Zobrazeno 1 - 10
of 421
pro vyhledávání: '"Soroka, M"'
Autor:
Soroka, M., Yaryshkina, L.
Publikováno v:
Avtomobilʹnyj Transport (Harʹkov), Vol 31, Pp 129-135 (2012)
The key aspects of textile waste use as sorbents for elimination of ecological consequences of technology and emergency oil spills caused by transport were examined in this paper. The adsorption capacity and some parameters of oil sorbents have been
Externí odkaz:
https://doaj.org/article/b375e0c16881432eb574318c06dd68a8
Autor:
Knížek, K., Pashchenko, M., Levinský, P., Kaman, O., Jiříček, P., Hejtmánek, J., Soroka, M., Buršík, J.
Spin Seebeck effect has been investigated in Pt/$\varepsilon$-Fe$_2$O$_3$ bilayers. The $\varepsilon$-Fe$_2$O$_3$ thin layer with $40-70$~nm thickness were deposited by a spin-coating method on Y:ZrO$_2$(100) substrates. The prepared layers are highl
Externí odkaz:
http://arxiv.org/abs/1804.02159
Autor:
Hirschner, J., Knizek, K., Marysko, M., Hejtmanek, J., Uhrecky, R., Soroka, M., Bursik, J., Barcelona, A. Anadon, Aguirre, M. H.
Publikováno v:
Phys. Rev. B 96, 064428 (2017)
Spin Seebeck effect (SSE) has been investigated in thin films of two Y-hexagonal ferrites Ba$_2$Zn$_{2}$Fe$_{12}$O$_{22}$ (Zn2Y) and Ba$_2$Co$_{2}$Fe$_{12}$O$_{22}$ (Co2Y) deposited by a spin-coating method on SrTiO$_3$(111) substrate. The selected h
Externí odkaz:
http://arxiv.org/abs/1703.10903
Akademický článek
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Autor:
MuCap Collaboration, Andreev, V. A., Banks, T. I., Carey, R. M., Case, T. A., Clayton, S. M., Crowe, K. M., Deutsch, J., Egger, J., Freedman, S. J., Ganzha, V. A., Gorringe, T., Gray, F. E., Hertzog, D. W., Hildebrandt, M., Kammel, P., Kiburg, B., Knaack, S., Kravtsov, P. A., Krivshich, A. G., Lauss, B., Lynch, K. R., Maev, E. M., Maev, O. E., Mulhauser, F., Petitjean, C., Petrov, G. E., Prieels, R., Schapkin, G. N., Semenchuk, G. G., Soroka, M. A., Tishchenko, V., Vasilyev, A. A., Vorobyov, A. A., Vznuzdaev, M. E., Winter, P.
Publikováno v:
Phys. Rev. C 91, 055502 (2015)
Background: The rate \lambda_pp\mu\ characterizes the formation of pp\mu\ molecules in collisions of muonic p\mu\ atoms with hydrogen. In measurements of the basic weak muon capture reaction on the proton to determine the pseudoscalar coupling g_P, c
Externí odkaz:
http://arxiv.org/abs/1502.00913
Publikováno v:
Journal of Applied Physics; 12/28/2022, Vol. 132 Issue 24, p1-7, 7p
Autor:
Andreev, V. A., Banks, T. I., Carey, R. M., Case, T. A., Clayton, S. M., Crowe, K. M., Deutsch, J., Egger, J., Freedman, S. J., Ganzha, V. A., Gorringe, T., Gray, F. E., Hertzog, D. W., Hildebrandt, M., Kammel, P., Kiburg, B., Knaack, S., Kravtsov, P. A., Krivshich, A. G., Lauss, B., Lynch, K. R., Maev, E. M., Maev, O. E., Mulhauser, F., Petitjean, C., Petrov, G. E., Prieels, R., Schapkin, G. N., Semenchuk, G. G., Soroka, M. A., Tishchenko, V., Vasilyev, A. A., Vorobyov, A. A., Vznuzdaev, M. E., Winter, P.
Publikováno v:
Phys. Rev. Lett. 110, 012504 (2013)
The MuCap experiment at the Paul Scherrer Institute has measured the rate L_S of muon capture from the singlet state of the muonic hydrogen atom to a precision of 1%. A muon beam was stopped in a time projection chamber filled with 10-bar, ultra-pure
Externí odkaz:
http://arxiv.org/abs/1210.6545
Autor:
Andreev, V. A., Carey, R. M., Ganzha, V. A., Gardestig, A., Gorringe, T., Gray, F. E., Hertzog, D. W., Hildebrandt, M., Kammel, P., Kiburg, B., Knaack, S., Kravtsov, P. A., Krivshich, A. G., Kubodera, K., Lauss, B., Lynch, K. R., Maev, E. M., Maev, O. E., Mulhauser, F., Myhrer, F., Petitjean, C., Petrov, G. E., Prieels, R., Schapkin, G. N., Semenchuk, G. G., Soroka, M. A., Tishchenko, V., Vasilyev, A. A., Vorobyov, A. A., Vznuzdaev, M. E., Winter, P.
We propose to measure the rate \Rd\ for muon capture on the deuteron to better than 1.5% precision. This process is the simplest weak interaction process on a nucleus that can both be calculated and measured to a high degree of precision. The measure
Externí odkaz:
http://arxiv.org/abs/1004.1754
Publikováno v:
Lobachevskii Journal of Mathematics; Apr2024, Vol. 45 Issue 4, p1482-1494, 13p
Autor:
Andreev, V. A., Banks, T. I., Case, T. A., Chitwood, D. B., Clayton, S. M., Crowe, K. M., Deutsch, J., Egger, J., Freedman, S. J., Ganzha, V. A., Gorringe, T., Gray, F. E., Hertzog, D. W., Hildebrandt, M., Kammel, P., Kiburg, B., Knaack, S., Kravtsov, P. A., Krivshich, A. G., Lauss, B., Lynch, K. L., Maev, E. M., Maev, O. E., Mulhauser, F., Özben, C. S., Petitjean, C., Petrov, G. E., Prieels, R., Schapkin, G. N., Semenchuk, G. G., Soroka, M. A., Tishchenko, V., Vasilyev, A. A., Vorobyov, A. A., Vznuzdaev, M. E., Winter, P.
Publikováno v:
Phys.Rev.Lett.99:032002,2007
The rate of nuclear muon capture by the proton has been measured using a new experimental technique based on a time projection chamber operating in ultra-clean, deuterium-depleted hydrogen gas at 1 MPa pressure. The capture rate was obtained from the
Externí odkaz:
http://arxiv.org/abs/0704.2072