Showing 761 - 780 results of 2,670 for search '((((pinnae OR pinna) OR ping) OR (((pone OR pore) OR fine) OR supine)) OR (pings OR pin))', query time: 0.19s Refine Results
  1. 761
  2. 762

    An RF energy harvester by Wang, Chao

    Published 2017
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    Final Year Project (FYP)
  3. 763
  4. 764
  5. 765
  6. 766

    Personalised video by Seah, Kai Ler

    Published 2018
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    Final Year Project (FYP)
  7. 767
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  11. 771

    Effect of inorganic fillers on the behaviour of LCP blends by Zhang, Long

    Published 2008
    “…In this study, a fine fumed silica powder filled polypropylene (PP) composite was blended with LC5000, a thermotropic liquid crystalline polymer (TLCP).…”
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    Thesis
  12. 772

    Short film: tomorrow by Chin, Yong Leong

    Published 2016
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    Final Year Project (FYP)
  13. 773
  14. 774

    Cubed by Xue, En Ge

    Published 2017
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    Final Year Project (FYP)
  15. 775

    Molecular Self‐Assembly Enables Tuning of Nanopores in Atomically Thin Graphene Membranes for Highly Selective Transport by Jang, Doojoon, Bakli, Chirodeep, Chakraborty, Suman, Karnik, Rohit

    Published 2024
    “…Circumventing these constraints, here, a platform technology is developed that harnesses the ability of oppositely charged polyelectrolytes to self-assemble preferentially across larger, relatively leaky atomically thin nanopores by exploiting the lower steric hindrance of such larger pores to molecular interactions across the pores. …”
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    Article
  16. 776

    Tailoring Metal–Organic Frameworks for Water Harvesting by Oppenheim, Julius Jacob

    Published 2024
    “…Chapter 4 further explores these insights, with a focus on the observation that ions contained within the framework pore can greatly increase the hydrophilicity of a framework. …”
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    Thesis
  17. 777

    Elucidation of thermally induced internal porosity in zinc oxide nanorods by Handoko, Albertus D., Liew, Laura-Lynn, Lin, Ming, Sankar, Gopinathan, Du, Yonghua, Su, Haibin, Dong, Zhili, Goh, Gregory Kia Liang

    Published 2020
    “…In situ electron microscopy, tomography, photoluminescence, and X-ray absorption spectroscopy were utilized to monitor and explain the formation and growth of internal pores within ZnO nanorods. Careful examination using electron microscopy and tomography indicate that nanosized internal pores start appearing within the individual solution-grown ZnO nanorods upon exposure to 200 °C. …”
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    Journal Article
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