Добірка наукової літератури з теми "Yongin-si"

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Статті в журналах з теми "Yongin-si"

1

Lee, Jong-gu, and Ku-Bok Chung. "Study methodology of history and culture of Yongin-si." Korean Society of the History of Historiography 36 (December 20, 2017): 379–95. http://dx.doi.org/10.29186/kjhh.2017.36.379.

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2

Seo, Youngmin, Soonmyeong Kwon, and Yunyoung Choi. "Short-Term Water Demand Forecasting Model Combining Variational Mode Decomposition and Extreme Learning Machine." Hydrology 5, no. 4 (September 27, 2018): 54. http://dx.doi.org/10.3390/hydrology5040054.

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Анотація:
Accurate water demand forecasting is essential to operate urban water supply facilities efficiently and ensure water demands for urban residents. This study proposes an extreme learning machine (ELM) coupled with variational mode decomposition (VMD) for short-term water demand forecasting in six cities (Anseong-si, Hwaseong-si, Pyeongtaek-si, Osan-si, Suwon-si, and Yongin-si), South Korea. The performance of VMD-ELM model is investigated based on performance indices and graphical analysis and compared with that of artificial neural network (ANN), ELM, and VMD-ANN models. VMD is employed for multi-scale time series decomposition and ANN and ELM models are used for sub-time series forecasting. As a result, ELM model outperforms ANN model. VMD-ANN and VMD-ELM models outperform ANN and ELM models, and the VMD-ELM model produces the best performance among all the models. The results obtained from this study reveal that the coupling of VMD and ELM can be an effective forecasting tool for short-term water demands with strong nonlinearity and non-stationarity and contribute to operating urban water supply facilities efficiently.
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3

Yim, Yoon-Soo, and Ju-Ok Han. "A Study on Optimal location of hydrogen refueling stations using gas stations in Yongin City." Korea Association Of Real Estate Law 27, no. 4 (December 30, 2023): 45–60. http://dx.doi.org/10.32989/rel.2023.27.4.45.

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More than 120 countries around the world are working to achieve Net Zero, which eliminates carbon emissions, by 2050. The Korean government will also invest more than 20 trillion won in green mobility by 2025 to supply 1.13 million electric vehicles and 200,000 hydrogen vehicles, and the Ministry of Environment plans to establish a complex charging station by 2025 by installing 114 hydrogen charging stations and 750 electric rapid chargers at accessible urban gas stations and gas charging stations to make it a living base for pollution-free cars. Accordingly, this study attempted to select the optimal location of hydrogen charging stations by utilizing existing gas stations in Yongin City as a way to build hydrogen charging stations. Of the 187 gas stations in Yongin-si, a gas station with a combined charging station was selected using ArcGIS 10.4.1 as software to derive an area with an area of 1,500㎡ or more and a limited distance within 17m of the school. As a result of the analysis, 16 out of 33 gas stations with an area of 1,500㎡ or more were identified as gas stations with combined charging stations. If a hydrogen charging station is installed as an auxiliary facility at a gas station with good accessibility and developed as a combined charging station, it will be of great help to supply hydrogen cars by resolving the inconvenience of users.
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4

Song, Youngseok, Moojong Park, and Jingul Joo. "Study on the Calculation Method of Carbon Emissions in the Construction Industry: Targeting Small River Maintenance Projects in Korea." Water 15, no. 20 (October 16, 2023): 3608. http://dx.doi.org/10.3390/w15203608.

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The construction industry, responsible for approximately 30% of global carbon emissions, is closely linked to national development, making carbon reduction challenging. While national development is of paramount importance, it is essential to prioritize individual projects and establish a direction for reducing carbon emissions. The starting point should involve calculating the carbon emissions for each project and comprehending their quantitative impact. In this study, we calculated the carbon emissions for a small river maintenance project aimed at disaster prevention in the construction industry in Yongin-si, Gyeonggi-do, Korea. The total carbon emissions generated by the small river maintenance project in the target area amounted to 2016.6 tonCO2. By process, the embankment construction was responsible for 789.7 tonCO2, while the revetment construction contributed 1226.9 tonCO2. The analysis revealed that the carbon emissions generated by the small river maintenance project equated to 10.2 tonCO2/km of river length. Additionally, we developed an equation by applying the double-log function model (log–log) to small river length and carbon emissions. The coefficient of determination for the calculation equation is 0.42, which may not yield highly precise results. However, it is believed that this equation will provide a rough estimate of the carbon emissions associated with the small river maintenance project.
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5

Oh, Mi Young, and Hae Lyun Moon. "Difficulties and Demands of Field Trips for Early Childhood Teachers due to the COVID-19 Pandemic." Korean Association For Learner-Centered Curriculum And Instruction 23, no. 10 (May 31, 2023): 611–24. http://dx.doi.org/10.22251/jlcci.2023.23.10.611.

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Objectives This study examines the difficulties and requirements of early childhood teachers' field trips due to COVID-19, and through this, aims to provide basic data on field trip methods that can effectively cope with crisis situations such as pandemics. Methods 102 homeroom teachers aged 3 to 5 working at an early childhood education institution located in Yongin-si, Gyeonggi-do participated, and the survey was conducted through an open-ended questionnaire. Specific examples and requirements for difficulties in field trips due to the COVID-19 pandemic were described. Results First, the difficulties of early childhood teachers' field trips due to the COVID-19 pandemic are ‘difficulties in supporting teaching and learning linked to play topics’, ‘difficulties due to parents' various requests and non-cooperation’, and ‘difficulty in selecting a site for field trips’. appeared. Second, the requirements of early childhood teachers for effective field trips in the context of the COVID-19 pandemic are ‘institutional support for safe field trips’, ‘parental awareness improvement support for field trips linked to children's play’, It turned out to be ‘educational support for high-quality field trips’. Conclusions In order to effectively implement field trips in a pandemic situation such as COVID-19, it was discussed that a systematic system is needed so that the government, local governments, early childhood education institutions, and families can communicate and share together.
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Yoon, Hyun-sook, and Hyeon-Su Jeon. "Analysis of the Degree of Community-Aged Affinity for the Creation of a Generation-Integrated Super-Aged Community: Focused on Yeongdeungpo-gu and Yongin-si." Hallym University Institute of Aging 6, no. 1 (December 31, 2018): 25–47. http://dx.doi.org/10.35187/hjas.2018.6.1.25.

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7

Lee, Chan Sol, Soo Min Cho, Seok Cheol Park, Tae Gyeom Lee, and Bong Ho Han. "A Study on Development and Application of Evaluation Indicators of Urban Underground Development to Improve Water Cycle Function - Focusing on the Old and New Central Districts of Yongin-si, Gyeonggi-do -." Journal of the Korean Cadastre Information Association 25, no. 1 (April 30, 2023): 161–78. http://dx.doi.org/10.46416/jkcia.2023.04.25.1.161.

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8

You, Chur Woo, Ho-Jin Shin, Howard Levy, Martin Lee, Seung-Beom Hong, Jamie Ellen Siegel, and June Young Park. "Phase 1/2 Trial of Subcutaneously Administered Factor IX Variant CB2679d/ISU304: Pharmacokinetics and Activity." Blood 130, Suppl_1 (December 7, 2017): 87. http://dx.doi.org/10.1182/blood.v130.suppl_1.87.87.

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Abstract Marketed factor IX (FIX) products require intravenous (IV) administration to achieve effective prophylaxis for patients with hemophilia B. Subcutaneous (SQ) administration is a preferred route of administration but has been limited by low bioavailability and potency of the marketed FIX products. CB2679d/ISU304 with enhanced biological properties was developed using a rational protein design approach and has resistance to inhibition by ATIII, increased affinity for FVIIIa, increased catalytic activity, which result in 22-fold enhanced potency in vitro (clotting activity) and in vivo (the tail clip model) and 8-fold increased duration of aPTT activity in vivo compared with recombinant wild-type FIX dosed at the same mass and may allow SQ administration to provide prophylaxis. Methods: The trial design is provided below. IV pharmacokinetics (PK) (antigen and activity) was sampled at predose, 0, 0.25, 0.5, 1, 3, 6, 9, 24, 48 and 72 hours. SQ PK was sampled at predose, 1, 2, 4, 6, 8, 10, 12, 24, 48 and 72 hours. Cohort 5 has PK sampled before each injection, 6 hours after first and 6th injection and 24 hours after 6th daily injection. Hematology, chemistry and coagulation was measured at Seoul Clinical Laboratories (Yongin-si, South Korea). FIX antigen and FIX activity, anti-drug antibody to BeneFIX and ISU304 and neutralizing antibody were measured at Haematologic Technologies Inc (Essex Junction, VT). A safety follow-up was done 2 weeks after last visit. FIX antigen was measured using VisuLizeTM Factor IX Antigen KitAG (Affinity Biologicals, Inc, Ancaster, ON, Canada) and FIX activity was measured using a one-stage clotting assay using ACL TOP 700 and Instrumentation Laboratories (Bedford, MA) reagents. The calculation of AUC was based on the trapezoidal rule. To calculate the additional area for AUC0-inf, the log-linear regression line for the last three time points was fit and extrapolated to the x-intercept. The calculation of half-life was based on the use of Demitasse 2000 (version 1.1.3, M. Lee, 2000) which uses an iterative piecewise fitting algorithm based on a robust (M-regression) log-linear model (Lee, 1990, 1997). All activity data were adjusted for baseline before analysis, assuming exponential falloff after IV administration and a half-life of 20 hours. Bioavailability was calculated from the AUC0-t for the IV and SQ data using FIX activity data. Subject safety was reviewed by an external Data Safety Monitoring Board and also an internal Data Monitoring Committee. Results: PK and activity of ISU304 demonstrate the 22-fold greater potency over BeneFIX and longer mean residence time (Cohort 1 figure, Table 1). Bioavailability of 18.2-23.6%, SQ beta half-life 66-103 hours and Tmax 6-24 hours (Cohort 2 figure, Table 2) One subject reported transient fever and a mild SQ injection site reaction. Conclusion: Interim study results support the aim of achieving normal or high mild hemophilia FIX levels in individuals with hemophilia B with repeated SQ dosing. Complete PK and activity and steady-state levels after 6 daily doses will be reported from this phase 1/2 subcutaneous dosing study. Figure Figure. Disclosures Levy: Catalyst Biosciences: Employment, Equity Ownership. Lee: Catalyst Biosciences: Consultancy. Hong: ISU Abxis: Employment. Siegel: Catalyst Biosciences: Consultancy. Park: ISU Abxis: Employment.
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Книги з теми "Yongin-si"

1

Hanʼguk Tʻoji Kongsa. Tʻoji Pangmulgwan and Yongin-si (Korea), eds. Yongin-si ŭi yŏksa wa munhwa yujŏk. [Yongin-si]: Han'guk T'oji Kongsa T'oji Pangmulgwan, 2003.

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2

Pangmulgwan, Kyŏnggi-do (Korea), ред. 龍仁할미산성: Sigul chosa pogosŏ. Kyŏnggi-do Yongin-si: Kyŏnggi-do Pangmulgwan, 2005.

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3

Yongin Pojŏng-ni sosil yujŏk si palgul chosa pogosŏ. Kyŏnggi-do Suwŏn-si: Kyŏnggi Munhwa Chaedan pusŏl Kijŏn Munhwajae Yŏn'guwŏn, 2005.

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4

Yŏn'guwŏn, Kyŏnggi Munhwa Chaedan Kyŏnggi Munhwajae. Yongin Sŏch'ŏn-dong yujŏk: Yongin Sŏch'ŏn t'aekchi kaebal saŏp puji nae munhwa yujŏk si, palgul chosa pogosŏ. Kyŏnggi-do Suwŏn-si: Kyŏnggi Munhwa Chaedan Kyŏnggi Munhwajae Yŏn'guwŏn, 2011.

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5

Pong-hak, Yu, Hansin Taehakkyo (Korea) Pangmulgwan, and Hanʾguk Tʻochi Kongsa, eds. Yongin-si Chukjŏn chigu munhwa yujŏk mit minsok chosa pogosŏ. Kyŏnggi-do Osan-si: Hansin Taehakkyo Pangmulgwan, 1999.

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6

Pangmulgwan, Hansin Taehakkyo (Korea), ed. Yongin-si Chukjŏn chigu munhwa yujŏk mit minsok chosa pogosŏ. Kyŏnggi-do Osan-si: Hansin Taehakkyo Pangmulgwan, 1999.

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7

Pangmulgwan, Kyŏnggi-do (Korea). 龍仁坪倉里舊石器遺蹟: Sigul chosa pogo. Kyŏnggi-do Yongin-si]: Kyŏnggi-do Pangmungwan, 1998.

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8

Kongsa, Han'guk T'oji, ed. Yongin Tongbaek-Chukchŏn kan toro kugan nae munhwa yujŏk si, palgul chosa pogosŏ. Sŏul T'ŭkpyŏlsi: Han'guk Munhwajae Poho Chaedan, 2005.

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9

Ch'ungnyŏl Sŏwŏn Chi P'yŏnch'an Wiwŏnhoe. Ch'ungnyŏl Sŏwŏn chi. Kyŏnggi-do Yongin-si: Yongin Munhwawŏn Pusŏl Hyangt'o Munhwa Yŏn'guso, 2009.

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10

(Korea), Kungnip Muhyŏng Yusanwŏn, ed. Sŏwŏn hyangsa: Simgok Sŏwŏn, Ujŏ Sŏwŏn, Hyŏnjŏlsa. Chŏlla-pukto Chŏnju-si: Kungnip Muhyŏng Yusanwŏn, 2014.

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