Model through State-Resolved Measurements of Strong and Weak Collisions
11. Collisions of highly vibrationally excited pyrazine (E vib = 37,900 cm(-1)) with HOD: state-resolved probing of strong and weak collisions
12. Alkylation effects on strong collisions of highly vibrationally excited alkylated pyridines with CO2
13. Trajectory study of supercollision relaxation in highly vibrationally excited pyrazyne and CO2
14. State-resolved collisional quenching of vibrationally excited pyrazine (Evib=37900cm−1) by D35Cl(v=0)
15. Collisions of Highly Vibrationally Excited Pyrazine (Evib37 900 cm-1) with HOD: State-Resolved Probing of Strong and Weak Collisions.
16. Direct Determination of Collision Rates beyond the Lennard-Jones Model through State-Resolved Measurements of Strong and Weak Collisions.
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