1 |
State-to-state differential cross sections for spin-multiplet-changing collisions of NO(X (2)Pi(1/2)) with argon Elioff MS, Chandler DW Journal of Chemical Physics, 117(14), 6455, 2002 |
2 |
Methylation effects in state resolved quenching of highly vibrationally excited azabenzenes (E-vib similar to 38 500 cm(-1)). I. Collisions with water (vol 115, pg 6990, 2001) Elioff MS, Fang M, Mullin AS Journal of Chemical Physics, 117(14), 6880, 2002 |
3 |
Energy-dependent quantum-state-resolved relaxation of highly vibrationally excited pyridine (E-vib=36 990-40 200 cm(-1)) through collisions with CO2 Park J, Li ZM, Lemoff AS, Rossi C, Elioff MS, Mullin AS Journal of Physical Chemistry A, 106(15), 3642, 2002 |
4 |
Methylation effects in state resolved quenching of highly vibrationally excited azabenzenes (E-vib similar to 38500 cm(-1)). I. Collisions with water Elioff MS, Fang M, Mullin AS Journal of Chemical Physics, 115(15), 6990, 2001 |
5 |
Vibrational energy gain in the v(2) bending mode of water via collisions with hot pyrazine (E-vib=37900 cm(-1)): Insights into the dynamics of energy flow Elioff MS, Sansom RL, Mullin AS Journal of Physical Chemistry A, 104(45), 10304, 2000 |
6 |
Observation of an energy threshold for large Delta E collisional relaxation of highly vibrationally excited pyrazine (E-vib = 31000-41000 cm(-1)) by CO2 Elioff MS, Wall MC, Lemoff AS, Mullin AS Journal of Chemical Physics, 110(12), 5578, 1999 |
7 |
State-resolved collisional quenching of highly vibrationally excited pyridine by water: The role of strong electrostatic attraction in V -> RT energy transfer Elioff MS, Fraelich M, Sansom RL, Mullin AS Journal of Chemical Physics, 111(8), 3517, 1999 |
8 |
State-resolved studies of collisional quenching of highly vibrationally excited pyrazine by water : The case of the missing V -> RT supercollision channel Fraelich M, Elioff MS, Mullin AS Journal of Physical Chemistry A, 102(48), 9761, 1998 |