G
Guo-Wei Wei
Researcher at Michigan State University
Publications - 328
Citations - 16850
Guo-Wei Wei is an academic researcher from Michigan State University. The author has contributed to research in topics: Persistent homology & Solvation. The author has an hindex of 63, co-authored 320 publications receiving 12992 citations. Previous affiliations of Guo-Wei Wei include University of British Columbia & University of Houston System.
Papers
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Decoding Asymptomatic COVID-19 Infection and Transmission.
TL;DR: It is revealed that asymptomatic infection is linked to SARS-CoV-2 11083G>T mutation (i.e., L37F at nonstructure protein 6 (NSP6) and that NSP6 mutation L37f may have compromised the virus's ability to undermine the innate cellular defense against viral infection via autophagy regulation.
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Controlling wake turbulence.
B.S.V. Patnaik,Guo-Wei Wei +1 more
TL;DR: A control strategy for taming the wake turbulence behind a cylinder and it is shown that the base suction, wake formation length, absolute instability, and the Kármán vortex street are effectively controlled by the angular momentum injection.
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Tailoring wavelets for chaos control.
TL;DR: Wavelet controlled dynamics is introduced as a new paradigm of dynamical control and it is found that by modifying a tiny fraction of the wavelet subspaces of a coupling matrix, it could dramatically enhance the transverse stability of the synchronous manifold of a chaotic system.
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A note on the numerical solution of high-order differential equations
Y. Wang,Ye Zhao,Guo-Wei Wei +2 more
TL;DR: In this paper, the use of fictitious points as additional unknowns is proposed in the implementation of locally supported Lagrange polynomials, which can be regarded as a local adaptive differential quadrature method.
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Variational approach for nonpolar solvation analysis
TL;DR: The present work defines the solvent-solute boundary via the variation of the nonpolar solvation free energy via the governing Laplace-Beltrami equation, which supports the validity of the proposed nonp polar solvation model.