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Nanoengineering requires transformational research and technologies in several areas that necessitate understanding of the nanoscale phenomena and processes using direct measurements and simulations. Computational modeling in nanoengineering is highly interdisciplinary with a potential to enhance the nanotechnology field from an empirical science to a quantitative engineering field. Computational...
Molecular level interactions and accessibility to binding site play a critical role in efficacy of biosensors. Details on the orientation and location of binding of a biomarker to a bioreceptor can be obtained through computational modeling and analysis. In the present paper, Molecular Dynamics (MD) was used to model the and understand the molecular interaction within a aptamer based sensor using...
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