Electrokinetic trapping of single molecules, and Euler buckling and nonlinear kinking of DNA

Electrokinetic trapping of single molecules, and Euler buckling and nonlinear kinking of DNA

by Alexander Preston Fields

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I present two applications of fluorescence spectroscopy in biophysics. The first is an instrument, the anti-Brownian electrokinetic (ABEL) trap, which is capable of trapping individual small molecules in aqueous solution at room temperature. The second is an investigation of the bending mechanics of double-stranded DNA using a novel DNA structure called a "molecular vise". Both projects take advantage of the sensitivity and specificity of fluorescence spectroscopy, and both benefit from the interplay of experimental work with theoretical and computational modeling.

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