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Kamaruzzaman Sopian

Researcher at National University of Malaysia

Publications -  1080
Citations -  33829

Kamaruzzaman Sopian is an academic researcher from National University of Malaysia. The author has contributed to research in topics: Photovoltaic system & Solar energy. The author has an hindex of 84, co-authored 989 publications receiving 25293 citations. Previous affiliations of Kamaruzzaman Sopian include Universiti Tenaga Nasional & Universiti Putra Malaysia.

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Key factors of desiccant-based cooling systems: Materials

TL;DR: In this article, the authors present a review of the recent investigations on advanced desiccant materials regarding the improvement of the material properties for Desiccant cooling application, emphasizing other important parameters, such as environmental conditions, cost, and design to achieve optimal performance.
Proceedings ArticleDOI

On the monthly optimum tilt angle of solar panel for five sites in Malaysia

TL;DR: In this paper, an optimization of monthly tilt angle for solar panels for five main sites in Malaysia is conducted based on the Liu and Jordan model for solar energy incident on a tilt surface.
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Performance and financial evaluation of various photovoltaic vertical facades on high-rise building in Malaysia

TL;DR: In this paper, the authors evaluated the potential of vertical photovoltaic facade system on a high-rise building in Malaysia based on five possible design scenario using Heterojunction Intrinsic Thin-film module (HIT-Si) with nominal efficiency of 15.6%.
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Electrocoagulation by solar energy feed for textile wastewater treatment including mechanism and hydrogen production using a novel reactor design with a rotating anode

TL;DR: In this paper, the authors describe the treatment of textile wastewater using a unique design of an electrocoagulation (EC) reactor with a rotating anode, and the effects of various operational parameters such as rotational speed of the anode and recirculation flow rate, operational time (RT) and continuous flow regime on the efficiency of pollutant removal in terms of chemical oxygen demand (COD) and colour were examined.
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Enhancing the Performance of PV Panel Undergoing Shading Effects

TL;DR: In this paper, the effects of full cell shading were studied experimentally for each configuration of two or four bypass diodes and verified by theoretical modeling, and the I-V and P-V curves for all cases were recorded to investigate the effect of bypassdiodes in reducing shading losses under similar environmental conditions.