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The X-ray fluorescence radiation of materials is of considerable practical interest.
Electric conductivity in ceramics, as in most materials, is of two types: electronic and ionic.
Superelasticity in nanoscale materials is of profound fundamental interest.
Thus, the design and exploration of effective EM wave absorption materials is of basic scientific importance1,2,3.
Insight in fundamental electron transport properties in these materials is of utmost importance for further practical developments.
In engineering, prevention of failure of materials is of cardinal importance.
Elaborate design of high-performance anode materials is of vital significance for lithium-ion batteries (LIBs).
Thus, self-healing of the affected cementitious materials is of great importance.
Therefore, the optimization of synthetic processes for such materials is of great importance.
The efficient treatment of such waste materials is of ever growing environmental concern.
Nuclear security: Remote and efficient detection of clandestine nuclear materials is of ever-growing importance for security.
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CEO of Professional Science Editing for Scientists @ prosciediting.com