• Title/Summary/Keyword: Film Production

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Optimum Management for Overwintering of Pinus densiflora Container Seedlings (소나무 용기묘의 적정 월동 관리)

  • Kim, Jong Jin;Song, Kook Hyun;Yoon, Taek Seong
    • Journal of Korean Society of Forest Science
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    • v.97 no.1
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    • pp.53-60
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    • 2008
  • This study was carried out to investigate the optimum management system during a overwintering for the production of Pinus densiflora container 2-0 seedlings. The experiment performed between 2005~2006 in a polyethylene film house (PE house) located at Yeoju-Gun in Kyungki-Do. During the winter in the PE house, the difference in maximum day temperature and minimum day temperature was large, and the difference in temperature was detected between the container keeping locations. During the winter season, the maximum day temperatures at the seedling bench in January and February were $32.8^{\circ}C$ and$36.6^{\circ}C$, respectively, whereas those at the ground in January and February were $16.0^{\circ}C$ and $24.4^{\circ}C$, respectively. Water contents of container seedlings was reduced gradually from the beginning the experiment, and reduced rapidly from February to March, and increased rapidly from April. Container seedlings showed different death rate according to the extending of the irrigation cycle. Death rate by one week and two weeks of irrigation cycle was 4.8% and 6.5%, and 38.5% and 49.4% of death rate occurred by three and four weeks of irrigation cycle, respectively. It is suggested that the proper irrigation cycle for P. densiflora 2-0 container seedlings during overwintering is two weeks. When containers placed directly on the ground, the root of container seedlings went out through the drainage of the container, and grew out in the soil. These roots were cut while moving the container to the bench in spring.

Development of an Improved Numerical Methodology for Design and Modification of Large Area Plasma Processing Chamber

  • Kim, Ho-Jun;Lee, Seung-Mu;Won, Je-Hyeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.221-221
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    • 2014
  • The present work proposes an improved numerical simulator for design and modification of large area capacitively coupled plasma (CCP) processing chamber. CCP, as notoriously well-known, demands the tremendously huge computational cost for carrying out transient analyses in realistic multi-dimensional models, because electron dissociations take place in a much smaller time scale (${\Delta}t{\approx}10-8{\sim}10-10$) than time scale of those happened between neutrals (${\Delta}t{\approx}10-1{\sim}10-3$), due to the rf drive frequencies of external electric field. And also, for spatial discretization of electron flux (Je), exponential scheme such as Scharfetter-Gummel method needs to be used in order to alleviate the numerical stiffness and resolve exponential change of spatial distribution of electron temperature (Te) and electron number density (Ne) in the vicinity of electrodes. Due to such computational intractability, it is prohibited to simulate CCP deposition in a three-dimension within acceptable calculation runtimes (<24 h). Under the situation where process conditions require thickness non-uniformity below 5%, however, detailed flow features of reactive gases induced from three-dimensional geometric effects such as gas distribution through the perforated plates (showerhead) should be considered. Without considering plasma chemistry, we therefore simulated flow, temperature and species fields in three-dimensional geometry first, and then, based on that data, boundary conditions of two-dimensional plasma discharge model are set. In the particular case of SiH4-NH3-N2-He CCP discharge to produce deposition of SiNxHy thin film, a cylindrical showerhead electrode reactor was studied by numerical modeling of mass, momentum and energy transports for charged particles in an axi-symmetric geometry. By solving transport equations of electron and radicals simultaneously, we observed that the way how source gases are consumed in the non-isothermal flow field and such consequences on active species production were outlined as playing the leading parts in the processes. As an example of application of the model for the prediction of the deposited thickness uniformity in a 300 mm wafer plasma processing chamber, the results were compared with the experimentally measured deposition profiles along the radius of the wafer varying inter-electrode gap. The simulation results were in good agreement with experimental data.

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Contact Transfer Printing Using Bi-layer Functionalized Nanobio Interface for Flexible Plasmonic Sensing

  • Lee, Jihye;Park, Jiyun;Lee, Junyoung;Yeo, Jong-Souk
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.413-413
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    • 2014
  • In this paper, we present a fabrication method of functionalized gold nanostructures on flexible substrate that can be implemented for plasmonic sensing application. For biomolecular sensing, many researchers exploit unconventional lithography method like nanoimprint lithography (NIP), contact transfer lithography, soft lithography, colloidal transfer printing due to its usability and easy to functionalization. In particular, nanoimprint and contact transfer lithography need to have anti-adhesion layer for distinctive metallic properties on the flexible substrates. However, when metallic thin film was deposited on the anti-adhesion layer coated substrates, we discover much aggravation of the mold by repetitive use. Thus it would be impossible to get a high quality of metal nanostructure on the transferred substrate for developing flexible electronics based transfer printing. Here we demonstrate a method for nano-pillar mold and transfer the controllable nanoparticle array on the flexible substrates without an anti-adhesion layer. Also functionalization of gold was investigated by the different length of thiol applied for effectively localized surface plasmonic resonance sensing. First, a focused ion beam (FIB) and ICP-RIE are used to fabricate the nanoscale pillar array. Then gold metal layer is deposited onto the patterned nanostructure. The metallic 130 nm and 250 nm nanodisk pattern are transferred onto flexible polymer substrate by bi-layer functionalized contact imprinting which can be tunable surface energy interfaces. Different thiol reagents such as Thioglycolic acid (98%), 3-Mercaptopropionic acid (99%), 11-Mercaptoundecanoic acid (95%) and 16-Mercaptohexadecanoic acid (90%) are used. Overcoming the repeatedly usage of the anti-adhesion layer mold which has less uniformity and not washable interface, contact printing method using bi-layer gold array are not only expedient access to fabrication but also have distinctive properties including anti-adhesion layer free, functionalized bottom of the gold nano disk, repeatedly replicate the pattern on the flexible substrate. As a result we demonstrate the feasibility of flexible plasmonic sensing interface and anticipate that the method can be extended to variable application including the portable bio sensor via mass production of stable nanostructure array and other nanophotonic application.

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Issues in Ancient Metal Wire Inlay: A Case Study of Relics from Baekje (고대 금속 선상감 기법의 쟁점과 그 해석 - 백제 선상감 자료를 중심으로 -)

  • Choi, Gieun
    • Conservation Science in Museum
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    • v.20
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    • pp.13-30
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    • 2018
  • Ancient metal objects with inlaid designs were mainly decorated using the wire inlay technique in which "V"- or "U"-shaped grooves were cut in a metal object and then filled with gold or silver. Previous studies on ancient metal objects featuring wire inlay generally attempted to ascertain the inlay techniques applied by examining photomicroscopes acquired during conservation treatment. However, they had limitations when examining wire inlay technique to the minute details. Wire inlay technique can be better investigated by enlarging X-ray films of relics using stereoscopic microscopy under transmitted light. The core processes of the wire inlay technique involve cutting grooves using a chisel and creating the inlay wires, but researchers hold varying opinions about the two processes. This study analyzed the entirety of the materials able to shed light on the main processes applied in Baekje wire inlay by examining X-ray films of relics through stereoscopic microscopy. This exhaustive research revealed that two types of techniques were used for wire inlay during the Baekje period. One is a plastic process of engraving dotted lines using a chisel and is found mostly in objects from the Cheonan and Gongju areas. The other is a cutting process that incises fine lines and was used mostly in relics from the Osan, Seosan, and Wanju areas. It is likely that the Baekje wire inlay techniques feature regional differences because the respective techniques were used or introduced by different groups of people.

A Study on Media Property of Timelapse (타임랩스 영상의 미디어적 특성에 관한 연구)

  • Chung, Kue-Hyung
    • Cartoon and Animation Studies
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    • s.45
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    • pp.215-233
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    • 2016
  • Timelapse which was appeared Georges Mellieoseu in 1897 was not familiar to people and was not popular in film or broadcast industry in spite of long history. But about 5 years ago, timelapse has become distinguished in all around image art, because it show us aesthetic extraction of time and variation of color in Vimeo and Youtube which neve been seen before. So nowadays latest camera has come out with default menu which can shoot timelapse. But popularity of timelapse seem not development of cinematography technique or appearance of new function but production of image which reflects ages of present with fully accept digital media property. This study is approached from two formative characteristics. First it is strengthen of time which is showed timelapse and analog media from a comparison angle. Second, it is how to extend their sense and imitate images through resolution which can be possible high quality image and color especially with Raw data Through these methodology, this study defines correlation of character of digital media and artistic value of images in timelapse. And also it cleary assures the era of penetrating art has not only visual amusement as known but, also representative value of our ages and technology of media.

A Study on the Stylistic Features of Muczynski's Music Which Affects Movie (무진스키의 음악이 영화에 미친 양식적 특성 연구)

  • Yoon, YoungJo
    • Cartoon and Animation Studies
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    • s.49
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    • pp.589-610
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    • 2017
  • This study aimed at examining the music world of the composer Muczynski, who played an important and meaningful role in the various experimental trends of music which began to appear in the early $20^{th}$ century, and his works, thereby understanding his relationship with the development of music of various genres today. In the study, his pieces of piano music among his works, which formed the basis for his music, were analyzed. The study examined stylistic characteristics, that is techniques of various types including form, melody, harmony, tonality, rhythm and structure, and introduced the composer's growth in terms of music and philosophical background. Muczynski, the composer who showed the characteristics of neoclassicism, neoromanticism and neobaroque in contrast to the various forms of the $20^{th}$ music, namely music of free styles including atonal music, twelve-tone technique, avant-garde music and electronic music, used traditional forms. However, the characteristics of his works are very free. In addition, in the 1960s, he participated in the production of documentary movie music, creating very creative and sensational music. Muczynski's music has the features of tonality and shows neoclassic and neoromantic features including economical idea, lyrical melody, bitonality and nine-note scale. His music, therefore, is being evaluated as very creative and valuable and is largely significant in that it has provided a good basis for the development of modern movie music and jazz music today.

Studies on the Mass-production System for Making Biodegradable Film Based on Chitosan/gelatin Blend (키토산/젤라틴 블랜드 폴리머를 이용한 생분해성 필름의 대량생산 시스템에 관한 기초 연구)

  • Kim, Byung-Ho;Park, Jang-Woo;Woo, Moon-Jea
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.12 no.2
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    • pp.117-123
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    • 2006
  • To mass-product useful biopolymer films, chitosan/gelatin blend films were prepared by solution casting method. Effect of mixing ratio, tensile strength(TS), elongation(${\Delta}E$) at break, total color difference(E), water vapor permeability(WVP) and oxygen permeability(OP) on chitosan/gelatin blend films properties were investigated. TS, ${\Delta}E$, E, WVP and OP values of chitosan/gelatin blend films were 43.43-38.30 MPa, 9.02-15.09%, 1.28-3.81, $0.8420-0.9673ng{\cdot}m/m^2{\cdot}s{\cdot}Pa$ and $1.5472{\times}10^{-7}-1.5424{\times}10^{-7}mL{\cdot}{\mu}m/m^2{\cdot}s{\cdot}Pa$, respectively. TS of the blend films decreased, while E and E of the blend films increased with increasing chitosan content. WVP and OP of the blend films did not show any significant relationship with mixing ratio and thickness of the blend films. OP of the blend films were lower than those of low density polyethylene and oriented polypropylene.

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Growth and Yield Characteristics of Waxy Corn Registered According to the Different Sowing Time for Organic Seed Production (찰옥수수 유기채종에 따른 파종기별 생육 및 수량특성)

  • Goh, Byeong-Dae;Park, Jong-Yeol;Jang, Eun-Ha;Park, Ki-Jin;Yoon, Byeong-Seong;Jang, Jin-Sun
    • Proceedings of the Korean Society of Organic Agriculture Conference
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    • 2009.12a
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    • pp.296-296
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    • 2009
  • 국제기준(Codex)에 부합하는 유기농산물의 생산을 위해서는 저항성 품종의 유기종자 사용을 원칙으로 규정하고 있으나, 현재까지 우리나라의 경우는 찰옥수수 등 주요 식량작물에 대한 유기채종기술이 거의 전무한 실정이다. 본 연구는 찰옥수수 유기채종기술 확립을 위한 기초 자료로 이용하고자 찰옥수수 유기 채종에 따른 파종기별 생육 및 수량특성에 대하여 검토하였다. 유기종자 생산을 위한 채종시험은 홍천군 남면에 위치한 농가 유기포장에서 수행되었으며, 시험품종은 옥수수시험장에서 육성 보급되고 있는 미백2호 및 미흑찰 원종종자를 이용하였다. 파종기는 4월 16일, 5월 4일, 5월 27일 등 3처리로 구분하여 모 부본 동시파종 하였다. 재식밀도는 80${\times}$25cm로 하여 점파하였고 모 부본의 재식비율은 2:1로 웅주간파 하였다. 잡초방제는 흑색 P.E. Film으로 멀칭 재배하였고, 유기질비료는 H사에서 생산된 혼합유박비료를 전량 기비로 시용하였다. 파종기별 출사일수는 미백2호의 경우 4월 파종에서 79일로 가장 길었고, 파종 시기가 늦을수록 출사일수는 짧아지는 경향을 보였다. 미흑찰의 경우에는 미백2호의 결과와 같은 경향으로 파종시기가 늦을수록 출사일수가 빨라지는 경향을 보였으며, 간장 및 착수고 또한 미백2호와 미흑찰 모두 4월 파종에서 가장 높았고, 파종기가 늦을수록 낮아지는 경향이었다. 이삭특성에 있어서 이삭장과 착립장은 미백2호 및 미흑찰 모두 4월 중순 및 5월 상순 파종간에 큰 차이가 없었으나, 5월 하순 파종에서 현저하게 짧아지는 경향을 보였다. 발아율의 경우 미백2호는 4월 중순 및 5월 상순 파종에서, 미흑찰은 5월 상순 파종에서 높게 나타났다. 종실중과 100립중은 미백2호 및 미흑찰 모두 4월 중순과 5월 상순 파종간에 큰 차이가 없었고, 5월 하순 파종에서 현저하게 감소하였다. 10a당 채종수량은 미백2호의 경우 4월 상순 파종에서 217㎏으로 가장 높았고, 미흑찰은 5월 상순 파종에서 164kg/10a으로 가장 많았으며, 두 품종 모두 5월 하순 파종에서 채종수량의 뚜렷한 감소가 나타났다. 따라서 찰옥수수 유기종자의 안정적 채종과 정상수량 확보를 위해서 미백2호는 4월 중순 파종시에 그리고 미흑찰은 5월 상순 파종시에 채종 안전성이 가장 우수한 것으로 판단되었고, 또한 채종수량에 직접적으로 영향을 미치는 1개 이삭당 종실중과 100립중도 크게 증가하는 것으로 나타났다.

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Study on the Control of Leaf Mold, Powdery Mildew and Gray Mold for Organic Tomato Cultivation (유기농 토마토 재배시 발생하는 잎곰팡이병, 흰가루병, 잿빛곰팡이병의 방제연구)

  • Hong, Sung-Jun;Park, Jong-Ho;Kim, Yong-Ki;Jee, Hyeong-Jin;Han, Eun-Jung;Shim, Chang-Ki;Kim, Min-Jeong;Kim, Jung-Hyun;Kim, Seung-Hyun
    • Korean Journal of Organic Agriculture
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    • v.20 no.4
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    • pp.655-668
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    • 2012
  • Foliar diseases are major constraints to profitable organic tomato production. Especially, powdery mildew, leaf mold and gray mold of tomato occur severely on organic cultured tomatoes in Korea. This study was conducted to develop organic tomato cultivation technology using environmental-friendly disease control methods (resistance cultivar planting, air circulation fan installation, oil-egg yolk mixtures, and microbial agents). When tomatoes were cultivated in plastic film house installed with air circulation fan, daily range of temperature was decreased by $2{\sim}7^{\circ}C$, average relative humidity was decreased by 1~5% compared to those in plastic house without air circulation fan. Consequently, incidence of tomato leaf mold and tomato gray mold was reduced by 55.0% and 24.4%, respectively. Control effect of microbial agents and oil-egg yolk mixtures against major tomato diseases was examined in plastic house. As a result, the control value of microbial agents against tomato gray mold and tomato leaf mold showed at the range of 49.0~55.9 %(gray mold) and 39.2~58.2%(leaf mold), respectively. The control value of oilegg yolk mixtures against tomato powdery mildew showed 97.6%. Fifteen tomato cultivars were evaluated for disease resistance against leaf mold and powdery mildew in organically cultivated tomato field. Among 15 tomato cultivars, seven cultivars including 'Super-top' were found to be high resistant to tomato leaf mold. Also 'Powerking', one of fifteen tomato cultivars, showed to be high resistant to tomato powdery mildew.

Design of a Full-Printed NFC Tag Using Silver Nano-Paste and Carbon Ink (은 나노 분말과 카본 잉크를 이용한 완전 인쇄형 NFC 태그 설계)

  • Lee, Sang-hwa;Park, Hyun-ho;Choi, Eun-ju;Yoon, Sun-hong;Hong, Ic-pyo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.42 no.4
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    • pp.716-722
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    • 2017
  • In this paper, a fully printed NFC tag operating at 13.56 MHz was designed and fabricated using silver nano-paste and carbon ink. The proposed NFC tag has a printed coil with an inductance of $2.74{\mu}H$ on a PI film for application to an NFC tag IC with an internal capacitance of 50 pF. Screen printing technology used in this paper has advantages such as large area printing for mass production, low cost and eco-friendly process compared to conventional PCB manufacturing process. The proposed structure consists of a circular coil implemented as a single layer using silver nano-paste and carbon ink, a jumper pattern for chip mounting between the outer edge and the center of the coil, and an insulation pattern between the coil and the jumper pattern. In order to verify the performance of the proposed NFC tag, we performed the measurements of the printing line width, thickness, line resistance, adhesion and environmental reliability, and confirmed the suitability of the NFC tag based on the full-printed manufacturing method.