• Title/Summary/Keyword: 양명학

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The Electrical Properties of Green OLED by Thickness of Al Layer (녹색 발광 OLED의 음극 두께 변화에 따른 전기적 특성)

  • Yang, Myung-Hak;Ki, Hyun-Chul;Kwak, Jae-Young;Min, Yong-Gi;Hong, Kyung-Jin
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.04c
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    • pp.42-44
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    • 2008
  • In this study, we report an electrical properties of green OLEO, using the changed thickness of Al Layer. We investigated the electrical properties of OLEOs by IVL and optical properties by EL spectrum. The fundamental structure of green OLEOs was ITO anode/TPD($400{\AA}$)/$Alq_3(600{\AA})$)/LiF($10{\AA}$)/Al($200{\sim}600{\AA}$) cathode. The threshold voltage was low value according to the more thin Al layer. The luminance was increased by decreased cathode layer. The threshold voltage was 12V and wavelength was 530nm at $200{\AA}$ cathode.

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Design For Low Reflection of multi-Wavelength Optical Ferryle Used In Vessel Communication (선박통신용 다파장 광커텍터 패럴의 저반사화를 위한 설계)

  • Ki, Hyun-Chul;Kim, Sang-Taek;Yang, Myung-Hark;Hong, Kyung-Jin;Kim, Hwe-Jong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.450-451
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    • 2008
  • In this paper, we have designed the Anti-Reflection (AR) coating for 850, 1310 nm(multi type) and 1310, 1550 nm(multi type) wavelength ranges on the ferrule facet of special optical connector. The reflectance of the AR coated ferrule facet is designed under 5% for 850, 1310 nm(multi type) and 1310, 1550 nm (multi type). AR thin film was deposited by ion- assisted deposition in low temperature. The average return loss of the AR coated ferrule facet is 47.1 dB.

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The Electrical Properties of OLED by surface Etching methode of ITO (ITO 표면 처리방법에 따른 OLED의 전기적 특성)

  • Yang, Myoung-Hak;Ki, Hyun-Chul;Min, Yong-Ki;Hong, Kyung-Jin
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.455-456
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    • 2008
  • In this study, we report that an electrical properties of OLEDs was investigated by the surface etching method of ITO Layer. The electrical properties of OLEDs was measured by IVL and optical properties by EL spectrum. The fundamental structure of OLEDs was ITO anode/TPD(400$\breve{A}$)/$Alq_3(600\breve{A})$/LiF(5$\breve{A}$)/Al(1200$\breve{A}$) cathode. The threshold voltage was low value according to the low resistance of surface. The luminance was increased by decreased surface resistance.

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The Electrical and Optical Properties of OLED by Various Cathode Layer (이중 음극층에 따른 OLED의 전기적 및 광학적 특성)

  • Yang, Myoung-Hak;Ki, Hyun-Chul;Kim, Sang-Ki;Cho, Jae-Chul;Hong, Kyung-Jin
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.421-422
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    • 2008
  • The electrical properties of OLEDs was investigated by the various cathode layer. It was measured by IVL for electrical properties and optical properties by EL spectrum. The structure of OLEDs was ITO/TPD(400$\AA$)/$Alq_3$(600$\AA$)/LiF(5$\AA$)/various cathode layer. The threshold voltage was increased by the deposited Au layer. The luminance was decreased by deposited Au layer.

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삼음삼양(三陰三陽)의 시간배속(時間配屬)에 대한 연구 -관우삼음삼양시간배속연구(關于三陰三陽時間配屬硏究)

  • Lee, Yong-Beom
    • Journal of Korean Medical classics
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    • v.19 no.2 s.33
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    • pp.46-52
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    • 2006
  • ${\ulcorner}$황제내경(黃帝內經)${\lrcorner}$ 내함한의학이론(內含韓醫學理論) 기중삼응삼양적내용비상난(其中三陰三陽的內容非常難) 기원인사(其原因是)${\ulcorner}$황제내경(黃帝內經)${\lrcorner}$ 중삼음삼양적내용비상복집(中三陰三陽的內容非常複雜), 특별시삼음삼양적시간배속매편화일양(特別是三陰三陽的時間配屬每篇不日樣) 본론문통과관우(本論文通過關于子) ${\ulcorner}$황제내경(黃帝內經)${\lrcorner}$ 중삼음삼양적시간배속진행연구(中三陰三陽的時間配屬進行硏究), 득출여하결론(得出如下結論), 운기지주기순서춰시오행(목화토금수)순서(運氣之主氣順序就是五行(木火土金水)順序), 저설명주기변화주요근거형지변화(這說明主氣變化主要根據形之變化), 운기지객기순서취시기지대(運氣之客氣順序就是氣之大小)(일양(一陽)${\longrightarrow}$이양(二陽)${\longrightarrow}$삼양(三陽)${\longrightarrow}$일음(一陰)${\longrightarrow}$이음(二陰)${\longrightarrow}$삼음(三陰))${\longrightarrow}$, 저설명객기변화주요근거기지변화(這說明客氣變化主要根據氣之變化) ${\ulcorner}$소문맥해(素問脈解)${\lrcorner}$ 적삼음삼양월별배속시음관(11월:태음)(的三陰三陽月別配屬是陰關(11月:太陰)${\longrightarrow}$양관(1월:태양)(陽關(1月:太陽)${\longrightarrow}$음합(3월:궐음)(陰闔(3月:厥廠)${\longrightarrow}$양합(5월:양명)(陽闔(5월:陽明))${\longrightarrow}$음추(7월:소음)(陰樞(7月:少陰)${\longrightarrow}$양추(9월:소양)(陽樞(9月少陽). 태양소음시음양세력적기초(太陽少陰是陰陽勢力的基礎), 소이상위표리(所以相爲表裏). 소양소음시음양세력적중간(少陽少陰是陰陽勢力的中間), 소이사위표리(所以杞爲表裏) 태음궐음시음양세력적전성기(太陰歐陰是陰陽勢力的全盛期), 소이상위표리(所以相爲表裏) 차료리적의사반영경락류주(此表養的意思反映經絡流注). 태음양명경류주신체전면(太陰陽明經流注身體前面), 태양소음경류주신체후면( 太陽少陰經流注身體後面 ), 소양궐음경류주신체측면(少陽厥陰經流注身體側面). ${\ulcorner}$령추경맥(靈樞經脈)${\lrcorner}$적12경맥류주순서시태음양면경(的12經脈流注順序是太陰陽明經)${\longrightarrow}$소음태양경(少陰太陽經)${\longrightarrow}$궐음소양경적표리경락위주(厥陰少陽經的表裏經絡爲主). 수선매기류주태음양명경적이유(首先脈氣流主太陰陽明經的理由), 취시후천수곡정미화호흡대기결합이형성경맥지기(就是後天水穀精微和呼吸大氣結合而形成經服之氣). 지후맥기류주소음태양경(之後脈氣流注少陰太陽經), 설명순행태음양명경적후천영양물질전입한열경락이위신(說明盾行太陰陽陽明經的後天營養物質轉入寒熱經絡而爲寫薪), 기차맥기순해궐음소양경적(其次脈氣盾行厥陰少陽經的), 인위한열경락지화기피궐음소양경지풍기조절이후조절조습경락(因爲寒熱經絡之火氣被厥陰少陽經之風氣調節而後調節操濕經絡), 비여작반시(比如作飯時), 화기취시소음태양경(火氣就是少陰太陽經), 풍기취시궐음소양경(風氣就是厥陰少陽經), 정내지반취시태음양명경.(鼎內之飯就是太陰陽明經). ${\ulcorner}$령추음양계일월(靈樞陰陽緊日月)${\lrcorner}$ 적삼음삼양월별배속주요시추관합합관추순서(的三陰三陽月別配屬主要是樞關闔闔關樞順序). 저양배서적원인시개문화관문과정(這樣排序的原因是開門和關門過程). 재춘하(在春夏), 양경락지맥기여개문관문과정(陽經絡之脈氣如開門關門過程), 수착추관합합관추순서순행(隨看樞關闔闔關樞順序盾行), 재추동(在秋冬), 음경락지맥기여개문폐문과정(陰經絡之脈氣如開門閉門過程), 수착추관합합관추순행(隨看樞關闔闔關樞盾行).

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문헌(文獻)에 나타난 폐풍분자(肺風粉刺)에 대한 고찰(考察)

  • Kim, Mi-Seon;Yun, Chang-Yeol
    • Journal of Haehwa Medicine
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    • v.15 no.2
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    • pp.17-27
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    • 2006
  • 以古今文獻爲中心, 對肺風粉刺進行硏究, 得出如下結果: 在 "黃帝內經"的"素問 生氣通天論"和"素問 氣交變大論"中, 首次言及虛勞與熱爲主的病因說. 言及以熱和風熱, 風熱與濕相搏爲主的病因說的著作是"千金方", "證治要訣", "證治準繩", "外科正宗", "諸病源侯論", "洞天奧旨"等. "證治準繩"更詳細地言及其病因, 卽認爲該病是飮食或金石劑等太過, 積熱聚於陽明經而發病. 對顔面部的發病, 古今醫統及諸多文獻都認爲與陽明胃經有關, 而且還與 脾肺有關. "外科正宗"指出風熱閉塞毛竅是其病理所在, 認爲肺風, 粉刺, 酒病鼻的病理相同, 但成爲發生原因的臟腑, 以脾, 肺爲主而各異. 陳士鐸在.洞天奧旨.中指出因肺熱與風導致氣血不和而發病, 且指出此病是靑春男女都.厭倦的疾患. "聖濟總錄"認爲該病是趁精氣虛之機, 邪氣侵入而發生. 而"醫學入門"認爲腎陰不足是發生該病的病機所在. "萬病回春"指出其病因是上焦火, 肺熱, 陽明經鬱熱, 提出治法是凊上降火.

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Annealing Effect on the Crystal Structure of $TiO_2$ Thin Film (이산화티타늄 박막의 열처리에 따른 결정구조 분석)

  • Kim, Seon-Hoon;Yang, Myung-Hak;Kim, Tae-Un;Ki, Hyun-Chul;Kim, Doo-Gun;Han, Myung-Soo;Ko, Hang-Ju;Kim, Hyo-Jin;Kim, Hwe-Jong
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2009.06a
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    • pp.213-213
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    • 2009
  • Titanium dioxide ($TiO_2$) thin films were prepared on glass substrates by ion-assisted electron-beam evaporation with 200nm thickness and subsequently crystallized by rapid thermal annealing at the rage of $200{\sim}700^{\circ}C$ in flowing $N_2$ gas. The crystal structure of the films were examined by X-ray diffractometer. As-deposited $TiO_2$ films were amorphous. After annealing, anatase and rutile phase of $TiO_2$ films were observed together.

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