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Titlebook: High-Entropy Materials: Theory, Experiments, and Applications; Jamieson Brechtl,Peter K. Liaw Book 2021 Springer Nature Switzerland AG 202

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High-Entropy Ceramics,prise multicomponent ceramic compounds such as metallic oxides, nitrides, or carbides, whose large configurational entropies contribute to the formation of high-entropy ceramics. Despite the complex structure of ceramic compounds, high-entropy ceramics possess a homogeneous, crystalline, single-phas
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Serrated Flow in Alloy Systems,c strain localizations. This phenomenon, which uncovers an inherently collective nature of the dynamics of crystal defects, is well known for conventional alloys. Surprisingly, despite the particular microstructure of HEAs, which strongly impacts the microscopic dynamics of defects, not only the HEA
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Radiation Damage in Concentrated Solid-Solution and High-Entropy Alloys, candidates as structural materials for advanced nuclear applications. To fulfill this potential, HEAs need to be designed with explicit principles and need to demonstrate robust performance under harsh radiation environments at elevated temperatures. This chapter reviews recent advances in the fund
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Baldur Steingrimsson,Xuesong Fan,Anand Kulkarni,Michael C. Gao,Peter K. Liawen a notable improvement in the level of several toxic metals in different environments as well as soils due to industrial usage (anthropogenic activities) and causing a severe affair to plants and human health as well. Plants growing in such a contaminated environment show a decrease in plant growt
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