Showing 181 - 200 results of 1,252 for search '("rapping" OR ("mapping" OR (("wramping" OR "trapping") OR "mapping")))', query time: 0.19s Refine Results
  1. 181
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    Enhancing Landsat image based aboveground biomass estimation of black locust with scale bias-corrected LiDAR AGB map and stratified sampling by Qin, Shuhong, Wang, Hong, Li, Xiuneng, Gao, Jay, Jin, Jiaxin, Li, Yongtao, Lu, Jinbo, Meng, Pengyu, Sun, Jing, Song, Zhenglin, Donev, Petar, Ma, Zhangfeng

    Published 2023
    “…In this study, we first corrected the bias arising from upscaling the LG-AGB map to match the spatial resolution of Landsat observations. …”
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    Journal Article
  3. 183

    Dynamic trapping and manipulation of biological cells with optical tweezers by Sun, Dong, Hu, Songyu., Cheah, Chien Chern, Li, Xiang

    Published 2014
    “…Therefore, the optical trapping fails when the cell is initially located far away from the laser beam or escapes from the optical trap during manipulation. …”
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    Journal Article
  4. 184

    Blind quantum computing with trapped ions and single photons by Drmota, P

    Published 2023
    Subjects: “…Trapped ions…”
    Thesis
  5. 185

    Dna markers and mapping of quantitative trait loci for yield and bunch quality in Deli dura X Yangambi pisifera oil palm (Elaeis guineensis) population by Seng, Tzer Ying

    Published 2015
    “…A total 804 segregating marker loci (489 SSRs, 307 AFLPs and 8 PCR-RFLP) were used for final linkage analysis and map construction. The map of DA41 (ARK86D X ML161P) was 2398.8 cM long with 512 marker loci (368 SSRs, 135 AFLPs and 9 PCR-RFLPs), at an average 32 markers and a range of 15-59 markers per linkage group, and an average map density of 5cM. …”
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    Thesis
  6. 186
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    Surface Friction and Spectroscopic Probes of New Physics with Trapped Ions by Counts, Ian T.

    Published 2024
    “…To trap a single ion under vacuum is to control a microscopic, isolated quantum laboratory. …”
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    Thesis
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    Numerical model and experimental investigation on the optical trapping of microsphere sample by Muhammad Haer Jam Hari.

    Published 2012
    “…As such this project was designed to study one of the technologies developed since the early ‘80s by Arthur Ashkin; the optical trapping system which is now widely commercially available and often used in the study and field of biomedicine and bioengineering. …”
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    Final Year Project (FYP)
  11. 191

    Numerical study of trapped vortex combustors characteristics in small ramjets by Chen, Song

    Published 2016
    “…The results show that the optimal cavity size that traps a vortex inside can be determined by calculating the drag coefficient. …”
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    Thesis
  12. 192

    Microfluidic metamaterial sensor: Selective trapping and remote sensing of microparticles by Shih, Kailing, Pitchappa, Prakash, Manjappa, Manukumara, Ho, Chong Pei, Singh, Ranjan, Lee, Chengkuo

    Published 2017
    “…We experimentally demonstrate the integration of a microfluidic trap array on top of metamaterial resonators for size selective trapping and remote sensing of microparticles. …”
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    Journal Article
  13. 193
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    Multi-trap energy states in GaN HEMTs : characterization and modeling by Binit Syamal, Zhou, Xing, Chiah, Siau Ben

    Published 2020
    “…The DC trap model is extended to capture the effect of MTE levels. …”
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    Conference Paper
  15. 195

    Aspects of the management of cheetahs, Acinonyx jubatus jubatus, trapped on Namibian farmlands by Marker, L, Dickman, AJ, Mills, M, Macdonald, D

    Published 2003
    “…We examined cheetahs that were reported live-trapped or killed on Namibian farmlands between 1991 and 1999. …”
    Journal article
  16. 196

    Robust and fast microwave-driven quantum logic for trapped-ion qubits by Weber, MA, Gely, MF, Hanley, RK, Harty, TP, Leu, AD, Löschnauer, CM, Nadlinger, DP, Lucas, DM

    Published 2024
    “…Microwave-driven logic is a promising alternative to laser control in scaling trapped-ion based quantum processors. We implement Mølmer-Sørensen two-qubit gates on <sup>43</sup>⁢Ca<sup>+</sup> hyperfine clock qubits in a cryogenic ( ≈25 K) surface trap, driven by near-field microwaves. …”
    Journal article
  17. 197

    Optical sideband spectroscopy of a single ion in a Penning trap by Mavadia, S, Stutter, G, Goodwin, JF, Crick, DR, Thompson, RC, Segal, DM

    Published 2014
    “…We perform resolved optical sideband spectroscopy on a single 40Ca+ ion in a Penning trap. We probe the electric quadrupole allowed S1/2 ↔ D5/2 transition at 729 nm and observe equally spaced sidebands for the three motional modes. …”
    Journal article
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