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Muhammad Irfan

Researcher at Najran University

Publications -  928
Citations -  10675

Muhammad Irfan is an academic researcher from Najran University. The author has contributed to research in topics: Medicine & Biology. The author has an hindex of 36, co-authored 646 publications receiving 6333 citations. Previous affiliations of Muhammad Irfan include Pakistan Council of Scientific and Industrial Research & American University of Sharjah.

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Mechanical Pressure Characterization of CNT-Graphene Composite Material.

TL;DR: CNT-graphene composite-based piezoresistive pressure samples in the form of pellets with different weight percentages of CNTs were fabricated and characterized, showing a decrease in the direct current (DC) resistance with the increase in external uniaxial applied pressure.
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A Secure Communication in IoT Enabled Underwater and Wireless Sensor Network for Smart Cities.

TL;DR: The novel routing protocol, namely Time Based Reliable Link (TBRL), for dynamic topology is proposed to support smart city and is compared with other well known routing protocols, i.e., Depth Based Routing (DBR) and Reliable Energy-efficient Routing Protocol (R-ERP2R), to check the performance in terms of end to end delay, packet delivery ratio, and energy consumption of a network.
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Bioethanol Production Optimization from KOH-Pretreated Bombax ceiba Using Saccharomyces cerevisiae through Response Surface Methodology

TL;DR: In this article , a study was conducted on the production of bioethanol from alkali-pretreated seed pods of Bombax ceiba, and the results showed that the maximum saccharification (58.6% after 24 hours) and highest ethanol titer (57.34 g/L after 96 hours) were observed in the KOH-steam-treated substrate in SSF.
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Sustainable harnessing of the surface water resources for Karachi: a geographic review

TL;DR: In this article, the authors reviewed various published research articles and reports regarding water resources, supply, and demand in the city of Karachi, and proposed a comprehensive city development master plan for future growth of the city with clearcut priorities, policies, and implementation framework.
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The effect of saturation magnetization of nanocatalyst and oscillating magnetic field for green urea synthesis

TL;DR: In this paper, Hematite and cupric oxide nanowires were obtained by the oxidation of an iron wire at a temperature of 650°C and ambient pressure in the presence of N 2 and O 2 gases.