• 제목/요약/키워드: particle physics

검색결과 471건 처리시간 0.024초

THE KOMPSAT- I PAYLOADS OVERVIEW

  • Paik, Hong-Yul;Park, Gi-Hyuk;Youn, Hyeong-Sik;Lee, Seunghoon;Woo, Sun-Hee;Shim, Hyung-Sik;Oh, Kyoung-Hwan;Cho, Young-Min;Yong, Sang-Soon;Lee, Sang-Gyu;Heo, Haeng-Pal
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 1998년도 Proceedings of International Symposium on Remote Sensing
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    • pp.301-306
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    • 1998
  • Korea Aerospace Research Institute (KARI) is developing a Korea Multi-Purpose Satellite I (KOMPSAT-I) which accommodates Electro-Optical Camera (EOC), Ocean Scanning Multi-spectral Imager (OSMI), and Space Physics Sensor (SPS). The satellite has the weight of about 500kg and will be operated on the 10:50 AM sun-synchronized orbit with the altitude of 685 km. The satellite will be launched in 1999 and its lifetime is expected to be over 3 years. The main mission of EOC is the cartography to provide the images from a remote earth view for the production of 1/25000-scale maps of KOREA. EOC collects 510 ~ 730 nm panchromatic imagery with the ground sample distance(GSD) of 6.6 m and the swath width of 17 km by push broom scanning. EOC also can scan $\pm$45 degree across the ground track using body pointing method. The primary mission of OSMI is worldwide ocean color monitoring for the study of biological oceanography. It will generate 6 band ocean color images with 800 km swath width and 1km GSD by whiskbroom scanning. OSMI is designed to provide on-orbit spectral band selectability in the spectral range from 400 nm to 900 nm through ground command. This flexibility in band selection can be used for various applications and will provide research opportunities to support the next generation sensor design. SPS consists of High Energy Particle Detector (HEPD) and ionosphere Measurement Sensor (IMS). HEPD has missions to characterize the low altitude high-energy Particle environment and to study the effects of radiation environment on microelectronics. IMS measures densities and temperature of electrons in the ionosphere and monitors the ionospheric irregularities at the KOMPSAT orbit.

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A Magnetization Study of Prussian-blue Analogue NaxMny[Fe(CN)6]

  • Minh, Nguyen Van;Phu, Phung Kim;Thuan, Nguyen Minh;Yang, In-Sang
    • Journal of Magnetics
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    • 제13권4호
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    • pp.149-152
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    • 2008
  • In this report, we present the results of a study on the effects of the particle size on the properties of the Prussian blue (PB) analog $Na_xMn_y[Fe(CN){_6}]$. A novel synthesis method of the $Na_xMn_y[Fe(CN){_6}]$ nano-particles using an organic solvent, formamide, is employed. The size of the PB particles is found to be 100-150 nm for the samples prepared in the formamide solvent, which is much smaller than that of the samples prepared using water only. The broadening of the X-ray diffraction peaks of the nano-sized PB samples is attributed to the lattice disorder and a dramatic reduction in the particle size. The compositions of the samples are confirmed by an energy-dispersive X-ray analysis (EDAX), and the result proves that the samples are actually $Na_xMn_y[Fe(CN){_6}]$ Prussian blue. The UV-vis spectra show a broad intervalence charge-transfer (CT) band in the visible region between 400 and 700 nm, and the absorption decreases abruptly in the green region for the nano-sized PB sample. A divergence between the field cooled (FC) and zero field cooled (ZFC) magnetization curves is observed for the nano-sized PB sample at 11 K, indicating that nanoparticles in the sample are single domain superparamagnets with a blocking temperature of 11 K. Our results reveal that the nano-sized PB samples show significantly different optical and magnetic properties than those of the bulk PB samples.

Beam line design and beam transport calculation for the μSR facility at RAON

  • Pak, Kihong;Park, Junesic;Jeong, Jae Young;Kim, Jae Chang;Kim, Kyungmin;Kim, Yong Hyun;Son, Jaebum;Lee, Ju Hahn;Lee, Wonjun;Kim, Yong Kyun
    • Nuclear Engineering and Technology
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    • 제53권10호
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    • pp.3344-3351
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    • 2021
  • The Rare Isotope Science Project was launched in 2011 in Korea toward constructing the Rare isotope Accelerator complex for ON line experiments (RAON). RAON will house several experimental systems, including the Muon Spin Rotation/Relaxation/Resonance (μSR) facility in High Energy Experimental Building B. This facility will use 600-MeV protons with a maximum current of 660 pμA and beam power of 400 kW. The key μSR features will facilitate projects related to condensed-matter and nuclear physics. Typical experiments require a few million surface muons fully spin-polarized opposite to their momentum for application to small samples. Here, we describe the design of a muon transport beam line for delivering the requisite muon numbers and the electromagnetic-component specifications in the μSR facility. We determine the beam-line configuration via beam-optics calculations and the transmission efficiency via single-particle tracking simulations. The electromagnet properties, including fringe field effects, are applied for each component in the calculations. The designed surface-muon beamline is 17.3 m long, consisting of 2 solenoids, 2 dipoles affording 70° deflection, 9 quadrupoles, and a Wien filter to eliminate contaminant positrons. The average incident-muon flux and spin rotation angle are estimated as 5.2 × 106 μ+/s and 45°, respectively.

Optimization red emission of SrMoO4: Eu3+ via hydro-thermal co-precipitation synthesis using orthogonal experiment

  • Tan, Yongjun;Luo, Xuedan;Mao, Mingfu;Shu, Dehua;Shan, Wenfei;Li, Guizhi;Guo, Dongcai
    • Current Applied Physics
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    • 제18권11호
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    • pp.1403-1409
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    • 2018
  • In the present study, the $SrMoO_4:Eu^{3+}$ phosphors has been synthesized through hydro-thermal co-precipitation method, and single factor and orthogonal experiment method was adopted to find optimal synthesis condition. It is interesting to note that hydro-thermal temperature is a prominent effect on the luminescent intensity of $SrMoO_4:Eu^{3+}$ red phosphor, followed by co-precipitation temperature, calcining time, and the doping amount of $Eu^{3+}$. The optimal synthesis conditions were obtained: hydro-thermal temperature is $145^{\circ}C$, co-precipitation temperature is $35^{\circ}C$, the calcining time is 2.5 h, and the doping amount of activator $Eu^{3+}$ is 25%. Subsequently, the crystalline particle size, phase composition and morphology of the synthesized phosphors were evaluated by X-ray powder diffraction (XRD) and scanning electron microscopy (SEM). The results show that these phosphors possess a scheelite-type tetragonal structure, and the particle size is about $0.2{\mu}m$. Spectroscopic investigations of the synthesized phosphors are carried out with the help of photo-luminescence excitation and emission analysis. The studies reveal that $SrMoO_4:Eu^{3+}$ phosphor efficiently convert radiation of 394 nm-592 and 616 nm for red light, and the luminescence intensity of $SrMoO_4:Eu^{3+}$ phosphors is improved. $SrMoO_4:Eu^{3+}$ phosphors may be a potential application for enhancing the efficiency of white LEDs.

Cultural Tunneling Effect: Conceptual adoption & Application in movie industry

  • Roh, Seungkook
    • Asia Marketing Journal
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    • 제16권3호
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    • pp.77-100
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    • 2014
  • Many researchers have analyzed the relationship between the financial success patterns of a motion picture and many other factors, such as the production cost, marketing, stars, awards, reviews, genre, and rating. Through these studies, many researchers and investors concluded that big budgets to make a blockbuster movie can serve as an insurance policy to meet their ROI; thus the box office is dominated by blockbuster movies. High-budget blockbuster movies are more likely to receive attention because these movies are more recognizable given their high expenses for production and casting. Therefore, audiences choose blockbusters in an effort to reduce the searching cost and to mitigate the possibility of a regrettable choice. This behavior of consumers, in turn, causes distributors to allocate screens for blockbusters, resulting in "concentration of blockbuster consumption." As such, low-budget films cannot easily become popular due to the lack of distribution. Indeed, low-budget films released on a small number of screens often end up becoming dismal failures. However, there are exceptional examples which are contrary to the general idea in the movie industry that a big budget and showings on a large number of screens can guarantee the success of a movie. Although researchers have attempted to analyze the performances of movies with small budgets, such movies are likely to be regarded as outliers and then be entirely discarded, as they are far from the 'three-sigma' range, especially given that previous research methodologies could not explain the financial success of such unique examples. This study attempts to explain the financial success at the box office of low-budget movies by applying the concept of the tunnel effect in quantum mechanics, as the phenomenon found in the movie industry is similar to a particle's movement in quantum physics. The tunneling effect is a phenomenon by which a particle without enough energy to pass over a potential barrier tunnels through it. Adopting the analogy, this study draws a tunneling probability function and cultural constant to forecast other outliers using the Schrödinger equation. Moreover, the study finds that word-of-mouth creates in the movie industry this phenomenon of finding outliers.

남강댐 담수 방류시 진주만을 빠져나가는 입자들의 수로별 분배율 평가 (Distribution Rate of Particles Exiting Jinju Bay in the Namgang Dam Freshwater Discharge)

  • 노남윤;권민선;권혜련;김종구
    • 해양환경안전학회지
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    • 제29권6호
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    • pp.576-586
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    • 2023
  • 남강댐 하류역에 위치한 사천만, 진주만, 강진만에서 가화천 방류에 따른 담수 배제의 분배 특성을 평가하기 위하여 입자추적 수치실험을 실험하였다. 가화천을 통해 3개의 방류조건(무방류, 강우시 방류, 홍수시 방류)에서 입자 1000개를 투여하여 노량수도, 대방수도, 창선해협으로 빠져나가는 입자의 수를 비교하였다. 가화천을 통한 방류량이 늘어날수록 노량수도로의 입자 분배율이 증가하고, 대방수도로의 분배율이 감소하는 것을 확인할 수 있었다. 즉, 평소에는 가화천 하류에 위치한 물질의 약 95%가 대방수도를 통해 빠져나가다가, 강우에 의해 남강댐의 방류량이 증가하면서 노량수도로의 분배율이 증가하며, 홍수시에는 노량수도로의 입자 분배율이 45.5% 까지 증가하는 것을 확인할 수 있었다.

CoRe 개발 과정을 통한 과학교사의 PCK 변화에 관한 사례 연구 -중학교 1학년 "분자의 운동"을 중심으로- (A Case Study on the Development of Science Teachers PCK through development of Content Representation (CoRe) -Focusing on "Molecular Motion" for 7th grade class-)

  • 장효순;최병순
    • 한국과학교육학회지
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    • 제30권6호
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    • pp.870-885
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    • 2010
  • 이 연구의 목적은 숙련된 전공 교사와 비전공 교사가 공동 작업으로 중학교 1학년 "분자의 운동"에 관한 CoRe를 개발하면서, 개발 과정에서 연구 참여자들이 경험하는 것은 무엇이며, 개발 과정 경험 후 이들이 수업에서 나타나는 PCK 변화는 무엇인지 알아보는 것이었다. 이 연구는 도구적 사례 연구이며, 연구 참여자를 의도적 표본 추출하였다. CoRe 개발 과정 녹음과 수업 관찰 녹화, 면담으로 자료를 수집하였고, 모든 자료는 전사 후 분석하였다. 연구 결과, 연구 참여자들이 CoRe 개발 논의 과정을 통해 교과 내용 지식과 이전 수업에 대해 반성하고, 교사 자신의 오개념을 수정하고 개념을 명료화했으며, 교수 내용과 목표를 분명히 인식하고, 학생들의 선개념에 대한 이해를 높이는 경험을 한다는 것을 확인할 수 있었다. 특히 비전공 연구 참여자들은 전공 교사와의 논의를 통해 이전의 수업에서 입자적 관점이 부족했었던 면을 확인하고, "분자의 운동"에서 무엇을 왜 가르쳐야 할지를 명확히 인식하게 되었음을 강조했다. CoRe 개발 경험 후 비전공 연구 참여자들은 PCK의 구성 요소 중 과학 교육과정에 대한 지식에 가장 큰 영향을 받아, 수업에서 입자성과 분자의 운동을 강조하는 모습을 보였다. 또 CoRe에서 논의된 새로운 교수 전략을 도입했다. 비전공 연구 참여 교사들의 PCK가 변하는 정도는 자신의 지식과 이전 수업에 대한 반성적 사고 정도와 교사의 정의적 특성에 따라 달랐다. 이 연구를 통해 CoRe 개발 과정이 교사의 전문성 신장에 필수적인 반성적 사고를 촉진시키고, PCK에도 유의미한 영향을 미침을 확인할 수 있었다. 특히 전공자와 비전공자가 공동으로 CoRe를 개발하는 논의 과정을 통해 통합 교과에서 비전공자들이 보이는 일종의 결여를 확인하고 보완할 수 있음을 알 수 있었다. 또한 인식이 곧바로 실천으로 연결되는 것이 아니라 내면화되기까지는 시간과 노력이 요구된다는 것도 확인할 수 있었다.

대관령 구름물리관측시스템 산출물 평가 및 FSSP를 이용한 시정환산 시험연구 (Intercomparison of Daegwallyeong Cloud Physics Observation System (CPOS) Products and the Visibility Calculation by the FSSP Size Distribution during 2006-2008)

  • 양하영;정진임;장기호;차주완;정재원;김유철;이명주;배진영;강선영;김금란;최영진;최치영
    • 대한원격탐사학회지
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    • 제26권2호
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    • pp.65-73
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    • 2010
  • 구름과 강수특성을 분석하기 위해 대관령에 구름물리관측시스템(Cloud physics Observation System, 이하 CPOS)을 2003년부터 운영해 오고 있다. 주요 관측 기기는 다음과 같다: FSSP (Forward Scattering Spectrometer Probe), OPC (Optical Particle Counter), VS (Visibility Sensor), PARSIVEL disdrometer, MWR (Microwave Radiometer), MRR (Micro Rain Radar). 앞의 4개 장비는 지상구름 (안개)과 강수 특성을, 뒤의 2개 장비는 연직구름의 특성을 실시간으로 관측하고 있다. CPOS 산출물을 검증하기 위해 FSSP는 흡습성 물질 시딩 실험 중 OPC와, MWR의 가강수량은 라디오존데와, PARSIVEL과 MRR은 우량계와 비교 연구가 수행되었다. 그 결과를 보면 대부분이 0.7이상의 좋은 상관도를 보인다. 이와 같이 신뢰도를 확보한 CPOS 관측 자료는 구름과 에어로솔의 간접효과나 기상조절 실험에 유용한 자료로 활용될 수 있을 것이다. FSSP의 입자 크기 분포를 시정값으로 환산해 보았으며 FSSP 환산 시정값은 visibility sensors (SVS)와 PWD22 (Present Weather Detect 22)의 시정계 값에 비해 1.7~1.9배 과도한 경향을 보였다. 이는 FSSP에 의해 관측되는 입자 크기($2{\sim}47\;{\mu}m$)의 한계 때문으로 사료된다. 향후 다른 입자크기분포를 측정할 수 있는 장비를 도입하여 추가 분석을 추진할 계획이다.

초미세 나노분말 γ-Fe2O3의 초상자성 특성연구 (Superparamagnetic Properties of γ-Fe2O3 Nanoparticles)

  • 이승화;이재광;채광표;안성용
    • 한국자기학회지
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    • 제20권5호
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    • pp.196-200
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    • 2010
  • Sol-gel 법을 이용하여 초상자성 나노 입자 $\gamma-Fe_2O_3$를 제조하였다. 입자의 크기 및 자기적 성질을 x-선 회절법(XRD), Mossbauer 분광법, 진동시료 자화율 측정기(VSM)를 이용하여 연구하였다. x-선 회절 실험결과 150 이상에서 열처리한 입자는 순수한 cubic spinel 구조를 가지며, $150^{\circ}C$에서 열처리한 $\gamma-Fe_2O_3$의 평균입자 크기는 7 nm로다. Mossbauer 분광실험으로 $150^{\circ}C$에서 열처리한 입자는 상온에서 초상자성의 특성을 가지고 있음을 알 수 있었으며 초상자성의 특성을 잃어버리는 차단온도 $T_B$$183^{\circ}C$로 결정하였으며, 또한 자기이방성상수 K = $1.6{\times}10^6erg/cm^3$의 값을 얻었다. $150^{\circ}C$에서 열처리한 $\gamma-Fe_2O_3$의 VSM 측정 결과로부터 $150^{\circ}C$에서 열처리한 $\gamma-Fe_2O_3$의 경우 상온에서 초상자성의 특성을 확인 할 수 있었다.

Stimulation of Blood Flow Needs a Parallel Magnetic Field and Psycho-physics acupuncture

  • Oh, Hung-Kuk
    • 한국감성과학회:학술대회논문집
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    • 한국감성과학회 2000년도 추계학술대회 논문집
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    • pp.105-112
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    • 2000
  • The conventional model did not take momentum conservation into consideration when the electron absorbs and emits the photons. II-ray provides momentum conservations on any directions of the entering photons, and also the electrons have radial momentum conservations and fully elastic bouncing between two atoms, in the new atom model. Conventional atom model must be criticized on the following four points. (1) Natural motions between positive and negative entities are not circular motions but linear going and returning ones, fur examples sexual motion, tidal motion, day and night etc. Because the radius of hydrogen atom's electron orbit is the order of 10$^{-11}$ m and the radia of the nucleons in the nucleus are the order of 10$^{-l4}$m and then the converging $\pi$-gamma rays to the nucleus have so great circular momentum, the electron can not have a circular motion. We can say without doubt that any elementary mass particle can have only linear motion, because of the $\pi$-rays' hindrances, near the nucleus. (2) Potential energy generation was neglected when electron changes its orbit from outer one to inner one. The h v is the kinetic energy of the photo-electron. The total energy difference between orbits comprises kinetic and potential energies. (3) The structure of the space must be taken into consideration because the properties of the electron do not change during the transition from outer orbit to inner one even though it produces photon. (4) Total energy conservation law applies to the energy flow between mind and matter because we daily experiences a interconnection between mind and body. Any magnet absorbs n-rays to S pole and sends out the $\pi$-rays from N pole. Proton are constructed with the closed n-rays quantum-mechanically. The crystallizing n-bonding makes two $\pi$-far infrared rays of one wave length between two protons if two $\pi$-rays are supplied to each proton. It is easily done for a $\pi$-ray to be absorbed to a proton if there is a parallel magnetic flow to the blood flow because a $\pi$-ray advances axially under a magnetic field and a proton looks like a sphere. A axially advancing disk-like $\pi$-ray can meet more easily the coming spheres than from the other directions. The blood crystals stimulate the autonomous nerves on the blood vessels during the flow by their mechanical sliding collisions. SM n-ray meridian therapy and SMACN $\pi$-ray meridian therapy show the stimulation of blood flow and also combinational experiment between SM $\pi$-ray meridian therapy and n-ray psycho-physics acupuncture shows more clearly that magnet is forcing to make $\pi$-rays absorbed to the nucleons.s.ons.

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