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Nisar Muhammad

Researcher at University of Peshawar

Publications -  19
Citations -  205

Nisar Muhammad is an academic researcher from University of Peshawar. The author has contributed to research in topics: Chemistry & Band gap. The author has an hindex of 4, co-authored 8 publications receiving 76 citations. Previous affiliations of Nisar Muhammad include Nanyang Technological University & Gomal University.

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Effect of biochars on bioaccumulation and human health risks of potentially toxic elements in wheat (Triticum aestivum L.) cultivated on industrially contaminated soil.

TL;DR: The BCs (especially 800BC5) were recommended for reducing bioaccumulation of PTEs in different parts of the wheat plant, increasing growth and yield of wheat crop and decreasing human health risks via consumption of wheat grains.
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Hydrochemical properties of drinking water and their sources apportionment of pollution in Bajaur agency, Pakistan

TL;DR: In this paper, the authors investigated the hydrochemical characteristics and quality assessment of drinking water (groundwater) in the Bajaur agency, Federally Administrator Tribal Areas (FATA), Pakistan.
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Assessment of industrial wastewater for potentially toxic elements, human health (dermal) risks, and pollution sources: A case study of Gadoon Amazai industrial estate, Swabi, Pakistan.

TL;DR: In this paper, industrial wastewater and groundwater were comparatively investigated for their physicochemical properties, concentrations of potentially toxic elements (PTEs), human health risks and pollution source(s), every month, 34 wastewater samples and 26 groundwater samples were collected, for a duration of one year.
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Assessment of Drinking Water Sources for Water Quality, Human Health Risks, and Pollution Sources: A Case Study of the District Bajaur, Pakistan

TL;DR: In this paper, the authors assess the quality of different drinking water sources, impacts of poor water quality on human health, and to apportion pollution source(s) of the district Bajaur, Pakistan.
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Temperature Sensing Performance of ScVO4: Eu3+ phosphors by Employing Ground State Thermal Coupling Approach

TL;DR: In this paper , the temperature sensing ability of ScVO4:2% Eu3+ phosphor synthesized successfully through a high-temperature solid-state reaction has been explored by employing the ground state thermal coupling approach.