Showing 221 - 240 results of 870 for search '(farr OR (((farry OR pair) OR harry) OR forms)) 40', query time: 0.17s Refine Results
  1. 221
  2. 222
  3. 223
  4. 224
  5. 225
  6. 226

    Physical and chemical properties of a lipase-transesterified palm stearin/palm kernel olein blend and its isopropanol-solid and high melting triacylglycerol fractions by Chu, B.S., Ghazali, H.M., Lai, O.M., Che Man, Y.B., Yusof, S.

    Published 2002
    “…Transesterification also did not much alter the polymorphic forms of the mixture. However, the HMG fraction of the transesterified mixture had more tendency to form β' crystals than the control. …”
    Get full text
    Article
  7. 227

    Design and implementation of enhanced lightweight memory-based and monostable physical unclonable functions by Zhong, Hui Shu

    Published 2019
    “…The 128-bit monostable PUF prototype chip was fabricated in 40nm CMOS technology. It consumes 14400 µm2 and 17 pJ per bit. …”
    Get full text
    Get full text
    Thesis
  8. 228
  9. 229
  10. 230
  11. 231
  12. 232

    CMOS millimeter-wave transmitter design by Lin, Jiafu

    Published 2016
    “…On-chip compact power combiner with high isolation of 28.3 dB at 40 GHz has also been demonstrated for further development of transmitter. …”
    Get full text
    Thesis
  13. 233
  14. 234
  15. 235

    Nonequilibrium hyperuniform fluids by Lei, Yusheng

    Published 2024
    Get full text
    Thesis-Doctor of Philosophy
  16. 236

    High-performance thermoelectrics from cellular nanostructured Sb2Si2Te6 by Luo, Yubo, Cai, Songting, Hao, Shiqiang, Pielnhofer, Florian, Hadar, Ido, Luo, Zhong-Zhen, Xu, Jianwei, Wolverton, Chris, Dravid, Vinayak P., Pfitzner, Arno, Yan, Qingyu, Kanatzidis, Mercouri G.

    Published 2020
    “…We then devise a unique cellular nanostructure by a post-synthetic reaction strategy that forms in situ Si2Te3 nanosheets, which serve as an effective barrier to heat propagation, yielding an ∼40% reduction in the already very low lattice thermal conductivity to ∼0.29 Wm−1K−1 at 823 K. …”
    Get full text
    Journal Article
  17. 237
  18. 238
  19. 239
  20. 240