• 제목/요약/키워드: Structured surface

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시스템 함수 및 변복조 개념 적용 능동 방식 3차원 물체 좌표 복원 (Concepts of System Function and Modulation-Demodulation based Reconstruction of a 3D Object Coordinates using Active Method)

  • 이덕우;김지수;박철형
    • 한국산학기술학회논문지
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    • 제20권5호
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    • pp.530-537
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    • 2019
  • 본 논문에서는 시스템함수 및 변복조의 개념을 3차원 복원 문제에 적용하는 알고리즘을 제안한다. 시스템의 유일한 특성을 정의하는 시스템 함수 (또는 시스템 응답)를를 일반적인 신호처리 또는 제어시스템에서 결정하듯이, 본 논문에서는 적절한 입력과 출력신호를 선택한 다음 3차원 물체의 특성을 결정짓는 시스템 함수를 결정한다. 본 논문에서는 3차원 복원 문제를 두 가지 방법의 시스템 함수 문제로 풀어 나간다. 첫 번째 방법은 입력과 출력 신호를 각각 3차원 물체의 면에 투영된 원형 빛 패턴과 카메라(2차원 이미지 면)가 획득한 패턴이 투영된 3차원 물체의 이미지로 정의하여 3차원 물체의 특성을 나타내는 시스템 함수를 정의 하는 것이다. 두 번째 방법은 입력과 출력 신호를 각각 복원되어야 할 3차원 물체의 좌표와 카메라가 획득한 빛 패턴이 투영된 3차원 물체의 이미지로 정의하여 입력 신호를 추정하는 문제로 해석하는 것이다. 첫 번째 방법은 일반적인 입출력 함수의 비(ratio)로부터 시스템 함수를 구하는 것이고 두 번째 방법은 신호의 변조와 복조 과정으로부터 원래의 전송된 신호 (입력) 를 추정하는 것처럼 입력 신호인 3차원 물체의 좌표를 추정하는 것이다.

Fates of water and salts in non-aqueous solvents for directional solvent extraction desalination: Effects of chemical structures of the solvents

  • Choi, Ohkyung;Kim, Minsup;Cho, Art E.;Choi, Young Chul;Kim, Gyu Dong;Kim, Dooil;Lee, Jae Woo
    • Membrane and Water Treatment
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    • 제10권3호
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    • pp.207-212
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    • 2019
  • Non-aqueous solvents (NASs) are generally known to be barely miscible, and reactive with polar compounds, such as water. However, water can interact with some NASs, which can be used as a new means for water recovery from saline water. This study explored the fate of water and salt in NAS, when saline water is mixed with NAS. Three amine solvents were selected as NAS. They had the same molecular formula, but were differentiated by their molecular structures, as follows: 1) NAS 'A' having the hydrophilic group ($NH_2$) at the end of the straight carbon chain, 2) NAS 'B' with symmetrical structure and having the hydrophilic group (NH) at the middle of the straight carbon chain, 3) NAS 'C' having the hydrophilic group ($NH_2$) at the end of the straight carbon chain but possessing a hydrophobic ethyl branch in the middle of the structure. In batch experiments, 0.5 M NaCl water was blended with NASs, and then water and salt content in the NAS were individually measured. Water absorption efficiencies by NAS 'B' and 'C' were 3.8 and 10.7%, respectively. However, salt rejection efficiency was 98.9% and 58.2%, respectively. NAS 'A' exhibited a higher water absorption efficiency of 35.6%, despite a worse salt rejection efficiency of 24.7%. Molecular dynamic (MD) simulation showed the different interactions of water and salts with each NAS. NAS 'A' formed lattice structured clusters, with the hydrophilic group located outside, and captured a large numbers of water molecules, together with salt ions, inside the cluster pockets. NAS 'B' formed a planar-shaped cluster, where only some water molecules, but no salt ions, migrated to the NAS cluster. NAS 'C', with an ethyl group branch, formed a cluster shaped similarly to that of 'B'; however, the boundary surface of the cluster looked higher than that of 'C', due to the branch structure in solvent. The MD simulation was helpful for understanding the experimental results for water absorption and salt rejection, by demonstrating the various interactions between water molecules and the salts, with the different NAS types.

New Approaches for Overcoming Current Issues of Plasma Sputtering Process During Organic-electronics Device Fabrication: Plasma Damage Free and Room Temperature Process for High Quality Metal Oxide Thin Film

  • Hong, Mun-Pyo
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
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    • pp.100-101
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    • 2012
  • The plasma damage free and room temperature processedthin film deposition technology is essential for realization of various next generation organic microelectronic devices such as flexible AMOLED display, flexible OLED lighting, and organic photovoltaic cells because characteristics of fragile organic materials in the plasma process and low glass transition temperatures (Tg) of polymer substrate. In case of directly deposition of metal oxide thin films (including transparent conductive oxide (TCO) and amorphous oxide semiconductor (AOS)) on the organic layers, plasma damages against to the organic materials is fatal. This damage is believed to be originated mainly from high energy energetic particles during the sputtering process such as negative oxygen ions, reflected neutrals by reflection of plasma background gas at the target surface, sputtered atoms, bulk plasma ions, and secondary electrons. To solve this problem, we developed the NBAS (Neutral Beam Assisted Sputtering) process as a plasma damage free and room temperature processed sputtering technology. As a result, electro-optical properties of NBAS processed ITO thin film showed resistivity of $4.0{\times}10^{-4}{\Omega}{\cdot}m$ and high transmittance (>90% at 550 nm) with nano- crystalline structure at room temperature process. Furthermore, in the experiment result of directly deposition of TCO top anode on the inverted structure OLED cell, it is verified that NBAS TCO deposition process does not damages to the underlying organic layers. In case of deposition of transparent conductive oxide (TCO) thin film on the plastic polymer substrate, the room temperature processed sputtering coating of high quality TCO thin film is required. During the sputtering process with higher density plasma, the energetic particles contribute self supplying of activation & crystallization energy without any additional heating and post-annealing and forminga high quality TCO thin film. However, negative oxygen ions which generated from sputteringtarget surface by electron attachment are accelerated to high energy by induced cathode self-bias. Thus the high energy negative oxygen ions can lead to critical physical bombardment damages to forming oxide thin film and this effect does not recover in room temperature process without post thermal annealing. To salve the inherent limitation of plasma sputtering, we have been developed the Magnetic Field Shielded Sputtering (MFSS) process as the high quality oxide thin film deposition process at room temperature. The MFSS process is effectively eliminate or suppress the negative oxygen ions bombardment damage by the plasma limiter which composed permanent magnet array. As a result, electro-optical properties of MFSS processed ITO thin film (resistivity $3.9{\times}10^{-4}{\Omega}{\cdot}cm$, transmittance 95% at 550 nm) have approachedthose of a high temperature DC magnetron sputtering (DMS) ITO thin film were. Also, AOS (a-IGZO) TFTs fabricated by MFSS process without higher temperature post annealing showed very comparable electrical performance with those by DMS process with $400^{\circ}C$ post annealing. They are important to note that the bombardment of a negative oxygen ion which is accelerated by dc self-bias during rf sputtering could degrade the electrical performance of ITO electrodes and a-IGZO TFTs. Finally, we found that reduction of damage from the high energy negative oxygen ions bombardment drives improvement of crystalline structure in the ITO thin film and suppression of the sub-gab states in a-IGZO semiconductor thin film. For realization of organic flexible electronic devices based on plastic substrates, gas barrier coatings are required to prevent the permeation of water and oxygen because organic materials are highly susceptible to water and oxygen. In particular, high efficiency flexible AMOLEDs needs an extremely low water vapor transition rate (WVTR) of $1{\times}10^{-6}gm^{-2}day^{-1}$. The key factor in high quality inorganic gas barrier formation for achieving the very low WVTR required (under ${\sim}10^{-6}gm^{-2}day^{-1}$) is the suppression of nano-sized defect sites and gas diffusion pathways among the grain boundaries. For formation of high quality single inorganic gas barrier layer, we developed high density nano-structured Al2O3 single gas barrier layer usinga NBAS process. The NBAS process can continuously change crystalline structures from an amorphous phase to a nano- crystalline phase with various grain sizes in a single inorganic thin film. As a result, the water vapor transmission rates (WVTR) of the NBAS processed $Al_2O_3$ gas barrier film have improved order of magnitude compared with that of conventional $Al_2O_3$ layers made by the RF magnetron sputteringprocess under the same sputtering conditions; the WVTR of the NBAS processed $Al_2O_3$ gas barrier film was about $5{\times}10^{-6}g/m^2/day$ by just single layer.

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우리나라 대표적(代表的) 표본인구(標本人口)의 연간(年間) 손상(損傷) 및 중독발생율(中毒發生率)과 역학적(疫學的) 특성(特性) (National Survey of Injury and Poisoning on a Representative Sample Population of Koreans)

  • 김정순;김성수;장성칠
    • Journal of Preventive Medicine and Public Health
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    • 제27권3호
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    • pp.447-463
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    • 1994
  • Despite the public health importance of injury and poisoning in terms of its high mortality and incidence, epidemiologic information to be utilized are scarce in Korea. This study was carried out in 1990 on a representative sample population (about 55,000 persons) along with the 6th National Tuberculosis Prevalence Survey in order to estimate the magnitude of injury and poisoning occurrence and to identify its epidemiologic characteristics which can be aided for establishing preventive strategy. Pre-tested and structured Questionnaire was used by trained interviewer to collect data including general information of the person, various information on the injury and poisoning during the past one year such as time and place of its occurrence, its nature and external causes, type of medical institute attended, duration of treatment and outcome of the accident occured. In analysis of the data collected incidence rates per 1000 persons by sex, age group and its nature as well as external causes, and relative frequencies were calculated. The result obtained are as followings; 1. The incidence rate per 1000 was 30 for both sexes, 39 for male and 22 for female, male being 1.8 times more frequent than female. Age adjusted incidences were not much different from the crude rates. Age group specific rate curve showed bimodal shape in both sexes, small peaks in preschool children and higher peaks in older ages. The incidence rate per 1000 people by area was highest in Jeon-bug province (57/1000) and the lowest in Daegu city(11/1000). 2. The place where the injuries occured were road in 46%, within the boundary of house in 25%, and working place in 12% The injuries and poisoning had occured more frequently during the months from March to August of the year than other months. 3. The relatively frequent injuries by its nature were contusion with intact skin surface (19%), fracture of upper limb (13%), open wound of head, neck and trunk (12%) and fracture of lower limb (11%) among males; contusion with intact skin surface (28%), sprains and strains of joints and adjacent muscle (14%), fracture of upper limb (10%) and fracture of lower limb (9%) among females. Higher incidence rate among males than females were fracture of skull (4.5 times), open wound and fractures of limbs ($2{\sim}3$ times). Age specific rate of injuries and poisoning by its nature showed increasing pattern by age in fractures of upper and lower limbs and sprains & strains of joints whereas the age group of 30's showed highest incidence in open wounds of upper limb. Fractures of radius and ulna in upper limb, fractures of tibia & fibula and ankle in lower limb were most frequent among fractures of upper and lower limbs. The frequent injuries among sprains and strains of joints and adjacent muscles were that of ankle, foot and back, and among open wound were that of head and fingers. 4. Relative frequency of injuries and poisoning by external causes showed following order : other accidents (25%), accidental falls (23%), motor vehicle accident (22%) and other road vehicle accident (14%) among males and accidental falls (37%), motor vehicle accident (24%) and other accident (18%) among females. The external causes revealing higher incidences among males than females, were other road vehicle accident (4.8 times), vehicle accident not elsewhere classifiable (4.4 times), accidental poisoning (4.4 times), accidents due to natural and environmental factors (2.8 times), and sucide & self-inflicted injuries (2.8 times). Age specific incidence by external causes for frequent injuries showed that incidence of other accident steadily increased from 10's till age 50's; motor vehicle traffic accident increased from age 20's and dropped after age 60's; on the other hand accidental fall increased strikingly by age. The most frequent external causes among motor vehicle traffic accidents was motor vehicle traffic accident involving collision with pedstrain (69%), pedal cycle accident (30%) and other road vehicle accident (71%) among other road vehicle accidents; falls on same level from slipping, tripping or standing (44%) and other falls from one level to another among accidental falls; accidents caused by machinary (32%) for male and striking against or struck accidentally by objects or person for female among other accidents. 5. Seventy nine percent of the injuries and poisonings were treated in general hospital or hospital/clinic. The duration of treatment ranged from a few days to 123 weeks; the majority(52%) took under 2 weeks, 36% for $3{\sim}8$ weeks and 4% over 21 weeks. 6. The accident resulted in full recovery of normal healthy state in 62%, residual functional defects in 21% and on process of treatment in 16%.

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초등학교 과학영재학생과 일반학생의 지하수에 대한 개념 비교 (Comparison of Science Gifted and Ordinary Elementary School Students with Regard to the Concept of Groundwater)

  • 이형재;박상태
    • 영재교육연구
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    • 제22권4호
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    • pp.855-874
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    • 2012
  • 본 연구는 초등학교 과학영재학생과 일반학생의 지하수의 개념, 형성과정, 존재 형태와 이동으로 나누어 비교함으로써 초등학교 학생들의 올바른 개념 형성을 위한 기초 자료를 얻고자 하였다. 연구대상은 초등학교 5, 6학년 학생들 65명을 대상으로 공간능력검사를 실시하였으며, 이중에서 과학영재학생 4명, 일반학생 8명을 선정하여 반구조화된 면담 자료와 학생들이 그린 지하수 그림을 이용하여 분석하였다. 연구 목적에 따른 결론을 정리하면 다음과 같다. 지하수가 무엇이냐는 개념을 묻는 질문에서 공간능력이 높은 초등 과학영재학생들과 중간인 일반학생들은 큰 차이가 없었다. 공간능력이 낮은 수준의 일반학생들일수록 지하수를 상하수도의 개념으로 보는 경향이 있었다. 지하수의 형성과정에 대한 개념에서는 공간능력이 높은 초등학교 영재학생들은 빗물을 비롯해 강물과 호수, 폭포 등 다양한 지표수를 들어가며 설명을 하였고, 공간능력이 보통인 초등학교 일반학생들은 전부 비와 강물만을 언급하여 다양한 공간적인 요인을 설명하지 못하였다. 공간능력이 낮은 초등학교 일반학생들은 비와 강물을 언급하면서 인위적으로 지하수가 형성되었다고 인식하고 있었다. 지하수의 존재 형태에 관한 개념에서는 공간능력이 낮은 초등학교 일반학생일수록 땅속의 흙이나 토양 속에 작은 공극이 존재한다는 공간 지각에 대해서 생각을 하지 못하였다. 공간능력이 높은 초등학교 과학영재 학생들은 공간 지각과 관련하여 공극 사이에 지하수가 존재한다는 것은 알고는 있으나 그것에 대해 구체적으로 언급하지는 못하였다. 지하수의 이동에 대한 개념에서는 공간능력이 낮은 초등학교 일반학생들일수록 지하수의 이동이 없으며, 인위적인 시설을 해야 이동한다는 생각을 갖고 있었다. 그러나 학생들이 공간능력에 따라 공극에 대한 인식의 차이와 그에 따른 지하수의 이동여부에 대한 차이는 있으나 대부분 초등학교 학생들은 지하수에 대한 개념은 과학적 개념과는 다른 개념을 형성하고 있었다. 이는 자연현상 중의 하나인 지하수에 대한 오개념이 형성되었고, 대다수의 초등학교 학생들이 지하수의 개념에 대해 지표 아래 지하수와 그 주변을 이루는 물질사이의 관계를 연결짓지 못하는 것으로 해석된다.

한반도 지역에서의 상층중력장 (External Gravity Field in the Korean Peninsula Area)

  • 정애영;최광선;이영철;이정모
    • 자원환경지질
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    • 제48권6호
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    • pp.451-465
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    • 2015
  • 주변 해역을 포함한 한반도 일원에서 측정된 중력자료로부터 상층중력의 고도이상(free-air anomaly)을 계산하였다. 주변 영역에서는 인접국가가 발표한 중력자료가 있는 경우 발표된 자료를 이용하였으며, 없는 경우 EGM2008(Earth Gravitational Model 2008)로부터 계산한 고도이상을 이용하였다. 중력의 상향연속은 Dragomir가 제안한 방법으로 계산하였다. 상층중력 고도이상 계산의 정확성과 계산 속도를 고려하여 적분반경은 계산 고도의 10배로 하였다. 적분에 필요한 측지선의 거리는 Bowring이 개발한 공식을 사용하였다. 위도 $33^{\circ}N{\sim}43^{\circ}N$, 경도 $124^{\circ}E{\sim}131^{\circ}E$에서 계산된 고도이상은 고도 1 km에서 -41.315에서 189.327 mgal까지 변화하고 표준 편차는 22.612 mgal이다. 고도 3 km에서는 -36.478에서 156.209 mgal까지 변화하고 표준 편차는 20.641 mgal이다. 고도 1,000 km에서는 3.170에서 5.864 mgal까지 변화하고 표준 편차는 0.670 mgal이다. 3 km 고도에서 계산된 고도이상을 같은 높이에서 측정한 항공 중력 고도이상과 비교하였다. 이들의 rms 오차는 3.88 mgal로 나타났다. 항공 중력 측정 교차점오차가 2.2 mgal 임을 고려하면 이들 오차에 의미를 부여할 수 없으며, 원인으로는 이번 연구에서 발생한 계산상 오차와 함께/또는 발표된 항공중력의 보정오차에 기인하는 것으로 사료된다. 상층중력 고도이상에 완전식으로 계산한 지구타원체 외부의 정규중력을 더하여 상층중력을 예측하였다. 이번 연구에서 국내 최초로 계산한 고도에 따른 상층중력 고도이상은 한반도 일원의 상층중력장을 잘 표현하고 있는 것으로 보이며, 상층중력장은 관성항법장치의 정확도 향상 등에 이용될 수 있을 것이다.