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transfer using alumina particles compared to the conventional fluid. Das et al. [ 13 ] experimentally studied the effect of adding alumina nanoparticles based water nanofluid on the behavior of the pool-boiling curve and heat transfer coefficient from

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Resolution and Discovery
Authors: G. Z. Radnóczi, Th. Stelzner, V. A. Sivakov, J. Stoimenos, S. H. Christiansen, and B. Pécz

) 14. Knauer A , Thete A , Li S , Romanus H , Csáki A , Fritzsche W , Köhler J : Au/Ag/Au double shell nanoparticles with narrow size distribution obtained by

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non-metallic nanoparticles in the various base fluids to produce “nanofluid”. All categories aimed to improve heat transfer and decrease heat losses by minimizing the thermal boundary condition and increasing the turbulent flow of the fluid flow, which

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nanoparticle size (Figure 5 ), which is supported by the observed elemental composition by the EDS spectrum, confirming carbon as the main element of the composition [ 6 ]. Figure 4. SEM micrographs of peanut shell mixed

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incorporating silica nano-particles: Part I . Construction and Building Materials , 74 , 278 – 286 .

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about nanotechnology: Risks, benefits and trust . Journal of Nanoparticle Research 6 ( 4 ): 395 . [Serial on the Internet, cited December 26, 2015]; Available from: Publisher Provided Full Text Searching File. [7

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-based materials provide a solution to many technological and environmental challenges in different fields, such as water technology, solar energy, catalysis, and medicine [ 6 ]. Nanomaterials could be used in forms of nanoparticles (NPs) or nanocomposites, and

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. , Shishavan S. M. ( 2017 ), Welding properties of polymeric nanocomposite parts containing alumina nanoparticles in friction stir welding process . International Journal of Engineering Transactions A: Basics , 30 ( 1 ), 143 – 151

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Nanopages
Authors: Elena Burakova, Alexandr Melezhyk, Alyona Gerasimova, Evgeny Galunin, Nariman Memetov, and Alexey Tkachev

) Electromagnetic interference shielding efficiency of polyaniline composites filled with graphene decorated with metallic nanoparticles . Compos Sci Technol 80 80 – 86 . [7] Cong

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. Kumar , B. P. Kumar , A. B. V. K. Kumar , B. T. Huy , and Y.-I. Lee , “ Preparation of palladium nanoparticles on alumina surface by chemical co-precipitation method and catalytic applications .” Appl. Surf. Sci. , vol. 265 , pp. 500 – 509

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