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Pankaj Mishra

Researcher at Indian Institutes of Technology

Publications -  53
Citations -  280

Pankaj Mishra is an academic researcher from Indian Institutes of Technology. The author has contributed to research in topics: Liquid crystal & Density functional theory. The author has an hindex of 8, co-authored 47 publications receiving 228 citations. Previous affiliations of Pankaj Mishra include Central Drug Research Institute & Indian Institute of Technology Dhanbad.

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Study of heat transport by stationary magneto-convection in a Newtonian liquid under temperature or gravity modulation using Ginzburg-Landau model

TL;DR: In this article, a weak nonlinear stability problem of magneto-convection in an electrically conducting Newtonian fluid, confined between two horizontal surfaces, under a constant vertical magnetic field, and subjected to an imposed time-periodic boundary temperature (ITBT) or gravity modulation (ITGM), is considered.
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Perspectives on Inhibiting β-Amyloid Aggregation through Structure-Based Drug Design

TL;DR: This work highlights, update, and elaborate on the structural anatomy of Aβ and known Aβ aggregation inhibitors in hopes of helping to optimize their use in structure‐based drug design approaches toward inhibitors with greater specificity.
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Enhanced frequency upconversion and non-colour tunability in Er3+–Yb3+ codoped TeO2–WO3–Pb3O4 glasses

TL;DR: In this article, a near infrared to visible frequency upconversion (UC) study was performed on a glass codoped with Er3+−Yb3+ ions and the results suggested that the codoped glass may be suitable in making the NIR to visible upconverter and colour non-tunable optical devices.
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Pair correlation functions in nematics: Free-energy functional and isotropic-nematic transition.

TL;DR: A free-energy functional for an inhomogeneous system that contains both symmetry conserved and symmetry broken parts of the direct pair correlation function and predicts accurately the isotropic-nematic transition in a system of anisotropic molecules.
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Pair correlation functions and a free energy functional for the nematic phase.

TL;DR: In this article, the authors presented the calculation of pair correlation functions in a nematic phase for a model of spherical particles with the long-range anisotropic interaction from the mean spherical approximation (MSA) and the Percus-Yevick (PY) integral equation theories.