555 results on '"Lach J"'
Search Results
2. The transverse momentum dependence of charged kaon Bose-Einstein correlations in the SELEX experiment
- Author
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SELEX Collaboration, Nigmatkulov, G. A., Ponosov, A. K., Akgun, U., Alkhazov, G., Amaro-Reyes, J., Asratyan, A., Atamantchouk, A. G., Ayan, A. S., Balatz, M. Y., Blanco-Covarrubias, A., Bondar, N. F., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M. F., Engelfried, J., Eschrich, I., Escobar, C. O., Estrada, N., Evdokimov, A. V., Filimonov, I. S., Flores-Castillo, A., Garcia, F. G., Golovtsov, V. L., Gouffon, P., Gülmez, E., Iori, M., Jun, S. Y., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatrkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Lach, J., Landsberg, L. G., Larin, I., Leikin, E. M., López-Hinojosa, G., Lungov, T., Maleev, V. P., Mao, D., Mathew, P., Mattson, M., Matveev, V., McCliment, E., Moinester, M. A., Molchanov, V. V., Morelos, A., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Ocherashvili, A., Onel, Y., Ozkorucuklu, S., Penzo, A., Petrenko, S. V., Procario, M., Prutskoi, V. A., Razmyslovich, B. V., Romanov, D. A., Rud, V. I., Russ, J., Sánchez-López, J. L., Savchenko, A. A., Simon, J., Sinev, G. V., Sitnikov, A. I., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Tarasov, V. V., Terentyev, N. K., Torres, I., Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Vázquez-Jáuregui, E., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., and Zukanovich-Funchal, R.
- Subjects
High Energy Physics - Experiment ,Nuclear Experiment - Abstract
We report on the measurement of the one-dimensional charged kaon correlation functions using 600~GeV/{\it c} $\Sigma^-$, $\pi^-$ and 540~GeV/{\it c} $p$ beams from the SELEX~(E781) experiment at the Fermilab Tevatron. $K^{\pm}K^{\pm}$ correlation functions are studied for three transverse pair momentum, $k_T$, ranges and parameterized by a Gaussian form. The emission source radii, $R$, and the correlation strength, $\lambda$, are extracted. The analysis shows a decrease of the source radii with increasing kaon transverse pair momentum for all beam types., Comment: 8 pages, 4 figures, 1 table
- Published
- 2015
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3. The Anodic Excursion Peak as a Rapid Way of Measuring the Corrosion of Lead Alloys
- Author
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Lach, J. and Czerwiński, A.
- Published
- 2016
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4. 2,4-Disubstituted pyridine derivatives are effective against intracellular and biofilm-forming tubercle bacilli
- Author
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Korycka-Machała, M., primary, Kawka, M., additional, Lach, J., additional, Płocińska, R., additional, Bekier, A., additional, Dziadek, B., additional, Brzostek, A., additional, Płociński, P., additional, Strapagiel, D., additional, Szczesio, M., additional, Gobis, K., additional, and Dziadek, J., additional
- Published
- 2022
- Full Text
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5. The recovery of metals as high value powders and nanopowders from industrial wastewaters using potential-controlled electrolysis
- Author
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Luchcińska, S., primary, Lach, J., additional, Wróbel, K., additional, Łukomska, A., additional, and Łoś, P., additional
- Published
- 2022
- Full Text
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6. Magnetic Moments of the Baryons: An Experimental Review
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Lach, J., Althoff, Karl-Heinz, editor, and Meyer, Werner, editor
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- 1991
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7. High-Field ESR and Magnetization Study of a Novel Macrocyclic Chelate Trinuclear Ni(II) Complex
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Krupskaya, Y., Parameswaran, A., Alfonsov, A., Klingeler, R., Kataev, V., Beyer, N., Lach, J., Gressenbuch, M., Kersting, B., and Büchner, B.
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- 2010
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8. Nuclear dependence of charm production
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Blanco-Covarrubias, A., Engelfried, J., Akgun, U., Alkhazov, G., Amaro-Reyes, J., Atamantchouk, A. G., Ayan, A. S., Balatz, M. Y., Bondar, N. F., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M. F., Eschrich, I., Escobar, C. O., Estrada, N., Evdokimov, A. V., Filimonov, I. S., Flores-Castillo, A., Garcia, F. G., Golovtsov, V. L., Gouffon, P., Gülmez, E., Iori, M., Jun, S. Y., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Lach, J., Landsberg, L. G., Larin, I., Leikin, E. M., López-Hinojosa, G., Lungov, T., Maleev, V. P., Mao, D., Mathew, P., Mattson, M., Matveev, V., McCliment, E., Moinester, M. A., Molchanov, V. V., Morelos, A., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Ocherashvili, A., Onel, Y., Ozkorucuklu, S., Penzo, A., Petrenko, S. V., Procario, M., Prutskoi, V. A., Razmyslovich, B. V., Rud, V. I., Russ, J., Sánchez-López, J. L., Simon, J., Sitnikov, A. I., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Torres, I., Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Vázquez-Jáuregui, E., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., Zukanovich-Funchal, R., and The SELEX Collaboration
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- 2009
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9. Genomic Insights Into the Mycobacterium kansasii Complex: An Update
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Jagielski, T., Borowka, P., Bakula, Z., Lach, J., Marciniak, B., Brzostek, A., Pennings, L.J., Ingen, J. van, Zolnir-Dovc, M., Strapagiel, D., Jagielski, T., Borowka, P., Bakula, Z., Lach, J., Marciniak, B., Brzostek, A., Pennings, L.J., Ingen, J. van, Zolnir-Dovc, M., and Strapagiel, D.
- Abstract
Contains fulltext : 216651.pdf (publisher's version ) (Open Access)
- Published
- 2020
10. The lead-glass electromagnetic calorimeter for the SELEX experiment
- Author
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Balatz, M.Y., Cooper, P.S., Davidenko, G.V., Dolgolenko, A.G., Dzyubenko, G.B., Evdokimov, A.V., Giller, I., Goncharenko, Y.M., Kamenskii, A.D., Kubantsev, M.A., Kurshetsov, V.F., Lach, J., Landsberg, L.G., Larin, I.F., Matveev, V.A., Moinester, M.A., Nurushev, S.B., Ocherashvili, A., Russ, J., Semyatchkin, V.K., Sitnikov, A.I., Steiner, V., Tsukerman, I.I., Vasiliev, A.N., Vavilov, D.V., Verebryusov, V.S., Victorov, V.A., and Vishnyakov, V.E.
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- 2005
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11. Sports hernias: a systematic literature review
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Caudill, P, Nyland, J, Smith, C, Yerasimides, J, and Lach, J
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- 2008
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12. BioSCOOP – Biobank Sample Communication Protocol. New approach for the transfer of information between biobanks
- Author
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Jarczak, J, primary, Lach, J, additional, Borówka, P, additional, Gałka, M, additional, Bućko, M, additional, Marciniak, B, additional, and Strapagiel, D, additional
- Published
- 2019
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13. Species classification of Mycobacterium avium and Mycobacterium intracellulare based on whole genome analysis
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Lach, J., Marciniak, B., and Strapagiel, D.
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- 2017
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14. Total cross section measurements with π− , Σ− and protons on nuclei and nucleons around [formula omitted]
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Dersch, U., Akchurin, N., Andreev, V.A., Atamantchouk, A.G., Aykac, M., Balatz, M.Y., Bondar, N.F., Bravar, A., Cooper, P.S., Dauwe, L.J., Davidenko, G.V., Dirkes, G., Dolgolenko, A.G., Dreossi, D., Dzyubenko, G.B., Edelstein, R., Emediato, L., Endler, A.M.F., Engelfried, J., Eschrich, I., Escobar, C.O., Evdokimov, A.V., Filimonov, I.S., Garcia, F.G., Gaspero, M., Gerzon, S., Giller, I., Golovtsov, V.L., Goncharenko, Y.M., Gottschalk, E., Gouffon, P., Grachov, O.A., Gülmez, E., Kangling, He, Iori, M., Jun, S.Y., Kamenskii, A.D., Kaya, M., Kilmer, J., Kim, V.T., Kochenda, L.M., Königsmann, K., Konorov, I., Kozhevnikov, A.P., Krivshich, A.G., Krüger, H., Kubantsev, M.A., Kubarovsky, V.P., Kulyavtsev, A.I., Kuropatkin, N.P., Kurshetsov, V.F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L.G., Larin, I., Leikin, E.M., Yunshan, Li, Zhigang, Li, Luksys, M., Lungov, T., Magarrel, D., Maleev, V.P., Mao, D., Chensheng, Mao, Zhenlin, Mao, Masciocchi, S., Mathew, P., Mattson, M., Matveev, V., McCliment, E., McKenna, S.L., Moinester, M.A., Molchanov, V.V., Morelos, A., Mukhin, V.A., Nelson, K.D., Nemitkin, A.V., Neoustroev, P.V., Newsom, C., Nilov, A.P., Nurushev, S.B., Ocherashvili, A., Oleynik, G., Onel, Y., Ozel, E., Ozkorucuklu, S., Patrichev, S., Penzo, A., Petrenko, S.I., Pogodin, P., Povh, B., Procario, M., Prutskoi, V.A., Ramberg, E., Rapazzo, G.F., Razmyslovich, B.V., Rud, V.I., Russ, J., Scheglov, Y., Schiavon, P., Semyatchkin, V.K., Simon, J., Sitnikov, A.I., Skow, D., Smith, V.J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N.K., Thomas, G.P., Uvarov, L.N., Vasiliev, A.N., Vavilov, D.V., Verebryusov, V.S., Victorov, V.A., Vishnyakov, V.E., Vorobyov, A.A., Vorwalter, K., You, J., Wenheng, Zhao, Shuchen, Zheng, and Zukanovich-Funchal, R.
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- 2000
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15. The transverse momentum dependence of charged kaon Bose–Einstein correlations in the SELEX experiment
- Author
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Nigmatkulov, G.A., Ponosov, A.K., Akgun, U., Alkhazov, G., Amaro-Reyes, J., Asratyan, A., Atamantchouk, A.G., Ayan, A.S., Balatz, M.Y., Blanco-Covarrubias, A., Bondar, N.F., Cooper, P.S., Dauwe, L.J., Davidenko, G.V., Dersch, U., Dolgolenko, A.G., Dzyubenko, G.B., Edelstein, R., Emediato, L., Endler, A.M.F., Engelfried, J., Eschrich, I., Escobar, C.O., Estrada, N., Evdokimov, A.V., Filimonov, I.S., Flores-Castillo, A., Garcia, F.G., Giller, I., Golovtsov, V.L., Gouffon, P., Gülmez, E., Iori, M., Jun, S.Y., Kaya, M., Kilmer, J., Kim, V.T., Kochenda, L.M., Konorov, I., Kozhevnikov, A.P., Krivshich, A.G., Krüger, H., Kubantsev, M.A., Kubarovsky, V.P., Kulyavtsev, A.I., Kuropatkin, N.P., Kurshetsov, V.F., Kushnirenko, A., Lach, J., Landsberg, L.G., Larin, I., Leikin, E.M., López-Hinojosa, G., Lungov, T., Maleev, V.P., Mao, D., Mathew, P., Mattson, M., Matveev, V., McCliment, E., Moinester, M.A., Molchanov, V.V., Morelos, A., Nemitkin, A.V., Neoustroev, P.V., Newsom, C., Nilov, A.P., Nurushev, S.B., Ocherashvili, A., Onel, Y., Ozkorucuklu, S., Penzo, A., Petrenko, S.V., Procario, M., Prutskoi, V.A., Razmyslovich, B.V., Romanov, D.A., Rud, V.I., Russ, J., Sánchez-López, J.L., Savchenko, A.A., Simon, J., Sinev, G.V., Sitnikov, A.I., Smith, V.J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Tarasov, V.V., Terentyev, N.K., Torres, I., Uvarov, L.N., Vasiliev, A.N., Vavilov, D.V., Vázquez-Jáuregui, E., Verebryusov, V.S., Victorov, V.A., Vishnyakov, V.E., Vorobyov, A.A., Vorwalter, K., You, J., and Zukanovich-Funchal, R.
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- 2016
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16. Draft Genome Sequences of Mycobacterium kansasii Clinical Strains
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Borowka, P., Lach, J., Bakula, Z., Ingen, J. van, Safianowska, A., Brzostek, A., Dziadek, J., Strapagiel, D., Jagielski, T., Borowka, P., Lach, J., Bakula, Z., Ingen, J. van, Safianowska, A., Brzostek, A., Dziadek, J., Strapagiel, D., and Jagielski, T.
- Abstract
Contains fulltext : 177574.pdf (publisher's version ) (Open Access), Mycobacterium kansasii is a nontuberculous mycobacterial (NTM) pathogen, frequently isolated from clinical samples and responsible for a large part of NTM infections in the human population. Here, we report the draft genome sequences of 12 M. kansasii strains isolated from clinical and host-associated sources from the Netherlands, Germany, and Poland.
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- 2017
17. Search for Charmed Particles in 14.75 GeV/c p̄p Interactions
- Author
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Canter, J., Dao, F. T., Gelfand, E., Mann, W. A., Schneps, J., Oh, B. Y., Pratap, M., Smith, G. A., Whitmore, J., Abe, K., Hasegawa, K., Kikuchi, R., Kitagaki, T., Maruyama, T., Nozaki, T., Tamai, K., Tanaka, S., Unno, Y., Yuta, H., Lach, J., Faissner, H., editor, Reithler, H., editor, and Zerwas, P., editor
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- 1977
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18. First observation of the Cabibbo-suppressed decays Ξc+→Σ+π−π+ and Ξc+→Σ−π+π+ and measurement of their branching ratios
- Author
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Vázquez-Jáuregui, E., Engelfried, J., Akgun, U., Alkhazov, G., Amaro-Reyes, J., Atamantchouk, A.G., Ayan, A.S., Balatz, M.Y., Blanco-Covarrubias, A., Bondar, N.F., Cooper, P.S., Dauwe, L.J., Davidenko, G.V., Dersch, U., Dolgolenko, A.G., Dzyubenko, G.B., Edelstein, R., Emediato, L., Endler, A.M.F., Eschrich, I., Escobar, C.O., Estrada, N., Evdokimov, A.V., Filimonov, I.S., Garcia, F.G., Gaspero, M., Giller, I., Golovtsov, V.L., Gouffon, P., Gülmez, E., He, Kangling, Iori, M., Jun, S.Y., Kaya, M., Kilmer, J., Kim, V.T., Kochenda, L.M., Konorov, I., Kozhevnikov, A.P., Krivshich, A.G., Krü, H., Kubantsev, M.A., Kubarovsky, V.P., Kulyavtsev, A.I., Kuropatkin, N.P., Kurshetsov, V.F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L.G., Larin, I., Leikin, E.M., Li, Yunshan, Ló, G., Luksys, M., Lungov, T., Maleev, V.P., Mao, D., Mao, Chensheng, Mao, Zhenlin, Mathew, P., Mattson, M., Matveev, V., McCliment, E., Moinester, M.A., Molchanov, V.V., Morelos, A., Nelson, K.D., Nemitkin, A.V., Neoustroev, P.V., Newsom, C., Nilov, A.P., Nurushev, S.B., Ocherashvili, A., Onel, Y., Ozel, E., Ozkorucuklu, S., Penzo, A., Petrenko, S.V., Pogodin, P., Procario, M., Prutskoi, V.A., Ramberg, E., Rappazzo, G.F., Razmyslovich, B.V., Rud, V.I., Russ, J., Sánchez-López, J.L., Schiavon, P., Simon, J., Sitnikov, A.I., Skow, D., Smith, V.J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N.K., Thomas, G.P., Torres, I., Uvarov, L.N., Vasiliev, A.N., Vavilov, D.V., Verebryusov, V.S., Victorov, V.A., Vishnyakov, V.E., Vorobyov, A.A., Vorwalter, K., You, J., Zhao, Wenheng, Zheng, Shuchen, and Zukanovich-Funchal, R.
- Subjects
Nuclear and High Energy Physics - Published
- 2008
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19. Hadronic production of Λ from 600 GeV/c π−, Σ− and p beams
- Author
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Garcia, F.G., Alkhazov, G., Atamantchouk, A.G., Balatz, M.Y., Bondar, N.F., Cooper, P.S., Dauwe, L.J., Davidenko, G.V., Dersch, U., Dolgolenko, A.G., Dzyubenko, G.B., Edelstein, R., Emediato, L., Endler, A.M.F., Engelfried, J., Eschrich, I., Escobar, C.O., Evdokimov, A.V., Filimonov, I.S., Gaspero, M., Giller, I., Golovtsov, V.L., Gouffon, P., Gülmez, E., He, Kangling, Iori, M., Jun, S.Y., Kaya, M., Kilmer, J., Kim, V.T., Kochenda, L.M., Konorov, I., Kozhevnikov, A.P., Krivshich, A.G., Krüger, H., Kubantsev, M.A., Kubarovsky, V.P., Kulyavtsev, A.I., Kuropatkin, N.P., Kurshetsov, V.F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L.G., Larin, I., Leikin, E.M., Li, Yunshan, Luksys, M., Lungov, T., Maleev, V.P., Mao, D., Mao, Chensheng, Mao, Zhenlin, Mathew, P., Mattson, M., Matveev, V., McCliment, E., Moinester, M.A., Molchanov, V.V., Morelos, A., Nelson, K.D., Nemitkin, A.V., Neoustroev, P.V., Newsom, C., Nilov, A.P., Nurushev, S.B., Ocherashvili, A., Onel, Y., Ozel, E., Ozkorucuklu, S., Penzo, A., Petrenko, S.V., Pogodin, P., Procario, M., Prutskoi, V.A., Ramberg, E., Rappazzo, G.F., Razmyslovich, B.V., Rud, V.I., Russ, J., Schiavon, P., Simon, J., Sitnikov, A.I., Skow, D., Smith, V.J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N.K., Thomas, G.P., Uvarov, L.N., Vasiliev, A.N., Vavilov, D.V., Verebryusov, V.S., Victorov, V.A., Vishnyakov, V.E., Vorobyov, A.A., Vorwalter, K., You, J., Zhao, Wenheng, Zheng, Shuchen, and Zukanovich-Funchal, R.
- Subjects
Quark ,Physics ,Nuclear and High Energy Physics ,Particle physics ,Proton ,010308 nuclear & particles physics ,media_common.quotation_subject ,Nuclear Theory ,High Energy Physics::Phenomenology ,Hadron ,Lambda ,01 natural sciences ,Asymmetry ,Nuclear physics ,Baryon ,Pion ,0103 physical sciences ,Physics::Accelerator Physics ,High Energy Physics::Experiment ,Charm (quantum number) ,Nuclear Experiment ,010306 general physics ,media_common - Abstract
We present data from Fermilab experiment E781 (SELEX) on the hadroproduction asymmetry for anti-Lambda_c compared to Lambda_c+ as a function of xF and pt2 distributions for Lambda_c+. These data were measured in the same apparatus using incident pi-, sigma- beams at 600 GeV/c and proton beam at 540 GeV/c. The asymmetry is studied as a function of xF. In the forward hemisphere with xF >= 0.2 both baryon beams exhibit very strong preference for producing charm baryons rather than charm antibaryons, while the pion beam asymmetry is much smaller. In this energy regime the results show that beam fragments play a major role in the kinematics of Lambda_c formation, as suggested by the leading quark picture.
- Published
- 2002
20. Benzazaphospholine-2-carboxylic acids: Synthesis, structure and properties of heterocyclic phosphanyl amino acids
- Author
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Ghalib M., Lach J., Fomina O., Yakhvarov D., Jones P., and Heinicke J.
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Ethylene ,Phosphanes ,Heterocycles ,Ligands ,Catalysis - Abstract
1,3-Dialkyl-1,3-benzazaphospholine-2-carboxylic acids 2a,b can be conveniently prepared by metalation and alkylation of N-methyl- and N-neopentyl-o-phosphanylaniline in liquid ammonia and cyclocondensation of the resulting N,P-disecondary phosphanylanilines 1a,b with glyoxylic acid hydrate (GAH) in ether. The primary neopentylphosphanylaniline reacts with two equivalents of GAH and forms a phosphanylbis(amino acid) 3 with toluidine. α-Branched P-substituents induce strongly preferred formation of trans-diastereoisomers with R,R- and S,S-configuration at P and C2, as shown by a crystal structure analysis of 2a, whereas a P-neopentyl (P-Np) group gives rise to trans/cis-diastereoisomeric mixtures. The trans-configuration exhibits the P lone-pair in cis-position to the COOH group, suitable for formation of five-membered chelate rings, as in diphenylphosphanylacetate nickel catalysts for ethylene oligomerization. Screening of 2a,b/Ni(COD)2 solutions in THF by a batch procedure indeed showed formation of catalysts for conversion of ethylene to linear oligomers and waxy low-molecular weight polymers. The conversion depends strongly on the size of the N-alkyl group, being slow and limited for the N-Me catalyst 2a/Ni and much faster and more complete for the N-Np-substituted catalysts 2b/Ni and 2c/Ni (N-Np, P-tBu). Comparison of 2b/Ni with 2c/Ni shows that the more bulky P-substituent further increases the catalyst activity. © 2014 Elsevier Ltd. All rights reserved.
- Published
- 2014
21. Ueber die Bestimmung des Rendements und die chemische Analyse von Rohzucker
- Author
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Scheibler, C., Karcz, M., Strohmer, Fr., Stift, A., Holarek, Sostmann, E., Lach, J., von Lippmann, E. O., Herzfeld, A., Prinsen-Geerligs, H. C., Scheller, R., Bodenbender, H., Seyffart, J., Ladureau, A., Reichardt, H., Aulard, A., Courtonne, H., Hanause, H., Wiechmann, F. G., Sidersky, D., Biard, L., Stammer, K., Donath, Ed., Hattensaur, G., Lucien, J., de Grobert, J., Boyer, E., Grünhut, L., Alberti, R., Hempel, C., Eichleitner, Fr., Liesse, Ch., Pellet, H., Sachs, F., Gruselin, A., Delville, E., Gunning, J. W., Drenckmann, B., de Puydt, J., Josse, A., Herles, Fr., Degener, P., Sickel, R., Grzesinsky, R., Martina, G., Petzival, E., Moor, J. D., Josef, Fric, Jan, Baumann, J., Landolt, H., Rimbach, E., Casteels, O., Jungfleisch, E., Grimbert, L., Hammerschmidt, R., Deltour, Em., Preuss, E., Leplay, Winter, H., and Mehne, P.
- Published
- 1896
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22. Complexation, computational, magnetic, and structural studies of the maillard reaction product isomaltol including investigation of an uncommon π interaction with copper(II)
- Author
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Heine, KB, Clegg, JK, Heine, A, Gloe, K, Henle, T, Bernhard, G, Cai, ZL, Reimers, JR, Lindoy, LF, Lach, J, and Kersting, B
- Subjects
Cations, Divalent ,Iron ,Water ,Benzene ,Hydrogen Bonding ,Hydrogen-Ion Concentration ,Crystallography, X-Ray ,Maillard Reaction ,Zinc ,Magnetics ,Organometallic Compounds ,Potentiometry ,Inorganic & Nuclear Chemistry ,Furans ,Copper ,Algorithms - Abstract
The metal complexation properties of the naturally occurring Maillard reaction product isomaltol HL2 are investigated by measurement of its stability constants with copper(II), zinc(II), and iron(III) using potentiometric pH titrations in water, by structural and magnetic characterization of its crystalline complex, [Cu(L2) 2]·8H2O, and by density functional theory calculations. Strong complexation is observed to form the bis(isomaltolato) copper(II) complex incorporating copper in a typical (pseudo-)square-planar geometry. In the solid state, extensive intra- and intermolecular hydrogen bonding involving all three oxygen functions per ligand assembles the complexes into ribbons that interact to form two-dimensional arrays; further hydrogen bonds and π interactions between the furan moiety of the anionic ligands and adjacent copper(II) centers connect the complexes in the third dimension, leading to a compact polymeric three-dimensional (3D) arrangement. The latter interactions involving copper(II), which represent an underappreciated aspect of copper(II) chemistry, are compared to similar interactions present in other copper(II) 3D structures showing interactions with benzene molecules; the results indicate that dispersion forces dominate in the π system to chelated copper(II) ion interactions. © 2011 American Chemical Society.
- Published
- 2011
23. Complexation, Computational, Magnetic, and Structural Studies of the Maillard Reaction Product Isomaltol Including Investigation of an Uncommon π Interaction with Copper(II)
- Author
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Heine, K. B., Clegg, J. K., Heine, A., Gloe, K., Karsten, G., Henle, T., Bernhard, G., Cai, Z.-L., Reimers, J. R., Lindoy, L. F., Lach, J., and Kersting, B.
- Abstract
The metal complexation properties of the naturally occurring Maillard reaction product isomaltol HL2 are investigated by measurement of its stability constants with copper(II), zinc(II), and iron(III) using potentiometric pH titrations in water, by structural and magnetic characterization of its crystalline complex, [Cu(L2)2] 3 8H2O, and by density functional theory calculations. Strong complexation is observed to form the bis(isomaltolato)copper(II) complex Zincorporating copper in a typical (pseudo-)square-planar geometry. In the solid state, extensive intra- and intermolecular hydrogen bonding involving all three oxygen functions per ligand assembles the complexes into ribbons that interact to form two-dimensional arrays; further hydrogen bonds and π interactions between the furan moiety of the anionic ligands and adjacent copper(II) centers connect the complexes in the third dimension, leading to a compact polymeric three-dimensional (3D) arrangement. The latter interactions involving copper(II), which represent an underappreciated aspect of copper(II) chemistry, are compared to similar interactions present in other copper(II) 3D structures showing interactions with benzene molecules; the results indicate that dispersion forces dominate in the π system to chelated copper(II) ion interactions.
- Published
- 2011
24. Origin of the “Excursion Peak” during cycling voltammetry of Pb–Sn alloys
- Author
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Lach, J., primary, Obrębowski, S., additional, and Czerwiński, A., additional
- Published
- 2015
- Full Text
- View/download PDF
25. Confirmation of the doubly charmed baryon Epsilon(+)(cc)(3520) via its decay to pD(+)K(-)
- Author
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Ocherashvili, A., Moinester, M. A., Russ, J., Engelfried, J., Torres, I., Akgun, U., Alkhazov, G., Amaro Reyes, J., Atamantchouk, A. G., Ayan, A. S., Balatz, M. Y., Bondar, N. F., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M. E., Eschrich, I., Escobar, C. O., Evdokimov, A. V., Filimonov, I. S., Garcia, F. G., Gaspero, Mario, Giller, I., Golovtsov, V. L., Gouffon, P., Gulmez, E., Kangling, H., Iori, M., Jun, S. Y., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Kruger, H., Kubantsev, M. A., Kubarovsky, V., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L. G., Larin, I., Leikin, E. M., Y. S., Li, Luksys, M., Lungov, T., Maleev, V. P., Mao, D., Mao, C. S., Mao, Z. L., Mathew, P., Mattson, M., Matveev, V., Mccliment, E., Molchanov, V. V., Morelos, A., Nelson, K. D., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Onel, Y., Ozel, E., Ozkorucuklu, S., Penzo, A., Petrenko, S. V., Pogodin, P., Procario, M., Prutskoi, V. A., Ramberg, E., Rappazzo, G. F., Razmyslovich, B. V., Rud, V. I., Schiavon, P., Simon, J., Sitnikov, A. I., Skow, D., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Thomas, Gp, Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Vazquez Jauregui, E., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., Zhao, W. H., Zheng, S. C., and Zukanovich Funchal, R.
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doubly charmed baryon - Published
- 2005
26. Upper limit on the decay Sigma(1385)(-) -> Sigma(-)gamma and cross section for gamma Sigma(-) -> Lambda pi(-)
- Author
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Molchanov, Vv, Alkhazov, G, Atamantchouk, Ag, Balatz, My, Bondar, Nf, Casey, D, Cooper, Ps, Dauwe, Lj, Davidenko, Gv, Dersch, U, Dolgolenko, Ag, Dzyubenko, Gb, Edelstein, R, Emediato, L, Endler, Amf, Engelfried, J, Eschrich, I, Escobar, Co, Evdokimov, Av, Ferbel, T, Filimonov, Is, Garcia, Fg, Gaspero, Mario, Giller, I, Golovtsov, Vl, Gouffon, P, Gulmez, E, Hammer, C, Kangling, H, Iori, M, Jun, Sy, Kaya, M, Kilmer, J, Kim, Vt, Kochenda, Lm, Konorov, I, Kozhevnikov, Ap, Krivshich, Ag, Kruger, H, Kubantsev, Ma, Kubarovsky, Vp, Kulyavtsev, Ai, Kuropatkin, Np, Kurshetsov, Vf, Kushnirenko, A, Kwan, S, Lach, J, Lamberto, A, Landsberg, Lg, Larin, I, Leikin, Em, Yunshan, L, Luksys, M, Lungov, T, Maleev, Vp, Mao, D, Chensheng, M, Zhenlin, M, Mathew, P, Mattson, M, Matveev, V, Mccliment, E, Moinester, Ma, Morelos, A, Mukhin, Va, Nelson, Kd, Nemitkin, Av, Neoustroev, Pv, Newsom, C, Nilov, Ap, Nurushev, Sb, Ocherashvili, A, Onel, Y, Ozel, E, Ozkorucuklu, S, Penzo, A, Petrenko, Sv, Pogodin, P, Procario, M, Prutskoi, Va, Ramberg, E, Rappazzo, Gf, Razmyslovich, Bv, Rud, Vi, Russ, J, Schiavon, P, Simon, J, Sitnikov, Ai, Skow, D, Slattery, P, Smith, Vj, Srivastava, M, Steiner, V, Stepanov, V, Stutte, L, Svoiski, M, Terentyev, Nk, Thomas, Gp, Uvarov, Ln, Vasiliev, An, Vavilov, Dv, Verebryusov, Vs, Victorov, Va, Vishnyakov, Ve, Vorobyov, Aa, Vorwalter, K, You, J, Zhao, Wh, Zheng, Sc, Zhu, Zh, Zielinski, M, and ZUKANOVICH FUNCHAL, R.
- Published
- 2004
27. Flexibility and Circuit Overheads in Reconfigurable SIMD/MIMD Systems
- Author
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Arrabi, S., primary, Moore, D., additional, Wang, L., additional, Skadron, K., additional, Calhoun, B.H., additional, Lach, J., additional, and Meyer, B.H., additional
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- 2014
- Full Text
- View/download PDF
28. foldon domain wild type C-conjugate
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Graewert, M.A., primary, Berthelmann, A., additional, Lach, J., additional, Groll, M., additional, and Eichler, J., additional
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- 2014
- Full Text
- View/download PDF
29. Foldon domain wild type N-conjugate
- Author
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Graewert, M.A., primary, Berthelmann, A., additional, Lach, J., additional, Groll, M., additional, and Eichler, J., additional
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- 2014
- Full Text
- View/download PDF
30. First observation of the doubly charmed baryon Ξcc +
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Mattson, M., Alkhazov, G., Atamantchouk, A. G., Balatz, M. Y., Bondar, N. F., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M. F., Engelfried, J., Eschrich, I., Escobar, C. O., Evdokimov, A. V., Filimonov, I. S., Garcia, F. G., Gaspero, M., Giller, I., Golovtsov, V. L., Gouffon, P., Gülmez, E., Kangling, H., maurizio iori, Jun, S. Y., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L. G., Larin, I., Leikin, E. M., Yunshan, L., Luksys, M., Lungov, T., Maleev, V. P., Mao, D., Chensheng, M., Zhenlin, M., Mathew, P., Matveev, V., Mccliment, E., Moinester, M. A., Molchanov, V. V., Morelos, A., Nelson, K. D., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Ocherashvili, A., Oliveira, E., Onel, Y., Ozel, E., Ozkorucuklu, S., Penzo, A., Petrenko, S. V., Pogodin, P., Precario, M., Prutskoi, V. A., Ramberg, E., Rappazzo, G. F., Razmyslovich, B. V., Rud, V. I., Russ, J., Schiavon, P., Simon, J., Sitnikov, A. I., Skow, D., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Thomas, G. P., Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., Wenheng, Z., Shuchen, Z., Zukanovich-Funchal, R., Ball State University, Bogazici University, Carnegie-Mellon University, Centro Brasileiro de Pesquisas Físicas (CBPF), Fermi National Accelerator Laboratory, Institute for High Energy Physics, Institute of High Energy Physics, Institute of Theoretical and Experimental Physics, Max-Planck-Institut für Kernphysik, Moscow State University, Petersburg Nuclear Physics Institute, Tel Aviv University, Universidad Autónoma de San Luis Potosí, Universidade Federal da Paraíba (UFPB), University of Bristol, University of Iowa, University of Michigan, INFN, Universidade de São Paulo (USP), Infinion, Imperial College, Universidade Estadual de Campinas (UNICAMP), Technische Universität München, The Boston Consulting Group, Universidade Estadual Paulista (Unesp), Lücent Technologies, SPSS Inc., University of Alabama at Birmingham, Imadent Ltd., DOE, Solidum, Siemens Medizintechnik, and Deütsche Bank AG
- Subjects
Diamonds ,Doubly charmed baryon ,Charmed quarks ,Charged particles ,Electronic density of states ,Hadrons ,Computer simulation ,Cerenkov counters ,Charged tracks ,Nuclear reactors ,Fermi level ,Electron energy levels ,Protons ,Algorithms ,Copper ,Probability - Abstract
Submitted by Vitor Silverio Rodrigues (vitorsrodrigues@reitoria.unesp.br) on 2014-05-27T11:20:30Z No. of bitstreams: 0Bitstream added on 2014-05-27T14:39:25Z : No. of bitstreams: 1 2-s2.0-0037048387.pdf: 116303 bytes, checksum: 3dc1e5d7b0260bb4c7b11c25df0cc62d (MD5) Made available in DSpace on 2014-05-27T11:20:30Z (GMT). No. of bitstreams: 0 Previous issue date: 2002-09-09 The first experimental evidence for one of the six predicted baryon states which contain two valence charmed quarks-the doubly charmed baryons. As such, there were many predictions of the masses and other properties of these states. The properties of doubly charmed baryons provide a new window into the structure of baryonic matter. Ball State University, Muncie, IN 47306 Bogazici University, Bebek 80815 Istanbul Carnegie-Mellon University, Pittsburgh, PA 15213 Centro Brasileiro de Pesquisas Físicas, Rio de Janeiro Fermi National Accelerator Laboratory, Batavia, IL 60510 Institute for High Energy Physics, Protvino Institute of High Energy Physics, Beijing Institute of Theoretical and Experimental Physics, Moscow Max-Planck-Institut für Kernphysik, 69117 Heidelberg Moscow State University, Moscow Petersburg Nuclear Physics Institute, St. Petersburg Tel Aviv University, 69978 Ramat Aviv Universidad Autónoma de San Luis Potosí, San Luis Potosí Universidade Federal da Paraíba, Paraíba University of Bristol, Bristol BS8 1TL University of Iowa, Iowa City, Iowa 52242 University of Michigan-Flint, Flint, MI 48502 University of Rome 'La Sapienza' INFN, Rome University of São Paulo, São Paulo University of Trieste INFN, Trieste Infinion, München Imperial College, London SW7 2BZ Institüto de Física Universidade Estadüal de Campinas UNICAMP, Sao Paulo Physik-Department Technische Universität München, 85748 Garching The Boston Consulting Group, München Institüto de Física Teórica Universidade Estadüal Paülista, São Paülo Lücent Technologies, Naperville, IL SPSS Inc., Chicago, IL University of Alabama at Birmingham, Birmingham, AL 35294 Imadent Ltd., Rehovot 76702 DOE, Germantown, MD Solidum, Ottawa, ON Siemens Medizintechnik, Erlangen Deütsche Bank AG, Eschborn
- Published
- 2002
31. First measurement of π-e→π-eγ pion virtual compton scattering
- Author
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Ocherashvili, A., Alkhazov, G., Atamantchouk, A. G., Balatz, M. Y., Bondar, N. F., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M F, Engelfried, J., Eschrich, I., Escobar, C. O., Evdokimov, A. V., Filimonov, I. S., Garcia, F. G., Gaspero, M., Giller, I., Golovtsov, V. L., Gouffon, P., Gülmez, E., Kangling, H., Iori, M., Jun, S. Y., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L. G., Larin, I., Leikin, E. M., Yunshan, L., Luksys, M., Lungov, T. [UNESP], Maleev, V. P., Mao, D., Chensheng, M., Zhenlin, M., Mathew, P., Mattson, M., Matveev, V., McCliment, E., Moinester, M. A., Molchanov, V. V., Morelos, A., Nelson, K. D., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Onel, Y., Ozel, E., Ozkorucuklu, S., Penzo, A., Petrenko, S. I., Pogodin, P., Pouh, B., Procario, M., Prutskoi, V. A., Ramberg, E., Rappazzo, G. F., Razmyslovich, B. V., Rud, V. I., Russ, J., Schiavon, P., Simon, J., Sitnikov, A. I., Skow, D., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Thomas, G. P., Uvarov, L. N., Vasjliev, A. N., Vavilov, D. V., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., Wenheng, Z., Shuchen, Z., Zukanovich-Funchal, R., Ball State University, Bogazici University, Carnegie-Mellon University, Centro Brasiliero de Pesquisas Físicas, Fermilab, Institute for High Energy Physics, Institute of High Energy Physics, Institute of Theoretical and Experimental Physics, Max-Planck-Institut für Kernphysik, Moscow State University, Petersburg Nuclear Physics Institute, Tel Aviv University, Universidad Autónoma de San Luis Potosí, Universidade Federal da Paraíba (UFPB), University of Bristol, University of Iowa, University of Michigan, INFN, Universidade de São Paulo (USP), Medson Ltd., Infineon Technologies AG, Imperial College, Universidade Estadual de Campinas (UNICAMP), Technische Universität München, The Boston Consulting Group, Universidade Estadual Paulista (Unesp), SPSS Inc., University of Alabama at Birmingham, DOE, Siemens Medizintechnik, and Deutsche Bank AG
- Abstract
Submitted by Vitor Silverio Rodrigues (vitorsrodrigues@reitoria.unesp.br) on 2014-05-27T11:20:30Z No. of bitstreams: 0Bitstream added on 2014-05-27T14:34:07Z : No. of bitstreams: 1 2-s2.0-4243272222.pdf: 168019 bytes, checksum: 91f54bc1692e896ecdd5fbafe9057df8 (MD5) Made available in DSpace on 2014-05-27T11:20:30Z (GMT). No. of bitstreams: 0 Previous issue date: 2002-09-01 Pion virtual compton scattering (VCS) via the reaction π-e→π-eγ was observed in the Fermilab E781 SELEX experiment. SELEX used a 600 GeV/c π- beam incident on target atomic electrons, detecting the incident π- and the final state π-, electron and γ. Theoretical predictions based on chiral perturbation theory are incorporated into a Monte Carlo simulation of the experiment and are compared to the data. The number of reconstructed events (=9) and their distribution with respect to the kinematic variables (for the kinematic region studied) are in reasonable accord with the predictions. The corresponding π- VCS experimental cross section is σ=38.8±13 nb, in agreement with the theoretical expectation of σ=34.7 nb. Ball State University, Muncie, IN 47306 Bogazici University, Bebek, 80815 Istanbul Carnegie-Mellon University, Pittsburgh, PA 15213 Centro Brasiliero de Pesquisas Físicas, Rio de Janeiro Fermilab, Batavia, IL 60510 Institute for High Energy Physics, Protvino Institute of High Energy Physics, Beijing Institute of Theoretical and Experimental Physics, Moscow Max-Planck-Institut für Kernphysik, D-69117 Heidelberg Moscow State University, Moscow Petersburg Nuclear Physics Institute, St. Petersburg Tel Aviv University, IL-69978 Ramat Aviv Universidad Autónoma de San Luis Potosí, San Luis Potosí Universidade Federal da Paraíba, Paraíba University of Bristol, Bristol BS8 1TL University of Iowa, Iowa City, Iowa 52242 University of Michigan-Flint, Flint, MI 48502 University of Rome 'La Sapienza' INFN, Rome University of São Paulo, São Paulo University of Trieste INFN, Trieste Medson Ltd., Rehovot 76702 Infineon Technologies AG, München Imperial College, London SW7 2BZ Instituto de Física Universidade Estadual de Campinas UNICAMP, Sao Paulo Physik-Department Technische Universität München, 85748 Garching The Boston Consulting Group, München Fermilab, Batavia, IL Instituto de Física Teórica Universidade Estadual Paulista, São Paulo SPSS Inc., Chicago, IL University of Alabama at Birmingham, Birmingham, AL 35294 DOE, Germantown, MD Siemens Medizintechnik, Erlangen Deutsche Bank AG, Eschborn Instituto de Física Teórica Universidade Estadual Paulista, São Paulo
- Published
- 2002
32. Contemporary Directions of Transformations in the Settlement and the Landscape of Rural Areas in the Silesian Lowland
- Author
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Łach Janusz and Szczepańska Barbara
- Subjects
silesian lowland ,borek strzeliński ,rural area ,rural landscape ,social activity ,local leaders ,Geography (General) ,G1-922 - Abstract
Rural areas of the Silesian Lowland, undergoing social and economic transformations today, have had a strong impact on the formation of the region's settlement landscapes. Political and economic changes after 1989 have affected the development of rural areas, in particular of ‘privileged’ settlements for which the proximity of towns and a trunk road are favourable factors. The result of these seemingly positive factors is the escape of young people (potential farmers) to the cities and an influx of new settlers. This affects social behaviour and activity, as well as the visual rural landscape, creating suburban zones with residential and leisure functions. The village seems to have lost its typical character but has it really? The subject of the research is, therefore, an analysis of changes in the spatial and social structure of a rural village as exemplified by Borek Strzeliński, which allows setting out its functions. The research issue is to determine the level of social activity of rural residents and their attitude towards the local cultural heritage, which influences their identity and the value of the landscape. The use of integrated methods of field work based on a free sociological survey has allowed identifying the spatial directions of village development and threats resulting from divided social activity.
- Published
- 2020
- Full Text
- View/download PDF
33. Total cross section measurements with π- , Σ- and protons on nuclei and nucleons around 600 GeV/c
- Author
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Dersch, U., Akchurin, N., Andreev, V. A., Atamantchouk, A. G., Aykac, M., Balatz, M. Y., Bondar, N. F., Bravar, A., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dirkes, G., Dolgolenko, A. G., Dreossi, D., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M. F., Engelfried, J., Eschrich, I., Escobar, C. O., Evdokimov, A. V., Filimonov, I. S., Garcia, F. G., Gaspero, M., Gerzon, S., Giller, I., Golovtsov, V. L., Goncharenko, Y. M., Gottschalk, E., Gouffon, P., Grachov, O. A., Gülmez, E., Kangling, H., maurizio iori, Jun, S. Y., Kamenskii, A. D., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Königsmann, K., Konorov, I., Kozhevnikov, A. P., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L. G., Larin, I., Leikin, E. M., Yunshan, L., Zhigang, L., Luksys, M., Lungov, T., Magarrel, D., Maleev, V. P., Mao, D., Chensheng, M., Zhenlin, M., Masciocchi, S., Mathew, P., Mattson, M., Matveev, V., Mccliment, E., Mckenna, S. L., Moinester, M. A., Molchanov, V. V., Morelos, A., Mukhin, V. A., Nelson, K. D., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Ocherashvili, A., Oleynik, G., Onel, Y., Ozel, E., Ozkorucuklu, S., Patrichev, S., Penzo, A., Petrenko, S. I., Pogodin, P., Povh, B., Procario, M., Prutskoi, V. A., Ramberg, E., Rapazzo, G. F., Razmyslovich, B. V., Rud, V. I., Russ, J., Scheglov, Y., Schiavon, P., Semyatchkin, V. K., Simon, J., Sitnikov, A. I., Skow, D., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Thomas, G. P., Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., You, J., Wenheng, Z., Shuchen, Z., Zukanovich-Funchal, R., Ball State University, Bogazici University, Carnegie-Mellon University, Centro Brasiliero de Pesquisas Físicas, Fermilab, Institute for High Energy Physics, Institute of High Energy Physics, Institute of Theoretical and Experimental Physics, Max-Planck-Institut für Kernphysik, Moscow State University, Petersburg Nuclear Physics Institute, Tel Aviv University, Universidad Autónoma de San Luis Potosí, Universidade Federal da Paraíba (UFPB), University of Bristol, University of Iowa, University of Michigan-Flint, University of Rome 'La Sapienza' and INFN, Universidade de São Paulo (USP), University of Trieste and INFN, Now at Imperial College, Universidade Estadual de Campinas (UNICAMP), Wayne State University, Universität Freiburg, Technische Universität München, Universidade Estadual Paulista (UNESP), Lucent Technologies, Now at Max-Planck-Institut für Physik, Motorola Inc, and Deutsche Bank AG
- Subjects
13.85.-t ,Total cross sections ,Hyperon reactions ,Glauber model ,13.75.Ev ,13.75.Gx ,13.85.Lg ,24.10.Ht - Abstract
Made available in DSpace on 2022-04-28T19:56:01Z (GMT). No. of bitstreams: 0 Previous issue date: 2000-07-17 Total cross sections for Σ- and π- on beryllium, carbon, polyethylene and copper as well as total cross sections for protons on beryllium and carbon have been measured in a broad momentum range around 600GeV/c . These measurements were performed with a transmission technique in the SELEX hyperon-beam experiment at Fermilab. We report on results obtained for hadron-nucleus cross sections and on results for σtot(Σ-N) and σtot(π-N) , which were deduced from nuclear cross sections. © 2000 Elsevier Science B.V. Ball State University, Muncie, IN 47306 Bogazici University, Bebek 80815 Istanbul Carnegie-Mellon University, Pittsburgh, PA 15213 Centro Brasiliero de Pesquisas Físicas, Rio de Janeiro Fermilab, Batavia, IL 60510 Institute for High Energy Physics, Protvino Institute of High Energy Physics, Beijing Institute of Theoretical and Experimental Physics, Moscow Max-Planck-Institut für Kernphysik, 69117 Heidelberg Moscow State University, Moscow Petersburg Nuclear Physics Institute, St. Petersburg Tel Aviv University, 69978 Ramat Aviv Universidad Autónoma de San Luis Potosí, San Luis Potosí Universidade Federal da Paraíba, Paraíba University of Bristol, Bristol BS8 1TL University of Iowa, Iowa City, IA 52242 University of Michigan-Flint, Flint, MI 48502 University of Rome 'La Sapienza' and INFN, Rome University of São Paulo, São Paulo University of Trieste and INFN, Trieste Now at Imperial College, London SW7 2BZ Instituto de Física da Universidade Estadual de Campinas UNICAMP, SP Dept. of Physics Wayne State University, Detroit, MI 48201 Universität Freiburg, 79104 Freiburg Physik-Department Technische Universität München, 85748 Garching Instituto de Física Teórica da Universidade Estadual Paulista, São Paulo Lucent Technologies, Naperville, IL Now at Max-Planck-Institut für Physik, München Motorola Inc, Schaumburg, IL Deutsche Bank AG, 65760 Eschborn Instituto de Física Teórica da Universidade Estadual Paulista, São Paulo
- Published
- 2000
34. Observation of the cabibbo-suppressed decay Ξ+c→pK- π+
- Author
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Jun, S. Y., Akchurin, N., Andreev, V. A., Atamantchouk, A. G., Aykac, M., Balatz, M. Y., Bondar, N. F., Bravar, A., Cooper, P. S., Dauwe, L. J., Davidenko, G. V., Dersch, U., Dolgolenko, A. G., Dreossi, D., Dzyubenko, G. B., Edelstein, R., Emediato, L., Endler, A. M.F., Engelfried, J., Eschrich, I., Escobar, C. O., Evdokimov, A. V., Filimonov, I. S., Garcia, F. G., Gaspero, M., Gerzon, S., Giller, I., Golovtsov, V. L., Goncharenko, Y. M., Gottschalk, E., Gouffon, P., Grachov, O. A., Gülmez, E., Iori, M., Kamenski, A. D., Kangling, H., Kaya, M., Kilmer, J., Kim, V. T., Kochenda, L. M., Königsmann, K., Konorov, I., Kozhevnikov, A. A., Krivshich, A. G., Krüger, H., Kubantsev, M. A., Kubarovsky, V. P., Kulyavtsev, A. I., Kuropatkin, N. P., Kurshetsov, V. F., Kushnirenko, A., Kwan, S., Lach, J., Lamberto, A., Landsberg, L. G., Larin, I., Leikin, E. M., Luksys, M., Lungov, T. [UNESP], Magarrel, D., Maleev, V. P., Mao, D., Masciocchi, S., Mathew, P., Mattson, M., Matveev, V., Mc Climent, E., Mc Kenna, S. L., Moinester, M. A., Molchanov, V. V., Morelos, A., Mukhin, V. A., Nelson, K. D., Nemitkin, A. V., Neoustroev, P. V., Newsom, C., Nilov, A. P., Nurushev, S. B., Ocherashvili, A., Oleynik, G., Onel, Y., Ozel, E., Ozkorucuklu, S., Patrichev, S., Penzo, A., Petrenko, S. I., Pogodin, P., Povh, B., Procario, M., Prutskoi, V. A., Ramberg, E., Rappazzo, G. F., Razmyslovich, B. V., Rud, V. I., Russ, J., Schiavon, P., Semyatchkin, V. K., Simon, J., Sitnikov, A. I., Skow, D., Smith, V. J., Srivastava, M., Steiner, V., Stepanov, V., Stutte, L., Svoiski, M., Terentyev, N. K., Thomas, G. P., Uvarov, L. N., Vasiliev, A. N., Vavilov, D. V., Verebryusov, V. S., Victorov, V. A., Vishnyakov, V. E., Vorobyov, A. A., Vorwalter, K., Wenheng, Z., You, J., Yunshan, L., Zhenlin, M., Zhigang, L., Zukanovich Funchal, R., Ball State University, Bogazici University, Carnegie-Mellon University, Centro Brasileiro de Pesquisas Físicas, Fermi National Accelerator Laboratory, Institute for High Energy Physics, Institute of High Energy Physics, Institute of Theoretical and Experimental Physics, Max-Planck-Institut für Kernphysik, Moscow State University, Petersburg Nuclear Physics Institute, Tel Aviv University, Universidad Autónoma de San Luis Potosí, Universidade Federal da Paraíba (UFPB), University of Bristol, University of Iowa, University of Michigan–Flint, INFN, Universidade de São Paulo (USP), Imperial College, Universidade Estadual de Campinas (UNICAMP), Wayne State University, Universität Freiburg, Technische Universität München, Universidade Estadual Paulista (UNESP), Lucent Technologies, Max-Planck-Institut für Physik, Motorola Inc., and Deutsche Bank AG
- Abstract
Made available in DSpace on 2022-04-28T19:53:25Z (GMT). No. of bitstreams: 0 Previous issue date: 2000-01-01 We report the first observation of the Cabibbo-suppressed charm baryon decay Ξ+c→pK- π+. We observe 150±22±5 events for the signal. The data were accumulated using the SELEX spectrometer during the 1996-1997 fixed target run at Fermilab, chiefly from a 600GeV/c Σ- beam. The branching fractions of the decay relative to the Cabibbo-favored Ξ+c→Σ+K-π+ and Ξ+c→Ξ-π+π+ are measured to be B(Ξ+c→pK-π+)/B(Ξ+c→Σ+K-π+)=0.22±0.06±0.03 and B(Ξ+c→pK-π+)/B(Ξ+c→Ξ-π+π+)=0.20±0.04±0.02, respectively. © 2000 The American Physical Society. Ball State University, Muncie, IN, 47306 Bogazici University, Bebek, Istanbul, 80815 Carnegie-Mellon University, Pittsburgh, PA, 15213 Centro Brasileiro de Pesquisas Físicas, Rio de Janeiro Fermi National Accelerator Laboratory, Batavia, IL, 60510 Institute for High Energy Physics, Protvino Institute of High Energy Physics, Beijing Institute of Theoretical and Experimental Physics, Moscow Max-Planck-Institut für Kernphysik, Heidelberg, 69117 Moscow State University, Moscow Petersburg Nuclear Physics Institute, St. Petersburg Tel Aviv University, Ramat Aviv, 69978 Universidad Autónoma de San Luis Potosí, San Luis Potosí Universidade Federal da Paraíba, Paraíba University of Bristol, Bristol, BS8 1TL University of Iowa, Iowa City, IA, 52242 University of Michigan–Flint, Flint, MI, 48502 University of Rome “La Sapienza” INFN, Rome University of São Paulo, São Paulo University of Trieste INFN, Trieste Imperial College, London, SW7 2BZ Instituto de Física da Universidade Estadual de Campinas UNICAMP, SP Department of Physics Wayne State University, Detroit, MI, 48201 Universität Freiburg, Freiburg, 79104 Physik-Department Technische Universität München, Garching, 85748 Instituto de Física Teórica da Universidade Estadual Paulista, São Paulo Lucent Technologies, Naperville, IL Max-Planck-Institut für Physik, München Motorola Inc., Schaumburg, IL Carnegie-Mellon University, Pittsburgh, PA Deutsche Bank AG, Eschborn, 65760 Instituto de Física Teórica da Universidade Estadual Paulista, São Paulo
- Published
- 2000
35. Report from the hyperon physics subgroup
- Author
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University of Michigan, Ann Arbor, MI 48109, University of Massachusetts, Amherst, MA 01003, University of Alberta, Edmonton Alberta T6G 2J1 Canada, Fermi National Accelerator Laboratory, Batavia, IL 60510, Los Alamos National Laboratory, Los Alamos, NM 87545, Frers, J.N., Jensen (Chairman), D.A., Kamal, A.N., Lach, J., Mischke, R.E., Oka, T., University of Michigan, Ann Arbor, MI 48109, University of Massachusetts, Amherst, MA 01003, University of Alberta, Edmonton Alberta T6G 2J1 Canada, Fermi National Accelerator Laboratory, Batavia, IL 60510, Los Alamos National Laboratory, Los Alamos, NM 87545, Frers, J.N., Jensen (Chairman), D.A., Kamal, A.N., Lach, J., Mischke, R.E., and Oka, T.
- Abstract
A number of topics were considered in the Hyperon Group. As the time was reasonably short, and the group was not large, the list of topics is by no means exhaustive. The topics discussed should rather be considered a sampling of a much more extensive list of topics that might have been discussed. This report will thus consist of some brief remarks relevant to the topics discussed, and a few concluding remarks. The interested reader is referred to the reference for appropriate details.
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- 2011
36. Does renal artery stenting impacts left ventricle mass and function, blood pressure values, renal function and cytokine concentration?
- Author
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Rzeznik, D., primary, Przewlocki, T., additional, Kablak-Ziembicka, A., additional, Roslawiecka, A., additional, Kozanecki, A., additional, Lach, J., additional, and Podolec, P., additional
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- 2013
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37. Long-term survival and prognostic factors of cardiovascular events in patients treated with percutaneous angioplasty for renal artery stenosis
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Rzeznik, D., primary, Przewlocki, T., additional, Kablak-Ziembicka, A., additional, Roslawiecka, A., additional, Kozanecki, A., additional, Lach, J., additional, and Podolec, P., additional
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- 2013
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38. A 90nm data flow processor demonstrating fine grained DVS for energy efficient operation from 0.25V to 1.2V
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Shakhsheer, Y., primary, Khanna, S., additional, Craig, K., additional, Arrabi, S., additional, Lach, J., additional, and Calhoun, B. H., additional
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- 2011
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39. Stepped Supply Voltage Switching for energy constrained systems
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Khanna, S., primary, Craig, K., additional, Shakhsheer, Y., additional, Arrabi, S., additional, Lach, J., additional, and Calhoun, B. H., additional
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- 2011
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40. Reducing the cost of redundant execution in safety-critical systems using relaxed dedication
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Meyer, B H, primary, George, N, additional, Calhoun, B, additional, Lach, J, additional, and Skadron, K, additional
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- 2011
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41. Future experimental studies of QCD at Fermilab report of the QCD section: options for a Fermilab strategic plan
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Albrow, M. G., Appel, J. A., Blazey, G., Janet Conrad, Kotwal, A. V., Kovacs, E., Kuhlmann, S. E., Lach, J., Levin, E., Melanson, H. L., Morfin, J. G., Papavassiliou, V., Salgado, C. W., Spentzouris, P., and Weerts, H.
- Subjects
Particle Physics - Phenomenology - Published
- 1994
42. High-Field ESR and Magnetization Study of a Novel Macrocyclic Chelate Trinuclear Ni(II) Complex
- Author
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Krupskaya, Y., primary, Parameswaran, A., additional, Alfonsov, A., additional, Klingeler, R., additional, Kataev, V., additional, Beyer, N., additional, Lach, J., additional, Gressenbuch, M., additional, Kersting, B., additional, and Büchner, B., additional
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- 2009
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43. Body Area Sensor Networks: Challenges and Opportunities
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Hanson, M.A., primary, Powell, H.C., additional, Barth, A.T., additional, Ringgenberg, K., additional, Calhoun, B.H., additional, Aylor, J.H., additional, and Lach, J., additional
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- 2009
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44. Phosphinoglycines and Phosphinoglycolates
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Heinicke, J., primary, Lach, J., additional, Peulecke, N., additional, Jones, P. G., additional, and Dix, I., additional
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- 2008
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45. Sports hernias: a systematic literature review
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Caudill, P, primary, Nyland, J, additional, Smith, C, additional, Yerasimides, J, additional, and Lach, J, additional
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- 2007
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46. Synthesis and in vitro Cytotoxic Activity of Novel 6‐Chloro‐1,1‐dioxo‐1,4,2‐benzodithiazin‐3‐ylhydrazine Derivatives.
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Pomarnacka, E., primary, Bednarski, P. J., additional, Grunert, R., additional, Brzozowski, Z., additional, and Lach, J., additional
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- 2006
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47. Session details: Circuit design and modeling
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Lach, J., primary
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- 2006
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48. Confirmation of the doubly charmed baryon Ξcc+(3520) via its decay to pD+K−
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Ocherashvili, A., primary, Moinester, M.A., additional, Russ, J., additional, Engelfried, J., additional, Torres, I., additional, Akgun, U., additional, Alkhazov, G., additional, Amaro-Reyes, J., additional, Atamantchouk, A.G., additional, Ayan, A.S., additional, Balatz, M.Y., additional, Bondar, N.F., additional, Cooper, P.S., additional, Dauwe, L.J., additional, Davidenko, G.V., additional, Dersch, U., additional, Dolgolenko, A.G., additional, Dzyubenko, G.B., additional, Edelstein, R., additional, Emediato, L., additional, Endler, A.M.F., additional, Eschrich, I., additional, Escobar, C.O., additional, Evdokimov, A.V., additional, Filimonov, I.S., additional, Garcia, F.G., additional, Gaspero, M., additional, Giller, I., additional, Golovtsov, V.L., additional, Gouffon, P., additional, Gülmez, E., additional, Kangling, He, additional, Iori, M., additional, Jun, S.Y., additional, Kaya, M., additional, Kilmer, J., additional, Kim, V.T., additional, Kochenda, L.M., additional, Konorov, I., additional, Kozhevnikov, A.P., additional, Krivshich, A.G., additional, Krüger, H., additional, Kubantsev, M.A., additional, Kubarovsky, V.P., additional, Kulyavtsev, A.I., additional, Kuropatkin, N.P., additional, Kurshetsov, V.F., additional, Kushnirenko, A., additional, Kwan, S., additional, Lach, J., additional, Lamberto, A., additional, Landsberg, L.G., additional, Larin, I., additional, Leikin, E.M., additional, Yunshan, Li, additional, Luksys, M., additional, Lungov, T., additional, Maleev, V.P., additional, Mao, D., additional, Chensheng, Mao, additional, Zhenlin, Mao, additional, Mathew, P., additional, Mattson, M., additional, Matveev, V., additional, McCliment, E., additional, Molchanov, V.V., additional, Morelos, A., additional, Nelson, K.D., additional, Nemitkin, A.V., additional, Neoustroev, P.V., additional, Newsom, C., additional, Nilov, A.P., additional, Nurushev, S.B., additional, Onel, Y., additional, Ozel, E., additional, Ozkorucuklu, S., additional, Penzo, A., additional, Petrenko, S.V., additional, Pogodin, P., additional, Procario, M., additional, Prutskoi, V.A., additional, Ramberg, E., additional, Rappazzo, G.F., additional, Razmyslovich, B.V., additional, Rud, V.I., additional, Schiavon, P., additional, Simon, J., additional, Sitnikov, A.I., additional, Skow, D., additional, Smith, V.J., additional, Srivastava, M., additional, Steiner, V., additional, Stepanov, V., additional, Stutte, L., additional, Svoiski, M., additional, Terentyev, N.K., additional, Thomas, G.P., additional, Uvarov, L.N., additional, Vasiliev, A.N., additional, Vavilov, D.V., additional, Vázquez-Jáuregui, E., additional, Verebryusov, V.S., additional, Victorov, V.A., additional, Vishnyakov, V.E., additional, Vorobyov, A.A., additional, Vorwalter, K., additional, You, J., additional, Wenheng, Zhao, additional, Shuchen, Zheng, additional, and Zukanovich-Funchal, R., additional
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- 2005
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49. Integration of Geologic and Dynamic Models for History Matching, Medusa Field
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Lach, J., additional, McMillen, K., additional, Archer, R., additional, Holland, J., additional, Depauw, R., additional, and Ludvigsen, B. E., additional
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- 2005
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50. Polarization ofΣ+hyperons produced by 800 GeV/c protons on Cu and Be
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Pogodin, P., primary, Alkhazov, G., additional, Atamantchouk, A. G., additional, Balatz, M. Y., additional, Bondar, N. F., additional, Cooper, P. S., additional, Dauwe, L. J., additional, Davidenko, G. V., additional, Dersch, U., additional, Dolgolenko, A. G., additional, Dzyubenko, G. B., additional, Edelstein, R., additional, Emediato, L., additional, Endler, A. M. F., additional, Engelfried, J., additional, Eschrich, I., additional, Escobar, C. O., additional, Evdokimov, A. V., additional, Filimonov, I. S., additional, Garcia, F. G., additional, Gaspero, M., additional, Giller, I., additional, Golovtsov, V. L., additional, Gouffon, P., additional, Gülmez, E., additional, He, Kangling, additional, Iori, M., additional, Jun, S. Y., additional, Kaya, M., additional, Kilmer, J., additional, Kim, V. T., additional, Kochenda, L. M., additional, Konorov, I., additional, Kozhevnikov, A. P., additional, Krivshich, A. G., additional, Krüger, H., additional, Kubantsev, M. A., additional, Kubarovsky, V. P., additional, Kulyavtsev, A. I., additional, Kuropatkin, N. P., additional, Kurshetsov, V. F., additional, Kushnirenko, A., additional, Kwan, S., additional, Lach, J., additional, Lamberto, A., additional, Landsberg, L. G., additional, Larin, I., additional, Leikin, E. M., additional, Li, Yushan, additional, Luksys, M., additional, Lungov, T., additional, Maleev, V. P., additional, Mao, Chensheng, additional, Mao, D., additional, Mao, Zhenlin, additional, Mathew, P., additional, Mattson, M., additional, Matveev, V., additional, McCliment, E., additional, Moinester, M. A., additional, Molchanov, V. V., additional, Morelos, A., additional, Nelson, K. D., additional, Nemitkin, A. V., additional, Neoustroev, P. V., additional, Newsom, C., additional, Nilov, A. P., additional, Nurushev, S. B., additional, Ocherashvili, A., additional, de Oliveira, E., additional, Onel, Y., additional, Ozel, E., additional, Ozkurucuklu, S., additional, Penzo, A., additional, Petrenko, S. V., additional, Procario, M., additional, Prutskoi, V. A., additional, Ramberg, E., additional, Rappazzo, G. F., additional, Razmyslovich, B. V., additional, Rud, V. I., additional, Russ, J., additional, Schiavon, P., additional, Simon, J., additional, Sitnikov, A. I., additional, Skow, D., additional, Smith, V. J., additional, Srivastava, M., additional, Steiner, V., additional, Stepanov, V., additional, Stutte, L., additional, Svoiski, M., additional, Terentyev, N. K., additional, Thomas, G. P., additional, Uvarov, L. N., additional, Vasiliev, A. N., additional, Vavilov, D. V., additional, Verebryusov, V. S., additional, Victorov, V. A., additional, Vishnyakov, V. E., additional, Vorobyov, A. A., additional, Vorwalter, K., additional, You, J., additional, Zhao, Wenheng, additional, Zheng, Shuchen, additional, and Zukanovich-Funchal, R., additional
- Published
- 2004
- Full Text
- View/download PDF
Catalog
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