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Saleh A. Al-Farraj

Researcher at King Saud University

Publications -  220
Citations -  3163

Saleh A. Al-Farraj is an academic researcher from King Saud University. The author has contributed to research in topics: Biology & Phylogenetic tree. The author has an hindex of 24, co-authored 193 publications receiving 2171 citations.

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Integrative Studies on Three Epibiotic Epistylis Species (Protozoa, Ciliophora, Peritrichia) in Lake Weishan Wetland, Northern China, Including the Establishment of a New Species.

TL;DR: Foissner et al. as mentioned in this paper investigated three epibiotic Epistylis species based on their living morphology, infraciliature, and small subunit (SSU) rDNA sequence data.
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Redescriptions of Two Poorly Known Marine Suctorian Ciliates, Ephelota truncata Fraipont, 1878 and Ephelota mammillata Dons, 1918 (Protozoa, Ciliophora, Suctoria), from Qingdao, China

TL;DR: Two poorly known marine suctorian ciliates, Ephelota truncata Fraipont and E. mammillata Dons, collected from the coastal waters off Qingdao, China, were investigated using both live observations and protargol impregation methods.
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Evaluation of Mechanical Properties of Sisal and Bamboo Fibres Reinforced with Polymer Matrix Composites Prepared by Compression Moulding Process

TL;DR: In this paper, an epoxy-based composite with bamboo and sisal fiber reinforcement is examined and the effect of adding bamboo fiber and Sisal fiber in various weight percentages on the mechanical behaviour of composites is investigated.
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Taxonomy of Three Oxytrichids (Protozoa, Ciliophora, Hypotrichia), With Establishment of the New Species Rubrioxytricha guangzhouensis spec. nov.

TL;DR: Foissner et al. as mentioned in this paper investigated the 18S rRNA gene sequences of two oxytrichid ciliates collected from China, Oxytricha lithofera Foissner, 2016 and R. haematoplasma sensu Chen et al., 2015, and established a new species, Rubrioxy tricha guangzhouensis, which corresponds well with the type population.
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Solvothermal synthesis of CoMoO4 nanostructures for electrochemical applications

TL;DR: In this paper, the specific capacitance of prepared electrodes was estimated and obtained the high specific capacity of 561 F/g, 768 F /g, and 1039 F/ g, respectively.