Results 201 to 210 of about 12,195,298 (384)
In this study, exciting new bi‐/multi‐linear elastic behavior of soft elastic composites that accompany the activation of wrinkling in the embedded interfacial layers is analyzed. The new features and performance of these composite materials, including dramatic enhancements in energy storage, can be tailored by the concentration of interfacial layers ...
Narges Kaynia+2 more
wiley +1 more source
Comments on Power-Frequency Limitations of Solid-State Devices [PDF]
F. K. Manasse
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ErB4 and NdB4 nanostructured powders are produced by mechanochemical synthesis. 5 h mechanical alloying and 4 M HCl acid leaching are used in the production. ErB4 and NdB4 powders exhibit maximum magnetization of 0.4726 emu g−1 accompanied with an antiferromagnetic‐to‐paramagnetic phase transition at about TN = 18 K and 0.132 emu g−1 with a maximum at ...
Burçak Boztemur+5 more
wiley +1 more source
Direct observation of the interplay between stacking polytypes and self-intercalation in epitaxial Nb1+xSe2 films [PDF]
Wang Hongguang+11 more
doaj +1 more source
Structural Analysis of Valine Residues in Silk Fibroin by Solid-State NMR. [PDF]
Mizushima M+4 more
europepmc +1 more source
The Mechanical Properties of Dispersed "Wax-Clay" Sy stems in Solid State
Shigeru Mochida, Katsunori Homma
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Electron Spin Resonance in Solid State Samples of Phenothiazine and Oxazine Dyes. [PDF]
Carl Lagercrantz+5 more
openalex +1 more source
The stability criteria affecting the formation of high‐entropy alloys, particularly focusing in supersaturated solid solutions produced by mechanical alloying, are analyzed. Criteria based on Hume–Rothery rules are distinguished from those derived from thermodynamic relations. The formers are generally applicable to mechanically alloyed samples.
Javier S. Blázquez+5 more
wiley +1 more source
Novel Sulfide-Chloride Solid-State Electrolytes with Tunable Anion Ratio for Highly Stable Solid-State Sodium-Ion Batteries. [PDF]
Dong ZL+15 more
europepmc +1 more source
SOLID STATE DIVISION ANNUAL PROGRESS REPORT FOR PERIOD ENDING AUGUST 31, 1959
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