• 제목/요약/키워드: effective field

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응급구조(학)과 학생의 구급차동승실습 지도자 만족도에 영향을 미치는 요인 (Influencing factors on satisfaction of field instructor in ambulance ride practice of paramedic students)

  • 최은숙
    • 한국응급구조학회지
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    • 제17권3호
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    • pp.101-113
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    • 2013
  • Purpose: The purpose of this study was to provide an appropriate direction for effective field practice program by analyzing the influencing factors on satisfaction of field instructor in ambulance ride practice of paramedic students in Korea. Methods: The questionnaires were filled out by 204 paramedic students from July 22 to September 13, 2013. The collected data were analyzed with SPSS WIN 19.0 program. Results: The stepwise multiple regression analysis revealed that the most powerful predictor of satisfaction of field instructor was sincerity of directions. A combination of sincerity of directions (38.2%), achievement(15.4%), improvement of knowledge(3.9%) 4-week field practice(3.0%), 2 week field practice(1.6%), 4 grade(1.8%) pre-expectation of field practice(1.8%) accounted for 65.6% of the variance in paramedic students. Conclusion: We proposed the effective field practice program as well as sincerity of directions of field instructors. It is necessary to discuss before ambulance ride practice within the faculty and the field instructors.

정적 자기장이 무순(radish sprouts)의 초기 발아와 성장에 미치는 영향 (Effects of Static Magnetic Fields on Early Seed Germination and Radish Sprouts Growth)

  • 이영진;임지훈;박동국
    • 한국정보통신학회논문지
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    • 제17권1호
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    • pp.242-247
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    • 2013
  • 심각한 기후변화로 인한 농업의 생산성 약화에 대비하기 위해 식물 성장을 촉진할 수 있는 방안에 대한 연구가 요구되고 있다. 식물성장을 촉진하는 방법으로 자기장을 이용하는 방법이 소개되고 있지만, 식물에 자기장을 인가하는 효과적인 방법에 대해서는 아직까지 자세히 연구된 문헌이 없다. 본 논문에서는 인가하는 정적 자기장의 세기, 자기장의 인가 방향, 자기장 노출 시간 변화에 따른 무순(radish sprouts)의 성장과 초기발아 효과에 대해 실험을 하고. 효과적인 자기장 노출 방법에 대해 조사하였다. 실험의 결과를 종합하면 자기장에 노출되지 않은 무순 보다 자기장에 노출된 무순의 초기발아가 약 3~4일정도 빠른 것으로 나타났고, 효율적인 무순의 성장을 위해서는 자기장의 세기를 적절히 선택해야 함을 알 수 있었고, 자기장의 인가 방향에 따라서는 큰 영향을 받지 않는 것을 알 수 있었다.

A Study on the Effective Hydraulic Conductivity of an Anisotropic Porous Medium

  • Seong, Kwanjae
    • Journal of Mechanical Science and Technology
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    • 제16권7호
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    • pp.959-965
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    • 2002
  • Effective hydraulic conductivity of a statistically anisotropic heterogeneous medium is obtained for steady two-dimensional flows employing stochastic analysis. Flow equations are solved up to second order and the effective conductivity is obtained in a semi-analytic form depending only on the spatial correlation function and the anisotropy ratio of the hydraulic conductivity field, hence becoming a true intrinsic property independent of the flow field. Results are obtained using a statistically anisotropic Gaussian correlation function where the anisotropy is defined as the ratio of integral scales normal and parallel to the mean flow direction. Second order results indicate that the effective conductivity of an anisotropic medium is greater than that of an isotropic one when the anisotropy ratio is less than one and vice versa. It is also found that the effective conductivity has upper and lower bounds of the arithmetic and the harmonic mean conductivities.

Effective Volume of the Korea Research Institute of Standards and Science Free Air Chamber L1 for Low-Energy X-Ray Measurement

  • Chul-Young Yi;Yun Ho Kim;Don Yeong Jeong
    • 한국의학물리학회지:의학물리
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    • 제33권1호
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    • pp.1-9
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    • 2022
  • Purpose: To evaluate the effective volume of the Korea Research Institute of Standards and Science free air chamber (KRISS FAC) L1 used for the primary standard device of the low-energy X-ray air kerma. Methods: The mechanical dimensions were measured using a 3-dimensional coordinate measuring machine (3-d CMM, Model UMM 500, Carl Zeiss). The diameter of the diaphragm was measured by a ring gauge calibrator (Model KRISS-DM1, KRISS). The elongation of the collector length due to electric field distortion was determined from the capacitance measurement of the KRISS FAC considering the result of the finite element method (FEM) analysis using the code QuickField v6.4. Results: The measured length of the collector was 15.8003±0.0014 mm with a 68% confidence level (k=1). The aperture diameter of the diaphragm was 10.0021±0.0002 mm (k=1). The mechanical measurement volume of the KRISS FAC L1 was 1.2415±0.0006 cm3 (k=1). The elongated length of the collector due to the electric field distortion was 0.170±0.021 mm. Considering the elongated length, the effective measurement volume of the KRISS FAC L1 was 1.2548±0.0019 cm3(k=1). Conclusions: The effective volume of the KRISS FAC L1 was determined from the mechanically measured value by adding the elongated volume due to the electric field distortion in the FAC. The effective volume will replace the existing mechanically determined volume in establishing and maintaining the primary standard of the low-energy X-ray.

인턴십 및 현장실습을 위한 관리 시스템 모형 개발 (Development of a Model for Management System in Internships or Field Training)

  • 한지영;방재현
    • 공학교육연구
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    • 제17권3호
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    • pp.42-50
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    • 2014
  • Since internships or field training provide students with opportunities to choose skills, business interests and aptitudes in the actual workplace, their significant role in higher education has been gradually emphasized. In particular, engineering students gain increased adaptability to the industry, enhance their research abilities and acquire field-based expertise through internships or field training. However, effective operation of such internships or field training often pose various limitations. In this regard, the development of a system to manage students properly is urgently required for the effective operation of internships or field training. Systematic management of a series of related information ranging from a survey on the demand for internships or field training, planning, development and operation of pre-training programs, student guidance through information sharing between universities and businesses, data-gathering with regard to students' difficulties and their requirements, to prospects for future employment. In line with these requirements, this study attempts to present a modeling scheme for the development of a student management system for use in internships or field training. Towards this end, a questionnaire survey is conducted with engineering professors, students and graduates, along with a review of related literature to identify the needs for system development. Based on the results, a model of the system will be proposed through expert consultation.

팬텀투과계수와 유효조사면 개념을 이용한 종양선량 확인에 관한 연구 (IN-VIVO DOSE RECONSTRUCT10N USING A TRANSMISION FACTOR AND AN EFFECTIVE FIELD CONCEPT)

  • 김유현;여인환;권수일
    • 대한방사선기술학회지:방사선기술과학
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    • 제25권1호
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    • pp.63-71
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    • 2002
  • The aim of this study Is to develop a simple and fast method which computes in-vivo doses from transmission doses measured doting patient treatment using an ionization chamber. Energy fluence and the dose that reach the chamber positioned behind the patient is modified by three factors: patient attenuation, inverse square attenuation. and scattering. We adopted a straightforward empirical approach using a phantom transmission factor (PTF) which accounts for the contribution from all three factors. It was done as follows. First of all, the phantom transmission factor was measured as a simple ratio of the chamber reading measured with and without a homogeneous phantom in the radiation beam according to various field sizes($r_p$), phantom to chamber distance($d_g$) and phantom thickness($T_p$). Secondly, we used the concept of effective field to the cases with inhomogeneous phantom (patients) and irregular fields. The effective field size is calculated by finding the field size that produces the same value of PTF to that for the irregular field and/or inhomogeneous phantom. The hypothesis is that the presence of inhomogeneity and irregular field can be accommodated to a certain extent by altering the field size. Thirdly, the center dose at the prescription depth can be computed using the new TMR($r_{p,eff}$) and Sp($r_{p,eff}$) from the effective field size. After that, when TMR(d, $r_{p,eff}$) and SP($r_{p,eff}$) are acquired. the tumor dose is as follows. $$D_{center}=D_t/PTF(d_g,\;T_p){\times}(\frac{SCD}{SAD})^2{\times}BSF(r_o){\times}S_p(r_{p,eff}){\times}TMR(d,\;r_{p,eff})$$ To make certain the accuracy of this method, we checked the accuracy for the following four cases; in cases of regular or irregular field size, inhomogeneous material included, any errors made and clinical situation. The errors were within 2.3% for regular field size, 3.0% irregular field size, 2.4% when inhomogeneous material was included in the phantom, 3.8% for 6 MV when the error was made purposely, 4.7% for 10 MV and 1.8% for the measurement of a patient in clinic. It is considered that this methode can make the quality control for dose at the time of radiation therapy because it is non-invasive that makes possible to measure the doses whenever a patient is given a therapy as well as eliminates the problem for entrance or exit dose measurement.

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A Study on Effective Source-Skin Distance using Phantom in Electron Beam Therapy

  • Kim, Min-Tae;Lee, Hae-Kag;Heo, Yeong-Cheol;Cho, Jae-Hwan
    • Journal of Magnetics
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    • 제19권1호
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    • pp.15-19
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    • 2014
  • In this study, for 6-20 MeV electron beam energy occurring in a linear accelerator, the authors attempted to investigate the relation between the effective source-skin distance and the relation between the radiation field and the effective source-skin distance. The equipment used included a 6-20 MeV electron beam from a linear accelerator, and the distance was measured by a ionization chamber targeting the solid phantom. The measurement method for the effective source-skin distance according to the size of the radiation field changes the source-skin distance (100, 105, 110, 115 cm) for the electron beam energy (6, 9, 12, 16, 20 MeV). The effective source-skin distance was measured using the method proposed by Faiz Khan, measuring the dose according to each radiation field ($6{\times}6$, $10{\times}10$, $15{\times}150$, $20{\times}20cm^2$) at the maximum dose depth (1.3, 2.05, 2.7, 2.45, 1.8 cm, respectively) of each energy. In addition, the effective source-skin distance when cut-out blocks ($6{\times}6$, $10{\times}10$, $15{\times}15cm^2$) were used and the effective source-skin distance when they were not used, was measured and compared. The research results showed that the effective source-skin distance was increased according to the increase of the radiation field at the same amount of energy. In addition, the minimum distance was 60.4 cm when the 6 MeV electron beams were used with $6{\times}6$ cut-out blocks and the maximum distance was 87.2 cm when the 6 MeV electron beams were used with $20{\times}20$ cut-out blocks; thus, the largest difference between both of these was 26.8 cm. When comparing the before and after the using the $6{\times}6$ cut-out block, the difference between both was 8.2 cm in 6 MeV electron beam energy and was 2.1 cm in 20 MeV. Thus, the results showed that the difference was reduced according to an increase in the energy. In addition, in the comparative experiments performed by changing the size of the cut-out block at 6 MeV, the results showed that the source-skin distance was 8.2 cm when the size of the cut-out block was $6{\times}6$, 2.5 cm when the size of the cut-out block was $10{\times}10$, and 21.4 cm when the size of the cut-out block $15{\times}15$. In conclusion, it is recommended that the actual measurement is used for each energy and radiation field in the clinical dose measurement and for the measurement of the effective source-skin distance using cut-out blocks.

평등자계 형성용 전자석 자극 구조에 관한 연구 (Magnetic Pole Structure of Electro-Magnet for Forming Uniform Magnetic Field)

  • 김정태;이승면;조현준;김훈년
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 하계학술대회 논문집
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    • pp.515-518
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    • 2002
  • In this study, the ellipsoidal cap type magnetic pole structure was proposed for the electro-magnet in B-H curve tracer. From the simulation for the electro-magnet without specimen, the area of effective uniform field(99% range for the central field value) was considerably increased in case of the newly proposed ellipsoidal cap type magnetic pole than that of the conventional simple-inclined cap type magnetic pole. Also, through the simulation for the electro-magnet with permanent magnet specimen(NaFe30), the optimal Positions of the magnetic field measurement sensor(Hall sensor) were found out in each case and the errors were decreased in case of the newly proposed ellipsoidal cap type magnetic pole.

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표면 채널 모스 소자에서 유효 이동도의 열화 (The Degradations of Effective Mobility in Surface Channel MOS Devices)

  • 이용재;배지칠
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 1996년도 춘계학술대회 논문집
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    • pp.51-54
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    • 1996
  • This paper reports the studies of the inversion layer mobility in p-channel Si MOSFET's under hot-carrier degradated condition. The validity of relationship of hot carrier degradations between the surface effective mobility and field effect mobility and are examined. The effective mobility(${\mu}$$\_$eff/) is derived from the channel conductances, while the field-effect mobility(${\mu}$$\_$FE/) is obtained from the transconductance. The characteristics of mobility curves can be divided into the 3 parts of curves. It was reported that the mobility degradation is due to phonon scattering, coulombic scattering and surface roughness. We are measured the mobility slope in curves with DC-stress [V$\_$g/=-3.1v]. It was found that the mobility(${\mu}$$\_$eff/ and ${\mu}$$\_$FE/) of p-MOSFET's was increased by increasing stress time and decreasing channel length. Because of the increasing stress time and increasing V$\_$g/ is changed oxide reliability and increased vertical field.

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환경교육의 도구로서 간이 측정기의 활용에 관한 연구 (Evaluation of Passive Sampler as a Useful Tool for Environmental Education)

  • 전의찬;송민종
    • 한국환경교육학회지:환경교육
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    • 제11권2호
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    • pp.252-261
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    • 1998
  • Since 1980's during which environmental pollution became serious enough to urge various types of environmental educations in many areas. But, most emphasis has been put on theoretical education. Even field education training mostly focused on water pollution. Therefore, simple air pollution monitoring system was needed for better field education in air pollution. In this study, we evaluated Passive Sampler as an useful tool for teaching air pollution in field. Students have found passive sampler very effective tool. Recent comparative study of auto-monitoring and passive sampler networks suggested a potential use of passive sampler as an useful tool for environmental education. In this study, the correlation between two sets of values appears very high judging from the regression slope of 0.92 and correlation coefficient of 0.91 However, inexpensive Passive sampler with easy-to-operate colorimeter, has not been used in environmental education partially because large scale fluctuation in time and space characteristic to air pollution has been overlooked so that the sampler has not been tested for an effective educational tool. Passive sampler certainly deserves further in depth research as an effective air monitoring system, and better attention to its usefulness to teach students and public.

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