Mostrando 1,281 - 1,300 Resultados de 518,522 Para Buscar '"Largs"', tiempo de consulta: 1.46s Limitar resultados
  1. 1281
    por Arce, Ayana
    Publicado 2018
    “…Searches for new heavy resonances, supersymmetric particles, heavy vector quarks, and measurements of highly boosted Standard Model processes increasingly rely on large radius jets to reconstruct hadronically decaying boosted objects. …”
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  2. 1282
  3. 1283
  4. 1284
  5. 1285
  6. 1286
  7. 1287
  8. 1288
  9. 1289
  10. 1290
    “…The focus of this book is the large-scale statistical behavior of solutions of divergence-form elliptic equations with random coefficients, which is closely related to the long-time asymptotics of reversible diffusions in random media and other basic models of statistical physics. …”
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  11. 1291
  12. 1292
    por Mann, Alexander
    Publicado 2019
    “…The latest results from the ATLAS and CMS collaborations are presented, making use of the large dataset of proton–proton collisions at a centre-of-mass energy of $\sqrt s = 13$ TeV provided by the Large Hadron Collider.…”
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  13. 1293
    “…The methods used here can be applied to any other device and the physics background discussed here are quite general and valid for a large phase-space of the parameters.…”
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  14. 1294
  15. 1295
  16. 1296
  17. 1297
    por Agostini, P., Aksakal, H., Alekhin, S., Allport, P.P., Andari, N., Andre, K.D.J., Angal-Kalinin, D., Antusch, S., Aperio Bella, L., Apolinario, L., Apsimon, R., Apyan, A., Arduini, G., Ari, V., Armbruster, A., Armesto, N., Auchmann, B., Aulenbacher, K., Azuelos, G., Backovic, S., Bailey, I., Bailey, S., Balli, F., Behera, S., Behnke, O., Ben-Zvi, I., Benedikt, M., Bernauer, J., Bertolucci, S., Biswal, S.S., Blümlein, J., Bogacz, A., Bonvini, M., Boonekamp, M., Bordry, F., Boroun, G.R., Bottura, L., Bousson, S., Bouzas, A.O., Bracco, C., Bracinik, J., Britzger, D., Brodsky, S.J., Bruni, C., Brüning, O., Burkhardt, H., Cakir, O., Calaga, R., Caldwell, A., Calıskan, A., Camarda, S., Catalan-Lasheras, N.C., Cassou, K., Cepila, J., Cetinkaya, V., Chetvertkova, V., Cole, B., Coleppa, B., Cooper-Sarkar, A., Cormier, E., Cornell, A.S., Corsini, R., Cruz-Alaniz, E., Currie, J., Curtin, D., D'Onofrio, M., Dainton, J., Daly, E., Das, A., Das, S.P., Dassa, L., de Blas, J., Delle Rose, L., Denizli, H., Deshpande, K.S., Douglas, D., Duarte, L., Dupraz, K., Dutta, S., Efremov, A.V., Eichhorn, R., Eskola, K.J., Ferreiro, E.G., Fischer, O., Flores-Sánchez, O., Forte, S., Gaddi, A., Gao, J., Gehrmann, T., Gehrmann-De Ridder, A., Gerigk, F., Gilbert, A., Giuli, F., Glazov, A., Glover, N., Godbole, R.M., Goddard, B., Gonçalves, V., Gonzalez-Sprinberg, G.A., Goyal, A., Grames, J., Granados, E., Grassellino, A., Gunaydin, Y.O., Guo, Y.C., Guzey, V., Gwenlan, C., Hammad, A., Han, C.C., Harland-Lang, L., Haug, F., Hautmann, F., Hayden, D., Hessler, J., Helenius, I., Henry, J., Hernandez-Sanchez, J., Hesari, H., Hobbs, T.J., Hod, N., Hoffstaetter, G.H., Holzer, B., Honorato, C.G., Hounsell, B., Hu, N., Hug, F., Huss, A., Hutton, A., Islam, R., Iwamoto, S., Jana, S., Jansova, M., Jensen, E., Jones, T., Jowett, J.M., Kaabi, W., Kado, M., Kalinin, D.A., Karadeniz, H., Kawaguchi, S., Kaya, U., Khalek, R.A., Khanpour, H., Kilic, A., Klein, M., Klein, U., Kluth, S., Köksal, M., Kocak, F., Korostelev, M., Kostka, P., Krelina, M., Kretzschmar, J., Kuday, S., Kulipanov, G., Kumar, M., Kuze, M., Lappi, T., Larios, F., Latina, A., Laycock, P., Lei, G., Levitchev, E., Levonian, S., Levy, A., Li, R., Li, X., Liang, H., Litvinenko, V., Liu, M., Liu, T., Liu, W., Liu, Y., Liuti, S., Lobodzinska, E., Longuevergne, D., Luo, X., Ma, W., Machado, M., Mandal, S., Mäntysaari, H., Marhauser, F., Marquet, C., Martens, A., Martin, R., Marzani, S., McFayden, J., Mcintosh, P., Mellado, B., Meot, F., Milanese, A., Milhano, J.G., Militsyn, B., Mitra, M., Moch, S., Mohammadi Najafabadi, M., Mondal, S., Moretti, S., Morgan, T., Morreale, A., Nadolsky, P., Navarra, F., Nergiz, Z., Newman, P., Niehues, J., Nissen, E.A., Nowakowski, M., Okada, N., Olivier, G., Olness, F., Olry, G., Osborne, J.A., Ozansoy, A., Pan, R., Parker, B., Patra, M., Paukkunen, H., Peinaud, Y., Pellegrini, D., Perez-Segurana, G., Perini, D., Perrot, L., Pietralla, N., Pilicer, E., Pire, B., Pires, J., Placakyte, R., Poelker, M., Polifka, R., Polini, A., Poulose, P., Pownall, G., Pupkov, Y.A., Queiroz, F.S., Rabbertz, K., Radescu, V., Rahaman, R., Rai, S.K., Raicevic, N., Ratoff, P., Rashed, A., Raut, D., Raychaudhuri, S., Repond, J., Rezaeian, A.H., Rimmer, R., Rinolfi, L., Rojo, J., Rosado, A., Ruan, X., Russenschuck, S., Sahin, M., Salgado, C.A., Sampayo, O.A., Satendra, K., Satyanarayan, N., Schenke, B., Schirm, K., Schopper, H., Schott, M., Schulte, D., Schwanenberger, C., Sekine, T., Senol, A., Seryi, A., Setiniyaz, S., Shang, L., Shen, X., Shipman, N., Sinha, N., Slominski, W., Smith, S., Solans, C., Song, M., Spiesberger, H., Stanyard, J., Starostenko, A., Stasto, A., Stocchi, A., Strikman, M., Stuart, M.J., Sultansoy, S., Sun, H., Sutton, M., Szymanowski, L., Tapan, I., Tapia-Takaki, D., Tanaka, M., Tang, Y., Tasci, A.T., Ten-Kate, A.T., Thonet, P., Tomas-Garcia, R., Tommasini, D., Trbojevic, D., Trott, M., Tsurin, I., Tudora, A., Turk Cakir, I., Tywoniuk, K., Vallerand, C., Valloni, A., Verney, D., Vilella, E., Walker, D., Wallon, S., Wang, B., Wang, K., Wang, K., Wang, X., Wang, Z.S., Wei, H., Welsch, C., Willering, G., Williams, P.H., Wollmann, D., Xiaohao, C., Xu, T., Yaguna, C.E., Yamaguchi, Y., Yamazaki, Y., Yang, H., Yilmaz, A., Yock, P., Yue, C.X., Zadeh, S.G., Zenaiev, O., Zhang, C., Zhang, J., Zhang, R., Zhang, Z., Zhu, G., Zhu, S., Zimmermann, F., Zomer, F., Zurita, J., Zurita, P.
    Publicado 2020
    “…The Large Hadron electron Collider, LHeC, is the means to move deep inelastic physics following HERA to the energy frontier of particle physics as it is being exploited by the HL-LHC. …”
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    Enlace del recurso
  18. 1298
    “…Untangling the effects of tau neutrino oscillations into sterile neutrinos and distinguishing a 3+1 scenario from the standard scenario with three active neutrino flavours, will be challenging due to the large theoretical uncertainties from QCD.…”
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    Enlace del recurso
  19. 1299
  20. 1300
    Publicado 2020
    “…Connection between two superconducting magnets Cryostat - Keeping the magnets cold The Large Hadron Collider superconducting magnets are cooled by liquid helium to 1.9 degrees above absolute zero, or around 300 degrees below the ambient temperature in the tunnel. …”
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