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pro vyhledávání: '"B.N. SUBBA RAO"'
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Physics. 86:443-448
From a determination of the 358 keV γ → 81 keV γ coincidence rate, the total conversion coefficient is determined to be α = 1.76±0.03 and the K-conversion coefficient is deduced to be αK = 1.44±0.03. The nuclear structure effect parameter is
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Physics. 27:28-37
With the main aim of studying the nuclear structure effect on the internal conversion process of the l-forbidden 81 keV M1 transition, angular correlation measurements with the 358 and 81 keV gamma-rays, and with the 358 keV gamma-ray and the K-conve
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Physics. 28:503-511
Gamma-gamma coincidences of transitions in Gd155 have been studied. The (45 keV gamma)—(60 keV gamma) angular correlation was measured and could be represented by W(θ) = 1 + (0.155±0.016) P2 (cos θ) + (0.028±0.025) P4 (cos θ), which requires,
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Physics. 36:342-351
The decay of Gd159 has been investigated and accurate gamma ray intensities have been determined. The 225 keV gamma→79 keV gamma angular correlation was measured. The observed correlation supports the assignment of 5 2 → 7 2 → 5 2 to the sequen
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Instruments and Methods. 45:22-40
This paper deals with a review of the several methods which have been employed hitherto and some few which can be employed for determining internal conversion coefficients-mainly or primarily for the conversion process in the K-electron (1 s 1 2 ) sh
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Physics. 68:270-272
The results 1 ) of the measurement of the angular correlation of the 358keV gamma ray K conversion electron of the 81 keV transition in Cs 133 are reinterpreted in the light of the recent recognition of the sign reversal of the interference particle
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Physics. 72:414-416
Earlier1) angular correlation data are reinterpreted, with the aid of L I L III subshell ratios, together with the nuclear structure effect on the LI conversion coefficient of the 57.1 keV transition. This results in a 5 2 − → 3 2 − → 5 2 + s
Autor:
B.N. Subba Rao
Publisher Summary In an experiment described in the chapter, the 57.1-keV γ > 74.5-keV γ angular correlation required the spin of the 131.6-keV state in Dy 161 to be either 3/2 or 5/2, with equal validity, if δ 2 57 was to be 0.04. In the experime
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::cfd8d83ab060c752bcf9a7d545a94b34
https://doi.org/10.1016/b978-0-12-395610-1.50049-3
https://doi.org/10.1016/b978-0-12-395610-1.50049-3
Autor:
R.G. ALBRIDGE, PETER ALEXANDER, AGDA ARTNA, D. ASHERY, I.M. BAND, ALBERT A. BARTLETT, KARL-ERIK BERGKVIST, CHANDER P. BHALLA, A.E. BLAUGRUND, M. BOGDANOVIĆ, H.R. BOWMAN, H.W. BOYD, C.H. BRADEN, S.M. BRAHMAVAR, W.H. BRANTLEY, D.R. BRUNDRIT, C.O. CARROLL, J.A. COOPER, W.L. CROFT, H. DANIEL, BERNHARD DEUTCH, I.O. DUROSINMI-ETTI, G.W. EAKINS, H. EJIRI, PETER ERMAN, G.T. EWAN, W.B. EWBANK, A. FAESSLER, F. FALK, A.P. FERESIN, JOHN FEUERBACHEr, R.B. FRANKEL, M. FRIEDMAN, J.S. GEIGER, T.R. GERHOLM, R. HAGER, S. HAGSTRöM, J.H. HAMILTON, E.N. HATCH, S.K. HAYNES, R.J. HERICKHOFF, C.J. HERRLANDER, J.M. HOLLANDER, LENNART HOLMBERG, POUL HORNSH∅J, SÖLVE Hultberg, P. JAHN, J.F.W. JANSEN, S. JHA, N.R. JOHNSON, R. KALISH, John W. KANE, T. KATOH, L.S. KISSLINGER, M. KUNTZE, W.H.G. LEWIN, M.A. LISTENGARTEN, R.J. LOMBARD, R.E. MCADAMS, J. MARAÑÓN, A. MIRANDA, M. MLADJENOVIĆ, J. MORAGUES, A. MUKERJI, G.C. NELSON, C. NORDLING, T. NOVAKOV, R.F. O'CONNELL, R.H. OTHAZ, S.C. PANCHOLI, D.R. PARSIGNAULT, B. PATNIAK, E.T. PATRONIS, B.-G. PETTERSSON, J.J. PINAJIAN, JOHN L. POWER, K.G. PRASAD, M.K. RAMASWAMY, A.V. RAMAYYA, B.N. SUBBA RAO, J.O. RASMUSSEN, PILAR REYES-SUTER, M.E. ROSE, H. RYDE, MITSUO SAKAI, W. SCHEUER, E. SELTZER, S.K. SEN, R.P. SHARMA, D.A. SHIRLEY, K. SIEGBAHN, L.A. SLIV, H. SNELLMAN, G. SPANNAGEL, P.H. STELSON, R. STEPIĆ, N.J. STONE, TITO SUTER, S.G. THOMPSON, B.V. THOSAR, J.E. THUN, S. TÖRNKVIST, B. VAN NOOIJEN, LIBOR J. VELINSKY, M.A. VELINSKY, H. VIGNAU, M.E. VOIKHANSKY, A.H. WAPSTRA, R.L. WATSON, L.D. WYLY, T. YAMAZAKI, M.J. ZENDER, E.F. ZGANJAR
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::09728debf9c93e8f45a6b8ee15b806fa
https://doi.org/10.1016/b978-0-12-395610-1.50003-1
https://doi.org/10.1016/b978-0-12-395610-1.50003-1
Autor:
B.N. Subba Rao
Publikováno v:
Nuclear Instruments and Methods. 36:59-60
Exact expressions for the attenuation factors in the P 2 and P 4 terms of the angular correlation function are deduced and presented as functions of τx and the semivertical angle γ only. These are also given in the limit of low energies for which