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  1. 1861

    Análisis de la satisfacción de los docentes de la Universidad Tecnológica de la Costa con respecto a la nueva modalidad de educación virtual by Erixander Villarreal Bañuelos, Alejandra Quesada Ruíz, Lorenzo Ramírez Landa, Eldy Martínez Flores

    Published 2022-09-01
    “…Abstract This descriptive research aims to determine the level of satisfaction of teachers from the Universidad Technológica de la Costa (UTC) regarding the new virtual teaching modality. …”
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  2. 1862

    Temperatura do solo afetada pela irrigação e por diferentes coberturas by Giovana G. Ribas, Nereu A. Streck, Stefanía D. da Silva, Thiago S. M. da Rocha, Josana A. Langner

    Published 2015-10-01
    “…A temperatura do solo foi medida a 0,05 m de profundidade, diariamente, às 15h (18 UTC), no período de 10-10-2011 a 31-05-2012. Foram também realizadas medidas horárias de temperatura do solo em quatro dias sem nebulosidade, em outubro e novembro de 2011, e janeiro e março de 2012. …”
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  3. 1863

    Impact of Radar Reflectivity and Lightning Data Assimilation on the Rainfall Forecast and Predictability of a Summer Convective Thunderstorm in Southern Italy by Stefano Federico, Rosa Claudia Torcasio, Silvia Puca, Gianfranco Vulpiani, Albert Comellas Prat, Stefano Dietrich, Elenio Avolio

    Published 2021-07-01
    “…A satisfactory prediction of the amount of rainfall could have been issued at 14:30 UTC, when precipitation was already affecting the city. …”
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  4. 1864

    Effect of Low Pressure and Low Oxygen Treatments on Fruit Quality and the In Vivo Growth of <i>Penicillium digitatum</i> and <i>Penicillium italicum</i> in Oranges by John Archer, Penta Pristijono, Quan V. Vuong, Lluís Palou, John B. Golding

    Published 2021-12-01
    “…The results showed that exposure to both LO and LP treatments reduced in vivo pathogen growth compared to the untreated (UTC) oranges, with LO being the most effective. …”
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  5. 1865

    Composite Aerosol Optical Depth Mapping over Northeast Asia from GEO-LEO Satellite Observations by Soi Ahn, Sung-Rae Chung, Hyun-Jong Oh, Chu-Yong Chung

    Published 2021-03-01
    “…Hourly AOD composites were generated (00:00–09:00 UTC, 2017) using the regression equation derived from the comparison of the composite AOD error statistics to AERONET measurements, and the results showed that the correlation coefficient and RMSE values of composite were close to those of the low earth orbit satellite products (MODIS and VIIRS). …”
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  6. 1866
  7. 1867
  8. 1868

    United territorial communities in Ukraine in the context of fiscal decentralization by Alina Korbutiak, Zhanna Lysenko, Nataliya Sokrovolska, Artur Oleksyn, Eduard Yurii

    Published 2019-05-01
    “…At the same time, the use of SWOT analysis as one of the methods of value-oriented management made it possible to evaluate the efficiency and attractiveness of UTCs under decentralization. The financial activity of 665 UTCs was analyzed and the model for managing the united territorial community was created. …”
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  9. 1869

    Preliminary Research on a Comparison and Evaluation of FY-4A LMI and ADTD Data through a Moving Amplification Matching Algorithm by Pengfei Li, Guofu Zhai, Wenjing Pang, Wen Hui, Wenjuan Zhang, Jing Chen, Liting Zhang

    Published 2020-12-01
    “…The lightning number detected by ADTD increased from 5:00 AM UTC (13:00 PM BJT, Beijing Time) and almost lasted for a whole day. …”
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  10. 1870
  11. 1871

    Tropospheric NO<sub>2</sub> vertical column densities over Beijing: results of the first three years of ground-based MAX-DOAS measurements (2008&ndash;2011) and satellite validatio... by P. Yan, R. Shaiganfar, J. L. Jin, S. Beirle, J. Z. Ma, T. Wagner

    Published 2013-02-01
    “…Over this period, the daytime (08:00–17:00 Beijing Time (BJT, which equals UTC + 8)) mean tropospheric NO<sub>2</sub> VCDs varied from 0.5 to 13.3 with an average of 3.6 during summertime, and from 0.2 to 16.8 with an average of 5.8 during wintertime, all in units of 10<sup>16</sup> molecules cm<sup>−2</sup>. …”
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  12. 1872

    GS-MAC: A Scalable and Energy Efficient MAC Protocol for Greenhouse Monitoring and Control Using Wireless Sensor Networks by Mike Majham, Marco P. Mwaimu, Thomas Kivevele, Ramadhani S. Sinde

    Published 2023-01-01
    “…Instead, nodes use coordinated universal time (UTC) to maintain strict schedules to avoid energy waste and maintain constant low-duty cycles even with increasing node density. …”
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  13. 1873
  14. 1874
  15. 1875
  16. 1876
  17. 1877

    Modeling study and diagnostic analysis of the landfall process of No. 0414 typhoon(0414号台风登陆过程的诊断与模拟分析) by CHENLi-fang(陈丽芳), XUEGen-yuan(薛根元), GAOKun(高坤)

    Published 2007-09-01
    “…利用非静力平衡中尺度模式MM5对0414号台风从2004年8月11日00时~14日00时(UTC)进行模拟,结合浙江省稠密的AWS资料、雷达资料、卫星云图对这次台风登陆过程进行分析,结果表明中尺度模式对登陆台风的路径、强度、降水具有较强的模拟预报能力.台风登陆前副热带高压呈坝状发展,副高南缘超地转低空急流加强,以及登陆前台风周围的风速呈现东北象限最大,西南象限最小的分布状况,是造成台风登陆前加速西折的原因.高层辐合中心的维持有利于台风强度增强.台风螺旋雨带前沿存在中尺度热力性低压,在海陆间中尺度锋区的热力条件支持下,低压扰动获得发展,降水加强.水汽输送通道维持与内陆水体和饱和湿土的潜热输送是台风登陆后久留不散的原因.台风登陆后水汽源提供由孟加拉湾和南海转变为西太平洋.…”
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  18. 1878

    First Open-Coast HF Radar Observations of a 2-Phase Volcanic Tsunami, Tonga 2022 by Belinda Lipa, Donald Barrick, Chad Whelan, Marcel Losekoot, Hardik Parikh

    Published 2023-04-01
    “…We describe results from coastal radar systems that observed anomalous current flows generated by the volcanic eruption in the Tongan archipelago on 15 January 2022 UTC, reporting the first radar detection of a volcanic tsunami. …”
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  19. 1879

    Seismic monitoring of precursory fracture signals from a destructive rockfall in the Vorarlberg Alps, Austria by M. Walter, U. Schwaderer, M. Joswig

    Published 2012-11-01
    “…The rockfall with an estimated volume of 15 000 m&lt;sup&gt;3&lt;/sup&gt; occurred on 10 May 2011 (10:48:43 UTC) and destroyed a massive bridge construction. …”
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  20. 1880

    High Frequency Variations of Earth Rotation Parameters from GPS and GLONASS Observations by Erhu Wei, Shuanggen Jin, Lihua Wan, Wenjie Liu, Yali Yang, Zhenghong Hu

    Published 2015-01-01
    “…The maximum of total diurnal and semidiurnal variations are within one milli-arcseconds (mas) in Polar Motion (PM) and 0.5 milli-seconds (ms) in UT1-UTC. The semidiurnal and diurnal variations are mainly related to the ocean tides. …”
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