Showing 201 - 220 results of 103,130 for search '"Electronics"', query time: 0.14s Refine Results
  1. 201

    Electron-electron interactions and plasmon dispersion in graphene by Shtyk, A., Feigelman, M., Levitov, Leonid

    Published 2014
    “…Plasmons in two-dimensional electron systems with nonparabolic bands, such as graphene, feature strong dependence on electron-electron interactions. …”
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    Article
  2. 202
  3. 203

    ELECTRON ELECTRON INTERACTIONS IN EXPANDED-METAL COMPOUNDS by Stacy, A, Edwards, P, Sienko, M

    Published 1982
    “…Intermediate, apparently just on the nonmetallic side of the metal-nonmetal transition, is the solid tetrakismethylaminelithium(zero), Li(CH3NH2)4. The electronic behavior of these "expanded-metal" compounds is interpreted in terms of Hubbard bands and Mott-Anderson transitions. …”
    Journal article
  4. 204

    Applications of electronic structure theory in electron microscopy by Naginey, T

    Published 2018
    “…<p>Furthering the integration of theoretical and computational electronic structure methods with electron microscopy techniques is the overarch- ing theme of this thesis. …”
    Thesis
  5. 205
  6. 206

    Stretchable Hydrogel Electronics and Devices by Lin, Shaoting, Yuk, Hyunwoo, Zhang, Teng, Yu, Cunjiang, Zhao, Xuanhe, Parada Hernandez, German Alberto, Koo, Hyun Woo

    Published 2015
    “…Stretchable hydrogel electronics and devices are designed by integrating stretchable conductors, functional chips, drug-delivery channels, and reservoirs into stretchable, robust, and biocompatible hydrogel matrices. …”
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    Article
  7. 207

    Powering Implantable and Ingestible Electronics by Yang, So-Yoon, Sencadas, Vitor, You, Siheng Sean, Jia, Neil Zi-Xun, Srinivasan, Shriya Sruthi, Huang, Hen-Wei, Ahmed, Abdelsalam Elrefaey, Liang, Jia Ying, Traverso, Giovanni

    Published 2022
    “…The state-of-the-art of powering technologies for implantable and ingestible electronics is reviewed here. The structure and power requirements of implantable and ingestible biomedical electronics are described to guide the development of powering technologies. …”
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    Article
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  13. 213

    Physical Electronics and Surface Physics by Sun, P. B., Stickney, Robert E.

    Published 2010
    Subjects: “…Physical Electronics…”
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    Technical Report
  14. 214

    Physical Electronics and Surface Physics by Logan, R. M., Stickney, Robert E.

    Published 2010
    Subjects: “…Physical Electronics…”
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    Technical Report
  15. 215
  16. 216

    Solid-State Microwave Electronics by Rafuse, R. P.

    Published 2010
    Subjects: “…Solid-State Microwave Electronics…”
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    Technical Report
  17. 217
  18. 218

    Solid-State Microwave Electronics by Rafuse, R. P., Steinbrecker, D. H.

    Published 2010
    Subjects: “…Solid-State Microwave Electronics…”
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    Technical Report
  19. 219

    Physical Electronics and Surface Physics by Shupe, D. S., Stickney, Robert E.

    Published 2010
    Subjects: “…Physical Electronics…”
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    Technical Report
  20. 220

    Solid State Microwave Electronics by Rafuse, R. P.

    Published 2010
    Subjects: “…Solid State Microwave Electronics…”
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    Technical Report