The purpose of this study was to develop grading method of the basic brassiere patterns therewith, provide for 12 size's brassiere patterns and prove fitness of their's and shape. The collected data were statistically processed using the SAS 6.12 for Means, Standard Deviation, etc. The results of this study can be summarized as follows; 1. The basic sizes adopted at the first design stage (see fig.1-2) were 75AA, 75A and 75B each of which was designed as upper foundation basic pattern in reference to the cup size. At the second stage, each of the upper body foundation basic pattern was used to design lower cup, upper up, front panel and wing in their order(see fig.3-6). At the third stage, the other sizes were graded in reference to the three brassiere patterns (75AA, 75A and 75B) to produce 12 brassiere sizes(see Tab. 7-8). In order to develop the basic patterns of adult women's brassieres, 33 women were selected per 11 size combination(3 women per size combination), and then, their brassiere fitting was teated. As a result, the fronts of the basic patterns were found to have such problems as undone front center, poor levelling of upper cup's bottom line or lower cup's top line, poor shape of upper cup's outside top line and shoulder strip position. On the other hand, on the rear side of the basic patterns, the central part of the wing was slightly lifted, while the wing width and straps'interval did not befit the ful1-cup brassiere. The result of this first brassiere fitting test showed that the functionality and aesthetics of the basic pattern brassieres were more or less satisfactory, and thus, the problems were addressed for the second teat. In the second test, the aesthetics, breast-shaping effect and functionality of the basic pattern brassieres were much improved. 2. We were to present the final brassiere sizing system
본 논문에서는 DRAM 모듈의 전원 평면에 대한 효과적인 설계 방법을 제시하였고 그 방법은 다음과 같이 세 단계로 구성되어 있다. 1) PEEC 등가회로를 이용한 2D 전송선 구조로 전원평면의 모델링 및 해석. 2) 측정값 비교를 통한 해석 결과 검증. 3) 전원 평면의 물리적 파라미터를 이용한 설계 가이드 제시. 제시한 내용을 바탕으로 하여 DRAM 모듈에서 전원 및 접지평면 성능을 안정화를 이루기 위한 효과적인 De-coupling 커패시터의 용량과 개수를 결정하는 방법을 기술하였다 이 설계 방법론은 스트립 구조 및 do-coupling 커패시터를 갖는 DRAM 모듈에서 효과적으로 사용할 수 있다.
A new technology for reducing photolithography process from a four step to a three step process in the fabrication of TFT LCD is introduced. The core technology for 3-mask-TFT processes is the lift-off process [1], by which the PAS and PXL layers can be formed simultaneously. A different method of the lift-off process was developed in order to enhance the performance of efficiency with conventional positive and not negative PR which is the generally used in other lift-off process. In addition, the removal capacity of the ITO/PR in lift-off process was evaluated. The evaluation results showed that the new process can be run in conventional TFT production condition. In order to apply this new process in existing TFT process, several tests were conducted to ensure stability of the TFT process. It was found that the outgases from PR on the substrate in ITO sputtering chamber do not raise any problem, and the deposited ITO film beside the PR has conventional ITO qualities. Furthemore, the particles that were produced due to the ITO chips in PR strip bath could be reduced by the existing filtering system of stripper. With the development of total process and design of the structure for TFT using this technology, 3-mask-panels were achieved in TN and IPS modes, which showed the same display performances as those with the conventional 4mask process. The applicability and usefulness of the 3-mask process has already verified in the mass production line and in fact it currently being used for the production of some products.
본 논문에서는 전자기적 결합 급전 소형 광대역 디스크-로디드 모노폴 안테나의 사각 디스크에 연결된 단락핀의 수와 배열 간격 등의 변화에 따른 안테나 특성을 연구하고 각각의 단락핀 수에 따른 최적화된 안테나를 설계하였다. 전자기적 결합 급전 소형 모노폴 안테나는 각각 모노폴로 동작하는 단락된 사각 디스크의 공진과 사각 스파이럴 스트립 급전 선로의 공진이 전자기적으로 결합하여 넓은 대역폭을 가지게 된다. 안테나에서 사각 디스크의 단락핀의 수와 배열 간격은 디스크의 캐패시턴스에 영향을 주게 되어 공진주파수는 1.90 GHz에서 2.556 GHz까지 이동하며 이에 따라서 안테나의 전기적 크기와 대역폭에도 영향을 미치게 된다. 사각 디스크에 단락핀이 3개 연결되었을 때 안테나는 2.556 GHz의 중심 주파수에서 전기적 부피가
본 논문에서는 초고주파 대역의 패키징을 위한 동축커넥터와 마이크로스트립의 전이 구조를 해석하고 측정하였다. 현재까지 여러 가지 전이구조의 최적화에 대한 연구는 활발히 이루어졌다. 하지만 주로 특정 전송 선로에 대해서만 개선되어져 왔기 때문에 그 적용범위가 매우 좁다. 따라서 본 논문에서는 상용화되고 있는 비유전율이 2, 5, 10인 세 종류의 기판을 모델로 해석하였다. 또한 FEM 해석의 신뢰성을 확인 후 전이부 분의 등가회로 모델을 추출하고, 추출된 물리적인 값들을 결정 하는 요인을 찾아내고 최적의 전이 특성을 위한 전자기적 변수들을 확인하였다. 더불어 기판 유전율과 마이크로스트림 구조를 기준으로 최적의 전이특성을 내는 전이구조를 제시하였다. 본 논문의 결과는 마이크로파 패키징 개발에서 동축커넥터와 마이크로스트립 최적의 전이구조 설계에 효과적으로 활용 될 수 있으리라 기대된다.
본 연구의 목적은 식 a:b=c:d의 의미 구조를 분석하고 학습 지도에의 시사점을 확인하는 것이다. 분석 결과, 식 a:b=c:d는 다음과 같은 다중의 의미를 지니고 있다. 한 상황에 내재된 다른 비 구조, 다른 상황에 내재된 공통된 비 구조, 다른 상황에 내재된 제3의 수량의 같음. 식 a:b=c:d의 의미 학습 지도에서 단위를 유연하게 설정하여 한 상황에서 다른 구조 보기와 다른 상황에서 같은 구조 보기, 이중테이프 모델 사용, 양의 속성의 차이에 따른 비율의 의미와 그 중요성이 강조될 필요가 있다. a:b=c:d의 전체 의미 구조에 비추어 보면, 우리나라에서 이루어져 온 비례식 의미 학습 지도는 식 a:b=c:d의 의미의 한정된 부분을 제한된 방식으로 다루고 있다.
항공영상을 이용하여 수치표면자료와 같은 3차원 자료를 자동으로 제작하기 위해서는 영상정합이 반드시 필요하다. 최근 사용되고 있는 항공 디지털 프레임 영상은 과거의 아날로그 영상에 비해 폐색지역이 적은 고중복도 다중 스트립 영상으로 촬영되기에 용이하다. 최근 다중 스트립 영상을 이용한 다중영상정합 기법에 대한 연구가 많이 이루어지고 있으며, 특히 각 영상에서 추출된 점(point feature)이나 형상(linear feature)의 유사성 측정 방법에 대한 연구가 진행되고 있다. 본 연구에서는 수직궤적 기반 다중영상정합을 대상으로 영역기반 유사성 측정 방법으로 SNCC(Sum of Normalized Cross-Correlation)와 SSD(Sum of Squared-Difference) 방법을 비교 분석하였다. 또한 영역기반 유사성 측정에 필요한 요소로 영상의 화소값, 화소값 기울기 강도, 화소값과 화소값 기울기 강도 평균을 각각 사용하여 결과를 비교하였다. 이 외에도 영역기반 유사성 측정에서 중요한 요소인 기준 윈도우의 크기를 비정규 적응형 기준 윈도우 방법과 정규 적응형 윈도우 방법을 적용하여 결과를 비교 분석하였다. 실험을 위하여 사용된 항공영상은 ZI Imaging 사의 DMC (Digital Modular Camera)에 의해 종중복도는 80%, 횡중복도는 60%로 촬영되었으며, 3개의 스트립으로 구성되었다. 다양한 방법으로 실험을 수행한 결과에 따르면 유사성 측정 방법으로는 SNCC, 유사성 측정 요소로는 화소값과 화소값 기울기 강도 평균, 그리고 비정규 적응형 기준 윈도우가 수직궤적 기반 다중영상정합의 영역기반 유사성 측정에 가장 적합하다는 것을 확인하였다.
Rice consumption has been continuously decreasing as the eating habits of Koreans have become westernized and diversified. The per capita annual rice consumption in Korea has dropped sharply from 136.4 kg in 1970 to 61.9 kg in 2016. The Korean government, therefore, has been trying to promote rice consumption by invigorating the processed food industry using rice flour. To facilitate the market for processed rice foods, it is essential to develop proper milling technology in terms of flour particle size and damaged starch content to produce high quality rice flour at competitive cost. Dry milling and wet milling are the two major processes used to produce rice flour. Although the dry milling process is relatively simple with a lower production cost, damaged starch content increases because of the high grain hardness of rice. In wet milling, the quality of rice flour is improved by reducing flour particle size as well as damaged starch content through soaking procedures. However, the production costs are high because of the additional expenses associated with the disposal of waste water, sterilization and drying of the wet flour. Recently developed technologies such as jet milling and cryogenic milling also require expensive investment and production. Therefore, developing new rice cultivars with dry milling adaptability as well as good processing properties is an important goal of rice breeding in Korea. 'Suweon 542' is a floury endosperm mutant line derived from sodium azide treatment on a high-yield, early maturing, and non-glutinous japonica rice cultivar, 'Namil'. Compared with the wild type, after dry milling process, the grain hardness of 'Suweon 542' was significantly lower because of its round and loosely packed starch granules. Also, the flour of 'Suweon 542' had significantly smaller particles and less damaged starch than 'Namil' and other rice cultivars and its particle size distribution was similar to a commercial wheat cultivar. Recently, through collaborations with nine universities and food companies, a total of 21 kinds of processed prototypes, using the dry milling flour of 'Suweon 542', were evaluated. In the production of major rice processing products, there was no significant quality difference between the flours prepared by wet milling and dry milling. Although the amount of water added to the dough was slightly increased, it was confirmed that the recipe applying the wet flour could be used without significant change. To efficiently transfer the floury endosperm characteristics of 'Suweon 542' to other commercial rice cultivars, it is essential to develop DNA marker tightly linked to the target gene. Association analysis using 70 genome-wide SSR markers and 94 F2 plants derived from 'Suweon 542'/'Milyang 23' showed that markers on chromosome 5 explained a large portion of the variation in floury grains percentage (FGP). Further analysis with an increased number of SSR markers revealed that the floury endosperm of 'Suweon 542' was directed by a major recessive locus, flo7(t), located in the 19.33-19.86 Mbp region of chromosome 5, with RM18639 explaining 92.2% of FGP variation in the F2 population. Through further physical mapping, a co-segregate and co-dominant DNA marker with the locus, flo7(t) was successfully developed, by which, thereby, breeding efficiency of rice cultivars having proper dry milling adaptability with high yield potential or useful functional materials would be improved. 'Suweon 542' maintained the early maturity of the wild type, Namil, which can be used in rice-wheat double cropping systems in Korea not only for improved arable land but also for sharing flour production facilities. In addition to the high susceptibility against major rice diseases, nevertheless, another possible drawback of 'Suweon 542' is the high rate of viviparous under prolonged rainfall during the harvesting season. To overcome susceptibility and vivipary of 'Suweon 542', the progeny lines, derived from the crosses 'Suweon 542' and 'Jopyeong', an early maturing rice cultivar with multiple resistance against rice blast, bacterial blight, and rice strip virus, and 'Heugjinju', a anthocyanin pigment containing black rice cultivar, were intensively evaluated. As the outputs, three dry milling suitable rice elite lines, 'Jeonju614', 'Jeonju615', and 'Jeonju616' were developed.
The wall shear stress in the vicinity of end-to end anastomoses under steady flow conditions was measured using a flush-mounted hot-film anemometer(FMHFA) probe. The experimental measurements were in good agreement with numerical results except in flow with low Reynolds numbers. The wall shear stress increased proximal to the anastomosis in flow from the Penrose tubing (simulating an artery) to the PTFE: graft. In flow from the PTFE graft to the Penrose tubing, low wall shear stress was observed distal to the anastomosis. Abnormal distributions of wall shear stress in the vicinity of the anastomosis, resulting from the compliance mismatch between the graft and the host artery, might be an important factor of ANFH formation and the graft failure. The present study suggests a correlation between regions of the low wall shear stress and the development of anastomotic neointimal fibrous hyperplasia(ANPH) in end-to-end anastomoses. 30523 T00401030523 ^x Air pressure decay(APD) rate and ultrafiltration rate(UFR) tests were performed on new and saline rinsed dialyzers as well as those roused in patients several times. C-DAK 4000 (Cordis Dow) and CF IS-11 (Baxter Travenol) reused dialyzers obtained from the dialysis clinic were used in the present study. The new dialyzers exhibited a relatively flat APD, whereas saline rinsed and reused dialyzers showed considerable amount of decay. C-DAH dialyzers had a larger APD(11.70
The wall shear stress in the vicinity of end-to end anastomoses under steady flow conditions was measured using a flush-mounted hot-film anemometer(FMHFA) probe. The experimental measurements were in good agreement with numerical results except in flow with low Reynolds numbers. The wall shear stress increased proximal to the anastomosis in flow from the Penrose tubing (simulating an artery) to the PTFE: graft. In flow from the PTFE graft to the Penrose tubing, low wall shear stress was observed distal to the anastomosis. Abnormal distributions of wall shear stress in the vicinity of the anastomosis, resulting from the compliance mismatch between the graft and the host artery, might be an important factor of ANFH formation and the graft failure. The present study suggests a correlation between regions of the low wall shear stress and the development of anastomotic neointimal fibrous hyperplasia(ANPH) in end-to-end anastomoses. 30523 T00401030523 ^x Air pressure decay(APD) rate and ultrafiltration rate(UFR) tests were performed on new and saline rinsed dialyzers as well as those roused in patients several times. C-DAK 4000 (Cordis Dow) and CF IS-11 (Baxter Travenol) reused dialyzers obtained from the dialysis clinic were used in the present study. The new dialyzers exhibited a relatively flat APD, whereas saline rinsed and reused dialyzers showed considerable amount of decay. C-DAH dialyzers had a larger APD(11.70