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      • N-[1-(benzotriazol-1-yl)butyl]-p-nitroaniline의 구조

        소라,김문집,낙도,Jo, So-Ra,Kim, Mun-Jip,Seong, Nak-Do 한국결정학회 1994 韓國結晶學會誌 Vol.5 No.2

        N-[1-(benzotriazol-1-yl)butyl]-P-nitroaniline ( BBN, C6H7N502) 의 분자 및 결정구조를 반-선 회절 법Abstract으로 연구하였다. 이 결정은 단사정계이고 공간군은 P21/n이다. 단위세포 길이는 a=17.542(2)A, b= 10.755(3)A, c=8.891(1)A 이며 a=b=r=90˚,b=104.58(1)˚,Z=4 이다.구조해석에 사용한 X-선은 CuKa선(λ:1.5418A )을 사용하였다. 분자구조는 직접법으로 풀었으며 최소자승법으로 정밀화하였 다. 최종 신뢰도 R값은 255개 파라메터, F≥4o(F)인 2248개의 회절반점에 대하여 R= 0.0411 이었다. 분자간 결합은 1개의 수소결합인 N(11)-Hll(Nll)‥‥N(3)로 결합되어 있으며, N(11)‥‥N(3)=3.136(2).1, N(11)-Hl 1 (Nl 1) ‥‥N(3) =164.1(15)˚이다. The crystal structure of N-11-(benzotriazol-1-yl)butyl]-P-nitroaniline ( C16H17N502) has been determinedfromsingle crystal x-ray diffractionstudy:C16H17N502 monoclinic, P21/n, a=17542(2)A, b=10.755(3)A, c=8.891(1)A, β=104.58(1)˚, V=1623.4(5)A3, 7=293(2)K, Z=4, Cuka(A = 1.5418A) , The molecular structure was solved was by direct meshed refined by full-matrix least squares to a final R =0.0411 for 2248 unique observed [F≥4o(p) ] reflections and 255 Parameters. The crystal structure is stabilized by intermolecular N (11) -Hl 1 (Nl 1) ‥‥N (3) hydrogen bond with N(11) ‥‥ N(3) =3.136(2)A and N(11)-Hll(Nll)‥‥N(3) =164.1(15) ˚.

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        Bacteriological and etiological investigation of bovine brucellosis in South Korea with importance on control strategies

        이진주(Jin Ju Lee),성소라(So-Ra Sung),염은지(Eun Ji Yum),김성엽(Seong Yeob Kim),김시철(Si-Chul Kim),서윤정(Yoon-Jeong Seo),최정수(Jeong-Soo Choi),윤순식(Soon-Seek Yoon) 한국예방수의학회 2022 예방수의학회지 Vol.46 No.1

        In Korea livestock farms breeding cattle have been suffering from re-emerging problems of Brucella (B.) abortus infection while steady decline of bovine brucellosis. Therefore, this study underscored the identification and association of etiological agent of brucellosis in cattle in South Korea. The incidence of brucellosis in cattle was analyzed by bacteriological and molecular methods in 187 brucellosis-suspicious farms of 11 regions between 2018 and 2020. Brucella isolates from various specimens were identified by Brucella-specific multiplex PCR. Epidemiological data were collected by local official veterinarians through history taking from farmers and animal data systems. In 230 of 560 cattle (40.9%) and 94 of 187 farms (50.3%), a total of 313 B. abortus were isolated from various specimens, the majority of isolates were from supramammary lymph node (41%). In epidemiological findings, the majority of positive cases were mainly caused by resurgence (43.7%) and unknown (37.2%). Of 94 positive cases isolated B. abortus, abortion in cattle infected by B. abortus occurred in 51 farms (54.3%) where led to resurgence in 30 farms and environmental survival of B. abortus in 9 farms. Consequently, these findings revealed the existence of etiological agent of bovine brucellosis in Korea, which still occurred at low levels in distinct regions where are allowed to call for persistent biosecurity. Thus, we highlight that brucellosis in Korea needs to take more effective control strategies with potential evidence. Moreover it is ultimately important to maintain a constant monitoring for eradication of brucellosis.

      • Reciprocal Lattice Explorer의 原理와 使用法

        徐日煥,李珍昊,秋錦洪,林星秀,柳保盈,朴晶蘭,金文執,趙素羅,金憲俊,李正秀,成百石 충남대학교 자연과학연구소 1993 忠南科學硏究誌 Vol.20 No.2

        Reciprocal lattice explorer는 de Jong-Bouman camera와 Buerger precession camera를 合친것이다. 이 explorer를 使用하면 goniometer에 한번 固定한 試料를 使用하여 그 試料의 空間群을 決定하는데 必要한 모든 寫眞을 撮影할 수 있으며 그들은 찌그러지지 않은 逆格子面의 寫眞들이다. 本 論文에서는 de Jong-Bouman 과 Buerger precession 寫眞術의 原理와 使用法을 記述 하였고 또한 de Jong-Bouman의 振動寫眞과 zeroth layer 寫眞으로부터 11個 Laue群의 識別方法도 提示하였다. The reciprocal lattice explorer is an instrument which incorporates the principles of both the Buerger precession and the de Jong-Bouman methods. On the explorer all photographs which are necessary for a space group determination can be taken with a single setting of a crystal and the photographs show undistorted pictures of the reciprocal lattice planes. In this paper, the principles and the usages of the de Jong-Bouman and the Buerger precession photography are described, and a method of 11 Laue group identification using the de Jong-Bouman oscillation and zeroth layer photographs is shown.

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