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Muhammad Kaleem Khosa

Researcher at Government College University, Faisalabad

Publications -  71
Citations -  807

Muhammad Kaleem Khosa is an academic researcher from Government College University, Faisalabad. The author has contributed to research in topics: Partial molar property & Apparent molar property. The author has an hindex of 13, co-authored 64 publications receiving 534 citations. Previous affiliations of Muhammad Kaleem Khosa include Government College University & Quaid-i-Azam University.

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Cyclopalladated and cycloplatinated benzophenone imines: antitumor, antibacterial and antioxidant activities, DNA interaction and cathepsin B inhibition.

TL;DR: The antitumor, antibacterial and antioxidant activity, DNA interaction and cathepsin B inhibition of cyclo-ortho-palladated and -platinated compounds and its preparation, characterization, and X-ray crystal structure are reported.
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Eco-Friendly Isolation Of Colorant From Arjun Bark For Dyeing Of Bio-Mordanted Cotton Fabric

TL;DR: The worldwide demand has been raised to use natural dyes in all applied fields of life due to their environmental-friendly and therapeutic nature as discussed by the authors, and microwave rays as an eco-fri...
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Solution behaviour and sweetness response of d-Mannitol at different temperatures

TL;DR: The apparent molar isentropic compressibility and hydration number conferred pre-dominance of solute-solvent interactions, whereas partial molar expansibility and related standards predicted structure making behaviour of DM.
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Efficiency of Aluminum and Iron Electrodes for the Removal of Heavy Metals [(Ni (II), Pb (II), Cd (II)] by Electrocoagulation Method

TL;DR: In this article, the authors investigated the efficiency of electro-coagulation in combination with aluminum and iron electrodes for removal of heavy metals from wastewater using Atomic Absorption Spectroscopy (AAS).
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Preparation of hydroxyethyl cellulose/halloysite nanotubes graft polylactic acid-based polyurethane bionanocomposites

TL;DR: The mechanical testing suggested that H NTs/HLAC/PU bionanocomposites have higher values of tensile strength and % elongation with only 0.3-0.5 wt% contents of HNTs that suggested the potential applications of elastomers at economic cost.