• Title/Summary/Keyword: single tied system

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Comparative Analysis of Training Systems and Curriculums of Early Childhood Educators in Korea and France (한국과 프랑스의 유아교사 양성제도 및 교육내용에 대한 비교 분석)

  • Park, Joo-Won
    • Journal of Korea Entertainment Industry Association
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    • v.15 no.7
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    • pp.107-123
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    • 2021
  • This research aims to review the training systems and curriculums of early childhood educators in Korea and France and seek directions to improve teachers training in Korea. To achieve the research purpose, this article compares three criteria, namely teacher training institutes, training systems, and curriculums based on the legal systems of Korea and France. Below are the summaries of the comparison. First, the training for teachers in France is carried out by the INSPÉ, the state-level single training system, for those who have bachelor's degrees. Second, the second year INSPÉ students or preliminary teachers take national teacher qualification tests. If they pass the tests, they are sent to the teaching fields as licensed teachers. Third, there are 3-year scholarship programs and support for practicums as part of the INSPÉ curriculum through the teacher support system in France to select highly qualified teachers. Fourth, the French curriculums prioritize basic knowledge skills, integration of school systems, teaching practicum experiences that are tied to the teaching fields, and research and analysis of practicum experiences.

CHARACTERIZATION OF GEOTECHNICAL SITES BY MULTI-CHANNEL ANALSIS OF SURFACE WAVES(MCASW) (지표층의 탄성계수 측정을 위한 새로운 탄성파 방법)

  • 박춘병
    • Proceedings of the Korean Geotechical Society Conference
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    • 1995.10a
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    • pp.15.2-22
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    • 1995
  • Evaluating stiffness of near-surface materials has been one of the critically important tasks in many civil engineering works. It is the main goal of geotechnical characterization. The so-called deflection-response method evaluates the stiffness by measuring stress-strain behavior of the materials caused by static or dynamic load. This method, however, evaluates the overall stiffness and the stiffness variation with depth cannot be obtained. Furthermore, evaluation of a large-area geotechnical site by this method can be time-consuming, expensive, and damaging to many surface points of the site. Wave-propagation method, on the other hand, measures seismic velocities at different depths and stiffness profile (stiffness change with depth) can be obtained from the measured velocity data. The stiffness profile is often expressed by shear-wave (S-wave) velocity change with depth because S-wave velocity is proportional to the shear modulus. that is a direct indicator of stiffiiess. The crosshole and downhole method measures the seismic velocity by placing sources and receivers (geophones) at different depths in a borehole. Requirement of borehole installation makes this method also time-consuming, expensive, and damaging to the sites. Spectral-Analysis-of-Surface-Waves (SASW) method places both source and receivers at the surface, and records horizontally-propagating surface waves. Based upon the theory of surfacewave dispersion, the seismic velocities at different depths are calculated by analyzing the recorded surface-wave data. This method can be nondestructive to the sites. However, because only two receivers are used, the method requires multiple measurements with different field setups and, therefore, the method often becomes time-consuming and labor-intensive. Furthermore. the inclusion of noise wavefields cannot be handled properly, and this may cause the results by this method inaccurate. When multi-channel recording method is employed during the measurement of surface-waves, there are several benefits. First, usually single measurement is enough because multiple number (twelve or more) of receivers are used. Second, noise inclusion can be detected by coherency checking on the multi-channel data and handled properly so that it does not decrease the accuracy of the result. Third, various kinds of multi-channel processing techniques can be applied to f1lter unwanted noise wavefields and also to analyze the surface-wavefields more accurately and efficiently. In this way, the accuracy of the result by the method can be significantly improved. Fourth, the entire system of source, receivers, and recording-processing device can be tied into one unit, and the unit can be pulled by a small vehicle, making the survey speed very fast. In all these senses, multi-channel recording of surface waves is best suited for a routine method for geotechnical characterization in most of civil engineering works.

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