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Charged Particle Reflection by a Planar Artificially Structured Boundary With Electrostatic Plugging
This article uses a classical trajectory Monte Carlo simulation to investigate an artificially structured boundary for confinement and control of charged particles.
Date:
November 30, 2017
Creator:
Hedlof, R. M. & Ordonez, Carlos A.
System:
The UNT Digital Library
Fast-Growing SMBHs in Fast-Growing Galaxies, at High Redshifts: The Role of Major Mergers as Revealed by ALMA
This article presents a long-term, multi-wavelength project to understand the epoch of fastest growth of the most massive black holes by using a sample of 40 luminous quasars at z ≃ 4.8.
Date:
September 30, 2017
Creator:
Trakhtenbrot, Benny; Lira, Paulina; Netzer, Hagai; Cicone, Claudia; Maiolino, Roberto & Shemmer, Ohad
System:
The UNT Digital Library
Editorial: Biofuels and Bioenergy
Editorial on the research topic of biofuels and bioenergy.
Date:
November 30, 2020
Creator:
Barros-Rios, Jaime; Zhang, Jin & Lu, Mengzhu
System:
The UNT Digital Library
Dynamic Changes in Transcriptome and Cell Wall Composition Underlying Brassinosteroid‑Mediated Lignification of Switchgrass Suspension Cells
This article provides an overview of the dynamic compositional changes during brassinosteroid-induced cell wall remodeling, and identifies candidate genes for future plant genetic engineering to overcome cell wall recalcitrance.
Date:
August 8, 2017
Creator:
Rao, Xiaolan; Shen, Hui; Pattathil, Sivakumar; Hahn, Michael G.; Gelineo-Albersheim, Ivana; Mohnen, Debra et al.
System:
The UNT Digital Library
Three Component Cascade Reaction of Cyclohexanones, Aryl Amines, and Benzoylmethylene Malonates: Cooperative Enamine-Brønsted Acid Approach to Tetrahydroindoles
Article discusses how a three-component cascade reaction comprising cyclic ketones, arylamines, and benzoylmethylene malonates has been developed to access 4,5,6,7-tetrahydro-1H-indoles. Furthermore, the reaction was achieved through cooperative enamine-Brønsted catalysis in high yields with wide substrate scopes.
Date:
November 30, 2022
Creator:
Vasquez, Jose Cortes; Alharbi, Waad S.; Davis, Jacqkis; Moore, Alexia; Nesterov, Vladimir N.; Cundari, Thomas R., 1964- et al.
System:
The UNT Digital Library
Reconstructing horizontal gene flow network to understand prokaryotic evolution
Article says that horizontal gene transfer (HGT) is a major source of phenotypic innovation and a mechanism of niche adaptation in prokaryotes. Methods for detecting HGT can be classified into phylogenetic-based and parametric or composition-based approaches, so authors exploited the complementary strengths of both the approaches to construct a high confidence horizontal gene flow network. The scale-free horizontal gene flow network presented here provides new insights into modes of transfer for the exchange of genetic information and also illuminates differential gene flow across phyla.
Date:
November 30, 2022
Creator:
Sungupta, Soham & Azad, Rajeev K.
System:
The UNT Digital Library