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Fluorochlorocyclobutenes와 염화알루미늄과의 반응
박달조,Joshep D. Park,G. I. Moore Korean Chemical Society 1973 대한화학회지 Vol.17 No.1
이 논문은 플루오르의 치환, 분자내의 전위, 분자간의 전이등을 포함하는 fluorochloro-cyclobutenes와 염화 알루미늄과의 반응들을 총괄하여 놓았다. The present paper represents a summary of the reactions of $AlCl_3$with fluorochlorocyclobutenes involving fluorine replacement, and intermolecular transfer.
J. L. Tain,A. Algora,E. Estevez,B. Rubio,E. Valencia,D. Jordan,J. Aysto,T. Eronen,A. Jokinen,I. Moore,H. Pentilla,J. Riisanen,L. Batist,M. Bowry,M. Bunce,W. Gelletly,R. Caballero,G. Cortes,B. Gomez-Ho 한국물리학회 2011 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.59 No.23
A complete characterisation of the β-decay of neutron-rich nuclei can be obtained from the measurement of β-delayed gamma rays and, whenever the process is energetically possible, β-delayed neutrons. The accurate determination of the β-intensity distribution and the β-delayed neutron emission probability is of great relevance in the fields of reactor technology and nuclear astrophysics. A programme for combined measurements using the total absorption gamma-ray spectroscopy technique and both neutron counters and neutron time-of-flight spectrometers is presented.
The Possibilities of the Extended IGISOL Facility at JYFL
H. Penttila,T. Eronen,J. Hakala,A. Jokinen,A. Kankainen,P. Karvonen,V. S. Kolhinen,I. D. Moore,J. Rissanen,M. Reponen,A. Saastamoinen,V. Sonnenschein,J. Aysto 한국물리학회 2011 THE JOURNAL OF THE KOREAN PHYSICAL SOCIETY Vol.59 No.23
The IGISOL mass separator facility at the Accelerator Laboratory of the University of Jyvaskyla will be moved to a new experimental area next to a new high current MCC30/15 light ion cyclotron. The beam from the JYFL heavy ion K-130 cyclotron can also be directed at the IGISOL target in the new location. This allows doubling the run time of the IGISOL facility to about 4000 hours a year. An extended beam distribution system and a larger floor space will afford more permanent set-ups. Neutron converter target is planned to be utilised in order to study neutron induced fission.