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Published in Journal of Materials Research, 2020
Recommended citation: Rau, Aaditya, Chakrabarty, Kallol, Gullion, William, Baker, Paul A., Bikmukhametov, Ilias, Martens, Richard, Thompson, Gregory B., Catledge, Shane A. (2020). "A Diffusion Approach for Plasma Synthesis of Superhard Tantalum Borides." Journal of Materials Research. 35(481-490).
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Published in Frontiers in Physics, 2022
Recommended citation: Rau, Aaditya, Jubin, Sierra, Vella, Joseph R., Kaganovich, Igor D. (2022). "Simulations of Graphite Boronization: A Molecular Dynamics Study of Amorphization Resulting from Bombardment." Frontiers in Physics. 10(933494).
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Published in Frontiers in Physics, 2022
Recommended citation: Rau, Aaditya, Jubin, Sierra, Vella, Joseph R., Kaganovich, Igor D. (2022). "Simulations of Graphite Boronization: A Molecular Dynamics Study of Amorphization Resulting from Bombardment." Frontiers in Physics. 10(933494).
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Published in Mechanics of Materials, 2024
Recommended citation: Rau, Aaditya, Schuh, Christopher A., and Radovitzky, Raul. (2024). "Quantification of Elastic Incompatibilities at Triple Junctions via Physics-Based Surrogate Models." Mechanics of Materials. 199(105163).
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Published in Icarus, 2025
Recommended citation: Rulko, Theo A., Rau, Aaditya, Chomette, Gregoire, Wheeler, Lorien, Mathias, Donovan, Dotson, Jessie and Radovitzky, Raul. (2025). "Stress analysis of asteroids during atmospheric entry and implications for the breakup criterion." Icarus. 434(116526).
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Published in Journal of Computational Physics, 2025
Recommended citation: Rau, Aaditya and Pickard, Daniel. (2025). "The Baker Campbell-Hausdorff Formula Accelerates Constitutive Updates." Journal of Computational Physics. 540(114256).
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Undergraduate course, JHU, School of Engineering, 2020
Course for freshman and sophomore level students to illustrate core programming concepts and familiarity with the MATLAB software.
Undergraduate course, JHU, Department of Mechanical Engineering, 2020
Laboratory course for sophomore-level students to illustrate the concepts learned in the thermodynamics course: efficiency, heat engines, etc., as well as technical writing.
Undergraduate course, JHU, Department of Mechanical Engineering, 2021
Laboratory course for junior-level students which illustrates the core concepts of fluid mechanics of relevance to mechanical engineering, e.g. Bernoulli’s principle, flow over airfoils, flow through pipes, etc.
Undergraduate course, JHU, Department of Mechanical Engineering, 2022
Course on principles of structural mechanics for sophomores, covering structural theories, basic theories of failure, fatigue
Undergraduate course, MIT, Department of Aeronautics and Astronautics, 2023
Course on structural and continuum mechanics for sophomore-level students.