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Zain Ali

Researcher at COMSATS Institute of Information Technology

Publications -  115
Citations -  1509

Zain Ali is an academic researcher from COMSATS Institute of Information Technology. The author has contributed to research in topics: Computer science & Engineering. The author has an hindex of 13, co-authored 84 publications receiving 872 citations. Previous affiliations of Zain Ali include University of Veterinary and Animal Sciences & University of Lahore.

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Vertical axis wind turbine-a review of various configurations and design techniques

TL;DR: In this article, the authors reviewed various configurations of VAWT along with their merits and demerits and found that coefficient of power for various configurations is different and can be optimized with reference to Tip Speed Ratio.
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Alteration of the serine protease PRSS56 causes angle-closure glaucoma in mice and posterior microphthalmia in humans and mice.

TL;DR: It is shown that genetic alteration of a previously unidentified serine protease (PRSS56) alters axial length and causes a mouse phenotype resembling ACG, and mutations affecting this protease also cause a severe decrease of axial Length in individuals with posterior microphthalmia, suggesting that alterations of this serine Protease may contribute to a spectrum of human ocular conditions including reduced ocular size and ACG.
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Ultra-selective defect-free interfacially polymerized molecular sieve thin-film composite membranes for H2 purification

TL;DR: In this paper, defect-free thin-film composite membranes were formed demonstrating unprecedented mixed-gas H2/CO2 selectivity of ≈50 at 140 °C with a H2 permeance of 350 GPU, surpassing the upper bound of all known polymer membranes by a wide margin.
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Defect-free highly selective polyamide thin-film composite membranes for desalination and boron removal

TL;DR: In this paper, the authors report the boron and sodium chloride separation properties of truly defect-free, highly selective, interfacially polymerized aromatic polyamide thin-film composite membranes.
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Chloroplast genome sequences of Artemisia maritima and Artemisia absinthium: Comparative analyses, mutational hotspots in genus Artemisia and phylogeny in family Asteraceae.

TL;DR: Chloroplast genome sequences of two further Artemisia species showed high similarities in genome sizes, gene synteny, GC content, synonymous and non-synonymous substitutions, codon usage, amino acids frequencies, RNA editing sites, microsatellites, and oligonucleotide repeats, and maximum likelihood tree showed Artemisia a monophyletic genus.