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Shamshad A. Khan

Researcher at St. Andrew's College, Aurora

Publications -  81
Citations -  1668

Shamshad A. Khan is an academic researcher from St. Andrew's College, Aurora. The author has contributed to research in topics: Thin film & Amorphous solid. The author has an hindex of 22, co-authored 70 publications receiving 1178 citations. Previous affiliations of Shamshad A. Khan include King Abdulaziz University & University of St Andrews.

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Emerging contaminants of high concern for the environment: Current trends and future research

TL;DR: An overview of emerging sources of contaminants, detection technologies, and treatment strategies can be found in this article , where the authors evaluate adsorption as a method for treating emerging pollutants, as well as sophisticated and cost-effective approaches for treatment emerging contaminants.
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Effect of cadmium addition on the optical constants of thermally evaporated amorphous Se-S-Cd thin films

TL;DR: In this paper, measurements of optical constants (absorption coefficient, refractive index, extinction coefficient, real and imaginary part of the dielectric constant) have been made on Se 75 S 25− x Cd x (where x ǫ = 0, 2, 4, 6 and 8) thin films of thickness 3000 A as a function of photon energy in the wave length range 400-1000nm.
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Technologies for municipal solid waste management: Current status, challenges, and future perspectives

Shamshad A. Khan
- 01 Feb 2022 - 
TL;DR: Wang et al. as discussed by the authors examined municipal solid waste in eight of China's eastern coastal regions and found that MSW generation is increasing in Shandong, Guangdong, Zhejiang, and Fujian provinces, but declining in other eastern coastal cities, provinces, and special zones.
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Technologies for municipal solid waste management: Current status, challenges, and future perspectives.

TL;DR: Wang et al. as mentioned in this paper examined municipal solid waste in eight of China's eastern coastal regions and found that MSW generation is increasing in Shandong, Guangdong, Zhejiang, and Fujian provinces, but declining in other eastern coastal cities, provinces, and special zones.
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On the crystallization kinetics of amorphous Se80In20−xPbx

TL;DR: In this paper, the thermal crystallization behavior of bulk amorphous semiconducting Se80In20−xPbx (x=0, 2, 6 and 10) glasses has been studied by differential scanning calorimetry (DSC) using non-isothermal measurement with different heating rates.