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A kind of nanoporous material which is a potential thermoelectric material is discussed in this paper.
The perturbation of the embedded sensor on the local strain field of host material is discussed.
The strength formation mechanism of this solidified material is discussed also.
The impact of wetted core dislocations on the mechanical behavior of the material is discussed.
The laser-material interaction for different material is discussed based on the significant experimental findings for different materials.
In addition, a procedure for optimally partitioning a vehicle used to collect source-separated material is discussed.
Similar(37)
The effects of solvent, supporting electrolyte, electrode material are discussed.
Modifications of reactors to capitalise on this new material are discussed.
The stress-strain curves, strength and ductility of the UHSS material are discussed.
The considerations leading to the choice of nanocrystalline exchange coupled FePt as best material are discussed.
The effects of side adhesive thickness, material parameters variation and metal material were discussed.
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