World Scientific Publishing
2047-685X
4-issues-year
1.4
2047-6841
2012
6563385595
United Kingdom
English
YES
Google Scholar
editor@wspc.com
The objective of the journal is the publication and wide electronic dissemination of innovative and consequential research in all aspects computational materials science and engineering, featuring the most advanced mathematical modeling and numerical methodology developments. It will aim to attract and solicit high-quality original research papers in all aspects of computational materials science and engineering with special emphasis on the most current topics of interest to the associated research communities. The journal will also serve as an effective platform for the promotion of scientific exchange between active materials scientists and engineers. The journal aims to promote international exchange of new knowledge and recent developments in all aspects of computational materials science and engineering, featuring the most advanced mathematical modeling and numerical methodology developments. It includes all classes of materials (metals, polymers, ceramics, composites, biomaterials, nanomaterials, etc.) and their structures (functional solids, soft matter, multiphase materials, coatings, etc.). Of specific interest are the underlying physics and chemistry governing the functional elements of the materials, and these functions include (but are not limited to) structural, electronic, thermal, chemical, magnetic, optical, or a combination of any of these. Although the analytical and numerical analyses of these materials' functional elements will constitute the main highlights of this journal, important computational studies of others aspects will also be welcome, such as imperfections in materials and their resulting limitations, novel processes for advanced materials synthesis, engineering of material properties, environmental consideration in material performance, etc.
The influence of different shapes of nanoparticles on peristaltic flow of Casson fluid in an asymmetric channel is studied in this paper. The suspension of Copper oxide nanoparticles of need...
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