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Archives

D. A. V. Kliner, K. D. Rinnen, and R. N. Zare, “The D + H2 Reaction: Comparison of Experiment with Quantum-Mechanical and Quasiclassical Calculations,”Chem. Phys. Lett. 166, 107-111 (1990).

D. A. V. Kliner, K. D. Rinnen, and R. N. Zare, “The D + H2 Reaction: Comparison of Experiment with Quantum-Mechanical and Quasiclassical Calculations,”Chem. Phys. Lett. 166, 107-111 (1990).
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M. J. Bronikowski and R. N. Zare, “Simple Model for L-Doublet Propensities in Bimolecular Reactions,”Chem. Phys. Lett. 166, 5-10 (1990).

M. J. Bronikowski and R. N. Zare, “Simple Model for L-Doublet Propensities in Bimolecular Reactions,”Chem. Phys. Lett. 166, 5-10 (1990).
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D. A. V. Kliner and R. N. Zare,”D + H2 (v=1,J=1): Rovibronic State to Rovibronic State Reaction Dynamics,”J. Chem. Phys. 92, 2107-2109 (1990).

D. A. V. Kliner and R. N. Zare,”D + H2 (v=1,J=1): Rovibronic State to Rovibronic State Reaction Dynamics,”J. Chem. Phys. 92, 2107-2109 (1990).
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K. D. Rinnen, D. A. V. Kliner, and R. N. Zare, “The H + D2 Reaction: Quantum-State Distributions at Collision Energies of 1.3 and 0.55 eV,”J. Chem. Phys. 91, 7514-7529 (1989).

K. D. Rinnen, D. A. V. Kliner, and R. N. Zare, “The H + D2 Reaction: Quantum-State Distributions at Collision Energies of 1.3 and 0.55 eV,”J. Chem. Phys. 91, 7514-7529 (1989).
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R. Zenobi, J. M. Philippoz, P.R. Buseck, and R. N. Zare, “Spatially Resolved Organic Analysis of the Allende Meteorite,”Science 246, 1026-1029 (1989).

R. Zenobi, J. M. Philippoz, P.R. Buseck, and R. N. Zare, “Spatially Resolved Organic Analysis of the Allende Meteorite,”Science 246, 1026-1029 (1989).
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K. D. Rinnen, D. A. V. Kliner, R. N. Zare, and W. M. Huo,”Quantitative Determination of HD Internal State Distributions via (2+1) REMPI,”Israel J. Chem. 29, 369-382 (1989).

K. D. Rinnen, D. A. V. Kliner, R. N. Zare, and W. M. Huo,”Quantitative Determination of HD Internal State Distributions via (2+1) REMPI,”Israel J. Chem. 29, 369-382 (1989).
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C. H. Kuo, C. G. Beggs, P. R. Kemper, M. T. Bowers, D. J. Leahy, and R. N. Zare, “Experimental Measurement of the Radiative Lifetime of NO+(X 1Σ+,v=1, 2 and 3),”Chem. Phys. Lett. 163, 291-296 (1989).

C. H. Kuo, C. G. Beggs, P. R. Kemper, M. T. Bowers, D. J. Leahy, and R. N. Zare, “Experimental Measurement of the Radiative Lifetime of NO+(X 1Σ+,v=1, 2 and 3),”Chem. Phys. Lett. 163, 291-296 (1989).
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V. P. Burolla, S. L. Pentoney, Jr., and R. N. Zare, “High-Performance Capillary Electrophoresis,”American Biotech. Lab. 7, 20-26 (1989).

V. P. Burolla, S. L. Pentoney, Jr., and R. N. Zare, “High-Performance Capillary Electrophoresis,”American Biotech. Lab. 7, 20-26 (1989).
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D. C. Jacobs, K. W. Kolasinski, R. J. Madix,and R. N. Zare, “Rotational Alignment of NO from Pt(111): Inelastic Scattering and Molecular Desorption,”J. Chem. Soc., Faraday Trans. 2 85, 1325-1335 (1989).

D. C. Jacobs, K. W. Kolasinski, R. J. Madix,and R. N. Zare, “Rotational Alignment of NO from Pt(111): Inelastic Scattering and Molecular Desorption,”J. Chem. Soc., Faraday Trans. 2 85, 1325-1335 (1989).
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A. C. Kummel, G. O. Sitz, R. N. Zare, and J.C. Tully, “Direct Inelastic Scattering of N2 from Ag(111). IV: Scattering from High Temperature Surface,”J. Chem. Phys. 91, 5793-5801 (1989).

A. C. Kummel, G. O. Sitz, R. N. Zare, and J.C. Tully, “Direct Inelastic Scattering of N2 from Ag(111). IV: Scattering from High Temperature Surface,”J. Chem. Phys. 91, 5793-5801 (1989).
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