• 제목/요약/키워드: multi-campus

검색결과 133건 처리시간 0.025초

성장에 따른 외모 걱정의 추이: 한국 청소년의 사례를 중심으로 (Trajectories of Appearance Concerns of South Korean Adolescents)

  • 윤영민;정성호
    • Journal of health informatics and statistics
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    • 제43권4호
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    • pp.245-254
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    • 2018
  • 목적: 이 논문은 한국 청소년들의 외모 걱정이 언제 어떻게 형성되고 변화하는지를 추적하여 그것의 심각성 정도를 밝히고자 하였다. 방법: 한국청소년정책연구원이 공개한 다년간의 추적 조사 자료에 대한 이차분석이 시행되었다. 통계기법으로는 반복측정 ANOVA, 대응표본 t-검정 및 카이자승 검정이 적용되었다. 결과: 청소년들에 있어 외모에 대한 걱정은 초등학교 고학년에 시작되어 성장과 더불어 강화되다 중 2나 중 3을 지나면서 점차 약화되는 것으로 판단된다. 일부 학생들은 청소년 시기 내내 외모에 대해 걱정하는 것으로 나타났지만, 고등학교나 대학에 진학한 후에는 청소년들의 외모 걱정이 눈에 띄게 감소되었으며, 어느 시점에서 외모 걱정을 벗어난 청소년은 다시 외모 걱정에 빠질 가능성이 아주 적다는 사실도 발견되었다. 한편 외모 걱정에 성별 차이가 뚜렷이 나타났다. 평균적으로 여학생이 남학생보다 외모에 대해 더 걱정하며, 외모 걱정이 남학생보다 1-2년 정도 더 일찍 정점에 도달하였다. 결론: 청소년의 외모 걱정은 성장과 더불어 역동적으로 변화한다. 외모에 대해 심각하게 걱정하는 청소년들이 적지 않지만, 일반적으로 추정되는 것보다는 청소년들의 외모 걱정은 상당히 유동적이며 다수의 청소년들이 외모 걱정에서 자유롭다고 판단된다.

Polarimetry of solar system small bodies using the Seoul National University 61cm telescope and TRIPOL

  • Jin, Sunho;Ishiguro, Masateru;Kwon, Yuna Grace;Geem, Jooyeon;Bach, Yoonsoo P.;Seo, Jinguk;Sasago, Hiroshi;Sato, Shuji
    • 천문학회보
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    • 제44권1호
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    • pp.64.2-64.2
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    • 2019
  • It is known that lights scattered by comets and asteroids are partially polarized. From polarimetric observations of those objects, we can investigate physical properties, such as albedos, sizes of cometary dust particles and regolith of asteroids. Since the polarization degrees of those objects highly depend on their phase angles (Sun-object-observer's angles), long-term monitoring observations are required. Moreover, comets show unforeseeable activations (i.e., outbursts) which need follow-up observations to understand the mechanism. In order to realize such monitoring and transient observations, we installed the Triple-Range Imager and POLarimeter (TRIPOL) on the 61cm telescope of Seoul National University (Hereafter, SNU) Gwanak campus. With this combination, we can obtain g', r', i' bands photopolarimetric images simultaneously with $8.0^{\prime}{\times}8.0^{\prime}$ field of view and pixel resolution of 0.94" pixel-1. Here, we make a presentation regarding the photometric and polarimetric performances of TRIPOL on the SNU 61cm telescope. In addition, we introduce initial polarimetric results of asteroid and comets with the instruments. First, we determine the limiting magnitudes (defined as magnitudes for S/N=5) of $15.17{\pm}0.06$ (g'-band), $15.68{\pm}0.01$ (r'-band), $16.24{\pm}0.03$ (I'-band), respectively, with total 240-seconds exposure (four 60-seconds exposure images, each was taken at different rotation angle for the half-wave plate). Second, we found that the instrumental polarization is negligibly small, ($-0.32{\pm}0.04%$ in the g', $-0.36{\pm}0.05%$ in the r' and $-0.21{\pm}0.04%$ in the i'-bands), while the polarization efficiencies are large enough to maximize the performance (i.e., $97.52{\pm}0.03%$ in the g', $98.83{\pm}0.02%$ in the r' and $99.15{\pm}0.02%$ in the i'-bands). With the instruments, we made observations of three Jupiter-family comets, 21P/Giacobini-Zinner, 38P/Stephan-Oterma, and 46P/Wirtanen and plan to observe one near-Earth asteroid, (433) Eros, on a trial basis. Especially for comets, we discriminate signals from dust and gas to eliminate gas contamination, which are known to change observed degree of linear polarization, using multi-band images. We confirm that the phase angle dependency of these comets are consistent with previous observations, probably because polarimetric property of Jupiter-family comets are broadly homogeneous unlike asteroids. We will also describe future observation plans using TRIPOL and SNU 61cm telescope.

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바이오모니터링 프로그램을 위한 혈중 금속류 동시분석법 개발 및 확인 평가 (Development and Verification of a Simultaneous Analytical Method for Whole Blood Metals and Metalloids for Biomonitoring Programs)

  • 차상원;오은하;오세림;한상범;임호섭
    • 한국환경보건학회지
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    • 제47권1호
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    • pp.64-77
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    • 2021
  • Objective: Biological monitoring of trace elements in human blood samples has become an important indicator of the health environment. The purpose of this study was to detect and evaluate multiple metal items in blood samples based on ICP-MS, to perform comparative evaluation with the existing analysis method, and to develop and verify a new method. Methods: 100 μL of whole blood from 80 healthy subjects was used to analyze ten metals (Sb, tAs, Cd, Pb, Mn, Hg, Mo, Ni, Se, Tl) using ICP-MS. Verification of the analysis method included calculation of linearity, accuracy, precision and detection limits. In addition, a comparative test with the conventional graphite furnace atomic absorption spectroscopy (GF-AAS) method was performed. In the case of Pb, Cd, and Hg in whole blood, cross-analysis between Pb, Cd, and Hg analysis methods was performed to confirm the difference between the existing method and the new method (ICP-MS). Results: The coefficient of determination (R2) was 0.999 or higher in seven items and 0.995 or higher in three items. The Pb result showed that Pearson's correlation coefficient was very high at 0.983, and the intraclass correlation coefficient was 0.966. The Cd result showed that Pearson's correlation coefficient was 0.917 between the existing method and the new analysis concentration value. Its intraclass correlation coefficient was 0.960, and there was no significant difference between the two groups. Hg had a low correlation at 0.687, and the intraclass correlation coefficient was 0.761, which was lower than that of Pb and Cd. The intra-day and inter-day accuracy of Pd and Cd were satisfactory, but Hg did not meet the criteria for both accuracy and precision when compared with the conventional analysis method. Conclusion: This study can be meaningful in that it proposes a more efficient and feasible analysis method by verifying a blood heavy metal concentration experiment using multiple simultaneous analyses. All samples were processed and analyzed using the new ICP-MS. It was confirmed that the agreement between the two methods was very high, with the agreement between the current and new methods being 0.769 to 0.998. This study proposes an efficient simultaneous methodology capable of analyzing multiple elements with small samples. In the future, studies of various applications and the reliability of ICP-MS analysis methods are required, and research on the verification of accurate, precise, and continuous analysis methods is required.