Lewandowski Group Theses
Lewandowski Group Theses
2024
G.C. Geschwind, Development, Validation, and Initial Outcomes of a Research-Based Assessment Instrument Probing Students’ Proficiency With Measurement Uncertainty, ¶¶Òõ´«Ã½ÔÚÏß, 2024.
Ìý
2023
O.A. Krohn, Cold, Ion-Neutral, Chemical Reactions in Coulomb Crystals With Thermal Neutral Sources and Progress Towards Stark-Decelerated Sources, University of Colorado, 2023.
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2022
J.M. Gray, Measurement of Cold Molecular Collisions Between Co-Trapped OH and Rb, ¶¶Òõ´«Ã½ÔÚÏß, 2022.
Ìý
2020
J.. Greenberg, Cold, Controlled, Ion-Molecule Reactions, ¶¶Òõ´«Ã½ÔÚÏß, 2020.
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2018
Y.. Shyur, Stark Deceleration Methods for Cold Molecule Experiments, ¶¶Òõ´«Ã½ÔÚÏß, 2018.
Ìý
C.J.E. Straatsma, Infrared Spectroscopy of Buffer-Gas Cooled Molecules and Dynamics of Bose Gases in Spherical Symmetry, ¶¶Òõ´«Ã½ÔÚÏß, 2018.
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2017
M.I. Fabrikant, Toward Cold Radical Chemistry With Cryogenic Buffer Gas Beams, ¶¶Òõ´«Ã½ÔÚÏß, 2017.
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2015
D.S. Lobser, Observation of a Persistent Non-Equilibrium State in an Extremely Isotropic Harmonic Potential, ¶¶Òõ´«Ã½ÔÚÏß, 2015.
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T.C. Briles, Production, Deceleration, and Detection of OH Radicals, ¶¶Òõ´«Ã½ÔÚÏß, 2015.
Ìý
2013
Traveling-Wave Stark-Decelerated Molecular Beams For Cold-Collision Experiments
N.. Fitch, Traveling-Wave Stark-Decelerated Molecular Beams For Cold-Collision Experiments, University of Colorado, 2013.
Ìý
2010
L.P. Parazzoli, Electric-Field Affected Low-Energy Collisions Between Co-Trapped Ammonia and Rubidium, ¶¶Òõ´«Ã½ÔÚÏß, 2010.