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    Ahn Sang-Soo : [graphiste]

    Ahn, Sang-Soo
    Paris : Pyramyd
    2005
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    Title: Ahn Sang-Soo : [graphiste] / préf. par Alain le Quernec
    Author: Ahn, Sang-Soo
    Publisher: Paris : Pyramyd
    Date: 2005
    Format: 120 p. : ill. en noir et en coul. ; 16 cm
    Series: Design&designer ; 035
    Documents in this series: Design & designer
    RERO subject: Ahn, Sang-Soo
    Note: Texte bilingue, en anglais et en français
    Identifier: 2350170039 (ISBN)
    RERO No.: R003930142
    Permalink:
    http://data.rero.ch/01-R003930142/html

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    Origin of the Korean Screen Planisphere with both Old and New Star-charts

    Ahn, Sang-Hyeon
    천문학회보 = The Bulletin of the Korean astronomical society, 2014, Vol.39(1), pp.85.2-85.2
    KISTI (Korea Science Collection)
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    Title: Origin of the Korean Screen Planisphere with both Old and New Star-charts
    Author: Ahn, Sang-Hyeon
    Description: The origin of the Korean Screen Planisphere with both Traditional and New Star-Charts, made by Korean Astronomers in the Royal Astronomical Bureau of the Joseon Dynasty by adopting the knowledge of the European astronomy, is investigated by analyzing its inscriptions and star charts. The considerations on both the changes in notations or representations of names of asterisms and the naming taboos used in the Old-style planisphere imply that the star-chart is originated from either the Sukjong-Stele-Replica of Cheonsang-Yeolcha-Punyajido(天象列次分野之圖). The New style planisphere is just the reproduction of Huangdao-congxingtu (黃道總星圖), with the exception of the non-Chinese-traditional stars. The Huangdao-congxingtu was made in 1723 CE by Ignatius K$\ddot{o}$gler who was a Jesuit missionary and worked for the Bureau of Astronomy (欽天監) in the Qing Dyansty. I find that the star chart was imported in 1742 CE from the Qing by An Gukrin (安國麟) who was an astronomer in the Royal Astronomical Bureau of Joseon. The chart became model for the screen star-chart made in 1743 CE and now housed in Bopju temple. I found that the inscriptions are extracted from the sentences in both Xinzhi Lingtai Yixiangzhi (新製靈臺儀象志) and Qinding Yixiangkaocheng (欽定儀象考成). Korean historical records in either Daily Records of the Royal Secretariat of the Joseon Dynasty (承政院日記) or Annals of the Joseonn Dynasty (朝鮮王朝實錄) show that Xinzhi Lingtai-Yixiangzhi was imported from the Qing Dynasty in 1708 CE, and the Qinding Yixiangkaocheng was imported in 1766 CE. Thus, the Korean Screen Planisphere with both Old and New Star-charts was certainly made after 1766 CE.
    Is part of: 천문학회보 = The Bulletin of the Korean astronomical society, 2014, Vol.39(1), pp.85.2-85.2
    Identifier: 1226-2692 (ISSN)

    • Several versions

    Static Numbers to Dynamic Statistics: Designing a Policy-Friendly Social Policy Indicator Framework

    Ahn, Sang-Hoon, Choi, Young, Kim, Young-Mi
    Social Indicators Research, 2012, Vol.108(3), pp.387-400 [Peer Reviewed Journal]

    • Several versions

    GSDC: A Unique Data Center in Korea for HEP research

    Ahn Sang-Un
    EPJ Web of conferences, 01 January 2017, Vol.141, p.03009 [Peer Reviewed Journal]

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    신도 보천가(步天歌)와 협기변방서(協紀辨方書)

    Ahn, Sang-Hyeon
    천문학회보 = The Bulletin of the Korean astronomical society, 2015, Vol.40(1), pp.69.3-69.3
    KISTI (Korea Science Collection)
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    Title: 신도 보천가(步天歌)와 협기변방서(協紀辨方書)
    Author: Ahn, Sang-Hyeon
    Description: 조선 후기의 천문학자 김영(金泳)이 편집하여 1792년에 관상감에서 출간한 신도(新圖) "보천가(步天歌)"는 조선 초기의 "보천가"에서 왕희명(王希明)의 가결을 가져오고, 성도와 주석은 페르디난드 페르비스트의 영향을 받았다고 알려져 있다. 본 논문에서는 1741년에 청(淸)에서 출간된 "협기변방서(協紀辨方書)"에 들어있는 "성도보천가(星圖步天歌)"의 내용과 신도 "보천가"의 내용을 서로 비교하였다. 또한 "협기변방서"의 조선 전래에 관한 역사적 상황을 정리하였다. 이러한 논의를 통해, 김영의 "보천가"는 1741년에 청에서 출간되어 1742년에 조선으로 수입된 "협기변방서"의 "성도보천가"에서 주석과 성도를 취하고, 조선 초기에 간행된 "보천가"에서 가결을 취하여 이룩된 것이라는 결론을 얻었다.
    Is part of: 천문학회보 = The Bulletin of the Korean astronomical society, 2015, Vol.40(1), pp.69.3-69.3
    Identifier: 1226-2692 (ISSN)

    • Several versions

    Correlated event-by-event fluctuations of flow harmonics in Pb-Pb collisions at $\sqrt{s_{\rm NN}}=2.76$ TeV

    Adam, Jaroslav, Adamová, Dagmar, Aggarwal, Madan M, Aglieri Rinella, Gianluca, Agnello, Michelangelo, Agrawal, Nikita, Ahammed, Zubayer, Ahmad, Shafiq F, Ahn, Sang Un, Aiola, Salvatore, Alme, Johan, Helstrup, Håvard, Hetland, Kristin Fanebust, Kileng, Bjarte, Altinpinar, Sedat, Djuvsland, Øystein, Haaland, Øystein Senneset
    Physical review letters, 2016 [Peer Reviewed Journal]

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    Exclusive J /ψ photoproduction off protons in ultraperipheral p-Pb collisions at √sNN = 5.02TeV

    Abelev, Betty, Adam, Jaroslav, Adamová, Dagmar, Aggarwal, Madan M, Aglieri Rinella, Gianluca, Agnello, Michelangelo, Agostinelli, Andrea, Agrawal, Nikita, Ahmad, Nazeer, Ahn, Sang Un, Alme, Johan, Erdal, Hege Austrheim, Helstrup, Håvard, Hetland, Kristin Fanebust, Kileng, Bjarte, Altinpinar, Sedat, Djuvsland, Øystein
    Physical review letters, 2014 [Peer Reviewed Journal]
    Norwegian Open Research Archives (NORA)
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    Title: Exclusive J /ψ photoproduction off protons in ultraperipheral p-Pb collisions at √sNN = 5.02TeV
    Author: Abelev, Betty; Adam, Jaroslav; Adamová, Dagmar; Aggarwal, Madan M; Aglieri Rinella, Gianluca; Agnello, Michelangelo; Agostinelli, Andrea; Agrawal, Nikita; Ahmad, Nazeer; Ahn, Sang Un; Alme, Johan; Erdal, Hege Austrheim; Helstrup, Håvard; Hetland, Kristin Fanebust; Kileng, Bjarte; Altinpinar, Sedat; Djuvsland, Øystein
    Subject: Physics
    Description: We present the first measurement at the LHC of exclusive J/ψ photoproduction off protons, in ultraperipheral proton-lead collisions at √sNN=5.02  TeV. Events are selected with a dimuon pair produced either in the rapidity interval, in the laboratory frame, 2.5y4 (p−Pb) or −3.6y−2.6 (Pb−p), and no other particles observed in the ALICE acceptance. The measured cross sections σ(γ+p→J/ψ+p) are 33.2±2.2(stat)±3.2(syst)±0.7(theor)  nb in p−Pb and 284±36(stat)+27−32(syst)±26(theor)  nb in Pb−p collisions. We measure this process up to about 700 GeV in the γp center of mass, which is a factor of two larger than the highest energy studied at HERA. The data are consistent with a power law dependence of the J/ψ photoproduction cross section in γp energies from about 20 to 700 GeV, or equivalently, from Bjorken x scaling variable between ∼2×10−2 and ∼2×10−5, thus indicating no significant change in the gluon density behavior of the proton between HERA and LHC energies....
    Is part of: Physical review letters, 2014
    Identifier: 0031-9007 (ISSN); 1079-7114 (E-ISSN); 10.1103/physrevlett.113.232504 (DOI)

    • Several versions

    Exclusive J /ψ photoproduction off protons in ultraperipheral p -Pb collisions at √sNN =5.02 TeV

    Abelev, Betty, Adam, Jaroslav, Adamová, Dagmar, Aggarwal, Madan M, Aglieri Rinella, Gianluca, Agnello, Michelangelo, Agostinelli, Andrea, Agrawal, Nikita, Ahmad, Nazeer, Ahn, Sang Un, Alme, Johan, Erdal, Hege Austrheim, Helstrup, Håvard, Hetland, Kristin Fanebust, Kileng, Bjarte, Altinpinar, Sedat, Djuvsland, Øystein
    Physical review letters, 2014 [Peer Reviewed Journal]

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    Effect of SMO16, a KOREAN Poly-Herbal Medicine, on Bone Mass in Ovariectomized Rat

    Seo Il-Bok, Ahn Sang-Hyun
    Kinesiology, December 2017, Vol.2(2), pp.18-22
    Korea Citation Index (NRF)
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    Title: Effect of SMO16, a KOREAN Poly-Herbal Medicine, on Bone Mass in Ovariectomized Rat
    Author: Seo Il-Bok; Ahn Sang-Hyun
    Subject: Ovariectomized Rat ; Osteoporosis ; Osteopontin ; Osteoblast ; Korean Medicine;
    Description: The objective of this study was to explore the effect of SMO16, a Korean poly-herbal medicine, on bone mass in ovariectomized (OVX) rats. The loss of bone mass is known to be associated with hormone deficiency in OVX rats. In the present study, we successfully produced the osteoporosis animal-model by dissecting the ovary. To determine the protective effect of SMO16 in OVX rat, SMO16 was administered at a dose of 2.25 g/kg in saline solution for 8 weeks after OVX. Furthermore, we evaluated the direct effect of SMO16 by using a soft X-ray system and Masson’s trichrome staining, phloxine-tartrazine staining, and immunohistochemistry in vivo. SMO16 significantly regulated the expression of proteoglycan and osteopontin. These data suggest that SMO16 exerts a protective effect against osteoporosis via the activation of proteoglycan and osteopontin that are closely associated with bone balance. Moreover, these findings suggest that SMO16 can act as a potential therapeutic agent for...
    Is part of: Kinesiology, December 2017, Vol.2(2), pp.18-22
    Identifier: 2435-0702 (ISSN)

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    Geometrical Mind in Sky Charts

    안상현, Ahn, Sang-Hyeon
    천문학회보 = The Bulletin of the Korean astronomical society, 2012, Vol.37(1), pp.52.1-52.1
    KISTI (Korea Science Collection)
    Available
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    Title: Geometrical Mind in Sky Charts
    Author: 안상현; Ahn, Sang-Hyeon
    Description: It is often said that there is little geometrical mind in Korean history. However, a method to project the surface of a sphere onto 2-dimensional plain was applied to the representative Korean star chart or Cheonsang Yeolcha Bunyajido (天象列次分野之圖). The method, called the equi-distant polar projection, was explained in detail in ancient Chinese history book of the Tang dynasty, which was originated from older history. Another method of the Mercator projection was introduced by the famous engineer Su Song (蘇頌) of the Song dynasty. The description has quite geometrical thoughts, especially the concept of infinity or convergence appears, However, this type of sky projection method was not widely used in east Asia. When the European Jesuits came to China to evangelize the Chinese people, they found that the Chinese people paid much attention to advanced European astronomical knowledge. Thus, they introduced the European astronomical knowledges into China, and the star chart was one of them. The projection method of the new charts were quite different from the Chinese tradition. When the Koreans brought those new star chart from China, they must have known the geometrical description of the method. The method was described in detail in a volume of Chongzhen Lishi (崇禎曆書) or Xiyang Xinfa Lishu (西洋新法曆書). The explanation consists of three part. One is the quantitative way; another is a geometrical way using axiomatic systems; and the other is the practical method to draw star chart with the geometical projection. However, when we see the Honcheon Jeondo (渾天全圖) that is thought to be duplicated by Kim Jeongho (金正浩), the new geometrical method was not so widely known to the Koreans. I will discuss the reason why the geometrical minds have not been widely adopted in the Korean civilization.
    Is part of: 천문학회보 = The Bulletin of the Korean astronomical society, 2012, Vol.37(1), pp.52.1-52.1
    Identifier: 1226-2692 (ISSN)