Debasish Das
University of Strathclyde, University Of Strathclyde, University of California San Diego, University of Illinois at Urbana-Champaign College of Engineering, National Institute of Technology Rourkela
About
I am a Lecturer in Applied Mathematics at Strathclyde University (equivalent to assistant professor). Previously, I was a research associate in the Biological Physics & Mechanics group at Department of Applied Mathematics and Theoretical Physics, located in picturesque Cambridge. I was also a member of the postdoctoral society at Trinity College, Cambridge.
On a broad level, my interest lies in decoding the mysteries of nature fuelled by curious observation. Specifically, these include problems in complex fluids, microfluidics, multiphase flows, electrohydrodynamics, active matter, microorganisms locomotion. Most of my work is motivated by simple observations in nature or experiments in laboratory that can be explained by the help of applied mathematics and numerical simulations.
You can find more details of my work in the research and publications page. Please feel free to drop me an email for potential collaborations, discussing interesting projects and ideas or if you have any comments on my research work. Email : [email protected]
Employment
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University of Strathclyde Chancellor's Fellow2020 - Present
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University of Cambridge Department of Applied Mathematics and Theoretical Physics Research Associate2016 - 2020
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University Of Strathclyde
Education
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University of California San Diego Ph.D.2014 - 2016
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University of Illinois at Urbana-Champaign College of Engineering MS2010 - 2013
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National Institute of Technology Rourkela B-Tech2005 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- Nonlinear electrohydrodynamics of a surfactant-laden leaky dielectric drop Save
- Rolling at right angles: Magnetic anisotropy enables dual-anisotropic active matter Save
- Cilia dynamics create a dynamic barrier to penetration of the periciliary layer in human airway epithelia Save
- Nonlinear three-dimensional electrohydrodynamic interactions of viscous dielectric drops Save
- Hydrodynamic hovering of swimming bacteria above surfaces Save
- Flow field disturbance due to point viscosity variations in a heterogeneous fluid Save
- Influence of surface viscosities on the electrodeformation of a prolate viscous drop Save
- On the absence of collective motion in a bulk suspension of spontaneously rotating dielectric particles Save
- Surprising hydrodynamics of bacteria near surfaces Save
- A three-dimensional small-deformation theory for electrohydrodynamics of dielectric drops Save