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  1. 16221
    por Abbiendi, G., Ainsley, C., Akesson, P.F., Alexander, G., Allison, John, Amaral, P., Anagnostou, G., Anderson, K.J., Asai, S., Axen, D., Azuelos, G., Bailey, I., Barberio, E., Barillari, T., Barlow, R.J., Batley, R.J., Bechtle, P., Behnke, T., Bell, Kenneth Watson, Bell, P.J., Bella, G., Bellerive, A., Benelli, G., Bethke, S., Biebel, O., Boeriu, O., Bock, P., Boutemeur, M., Braibant, S., Brigliadori, L., Brown, Robert M., Buesser, K., Burckhart, H.J., Campana, S., Carnegie, R.K., Carter, A.A., Carter, J.R., Chang, C.Y., Charlton, D.G., Ciocca, C., Csilling, A., Cuffiani, M., Dado, S., De Roeck, A., De Wolf, E.A., Desch, K., Dienes, B., Donkers, M., Dubbert, J., Duchovni, E., Duckeck, G., Duerdoth, I.P., Etzion, E., Fabbri, F., Feld, L., Ferrari, P., Fiedler, F., Fleck, I., Ford, M., Frey, A., Gagnon, P., Gary, John William, Gaycken, G., Geich-Gimbel, C., Giacomelli, G., Giacomelli, P., Giunta, Marina, Goldberg, J., Gross, E., Grunhaus, J., Gruwe, M., Gunther, P.O., Gupta, A., Hajdu, C., Hamann, M., Hanson, G.G., Harel, A., Hauschild, M., Hawkes, C.M., Hawkings, R., Hemingway, R.J., Herten, G., Heuer, R.D., Hill, J.C., Hoffman, Kara Dion, Horvath, D., Igo-Kemenes, P., Ishii, K., Jeremie, H., Jovanovic, P., Junk, T.R., Kanaya, N., Kanzaki, J., Karlen, D., Kawagoe, K., Kawamoto, T., Keeler, R.K., Kellogg, R.G., Kennedy, B.W., Kluth, S., Kobayashi, T., Kobel, M., Komamiya, S., Kramer, T., Krieger, P., von Krogh, J., Kruger, K., Kuhl, T., Kupper, M., Lafferty, G.D., Landsman, H., Lanske, D., Layter, J.G., Lellouch, D., Lettso, J., Levinson, L., Lillich, J., Lloyd, S.L., Loebinger, F.K., Lu, J., Ludwig, A., Ludwig, J., Mader, W., Marcellini, S., Martin, A.J., Masetti, G., Mashimo, T., Mattig, Peter, McKenna, J., McPherson, R.A., Meijers, F., Menges, W., Merritt, F.S., Mes, H., Meyer, Niels T., Michelini, A., Mihara, S., Mikenberg, G., Miller, D.J., Moed, S., Mohr, W., Mori, T., Mutter, A., Nagai, K., Nakamura, I., Nanjo, H., Neal, H.A., Nisius, R., O'Neale, S.W., Oh, A., Oreglia, M.J., Orito, S., Pahl, C., Pasztor, G., Pater, J.R., Pilcher, J.E., Pinfold, J., Plane, David E., Poli, B., Pooth, O., Przybycien, M., Quadt, A., Rabbertz, K., Rembser, C., Renkel, P., Roney, J.M., Rozen, Y., Runge, K., Sachs, K., Saeki, T., Sarkisyan, E.K.G., Schaile, A.D., Schaile, O., Scharff-Hansen, P., Schieck, J., Schorner-Sadenius, T., Schroder, Matthias, Schumacher, M., Scott, W.G., Seuster, R., Shears, T.G., Shen, B.C., Sherwood, P., Skuja, A., Smith, A.M., Sobie, R., Soldner-Rembold, S., Spano, F., Stahl, A., Strom, David M., Strohmer, R., Tarem, S., Tasevsky, M., Teuscher, R., Thomson, M.A., Torrence, E., Toya, D., Tran, P., Trigger, I., Trocsanyi, Z., Tsur, E., Turner-Watson, M.F., Ueda, I., Ujvari, B., Vollmer, C.F., Vannerem, P., Vertesi, R., Verzocchi, M., Voss, H., Vossebeld, J., Ward, C.P., Ward, D.R., Watkins, P.M., Watson, A.T., Watson, N.K., Wells, P.S., Wengler, T., Wermes, N., Wilson, G.W., Wilson, J.A., Wolf, G., Wyatt, T.R., Yamashita, S., Zer-Zion, D., Zivkovic, Lidija
    Publicado 2004
    “…For example, in the CP-conserving scenario mh-max where the MSSM parameters are adjusted to predict the largest range of values for mh at each tan beta, and for a top quark mass of 174.3 GeV, the domain 0.7<tan beta<1.9 is excluded at the 95% confidence level and Higgs boson mass limits of mh>84.5 GeV and ma>85.0 GeV are obtained. …”
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  2. 16222
    por Ananya, Alarcon Do Passo Suaide, A, Alves Garcia Prado, C, Alt, T, Aphecetche, L, Agrawal, N, Avasthi, A, Bach, M, Bala, R, Barnafoldi, G, Bhasin, A, Belikov, J, Bellini, F, Betev, L, Breitner, T, Buncic, P, Carena, F, Carena, W, Chapeland, S, Barroso, V Chibante, Cliff, F, Costa, F, Cunqueiro Mendez, L, Dash, S, Delort, C, Denes, E, Divia, R, Doenigus, B, Engel, H, Eschweiler, D, Fuchs, U, Gheata, A, Gheata, M, Ramirez, A Gomez, Gorbunov, S, Graczykowski, L, Grigoras, A, Grigoras, C, Grigore, A, Grosso, R, Guernane, R, Gupta, A, Hrivnacova, I, Hristov, P, Ionita, C, Ivanov, M, Janik, M, Kalcher, S, Kassalias, N, Kebschull, U, Khandelwal, R, Kushpil, S, Kisel, I, Kiss, T, Kollegger, T, Kowalski, M, Kretz, M, Kulakov, I, Lafage, V, Lara, C, Legrand, I, Lindenstruth, V, Maevskaya, A, Malzacher, P, Morsch, A, Nandi, B, Niculescu, M, Pillot, P, Planinic, M, Pluta, J, Poljak, N, Rajput, S, Read, K, Ribon, A, Rohr, D, Rubin, G, Shahoyan, R, Sharma, A, Simonetti, G, Smorholm, O, Soos, C, Szymanski, M, Telesca, A, Thaeder, J, Udupa, A, Vande Vyvre, P, Vennedey, F, von Haller, B, Wenzel, S, Zampolli, C, Zyzak, M
    Publicado 2014
    “…ALICE (A Large Ion Collider Experiment) is a detector dedicated to the studies with heavy ion collisions exploring the physics of strongly interacting nuclear matter and the quark-gluon plasma at the CERN LHC (Large Hadron Collider). …”
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  3. 16223
    por Lee, Yang-Jin
    Publicado 2023
    “…The participants’ diaphragm thickness was measured via rehabilitative ultrasound image (RUSI) and a respiratory function test was conducted using a MicroQuark spirometer. These parameters were measured before the intervention and 8 weeks after the intervention. …”
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    Online Artículo Texto
  4. 16224
    “…The inclusion of the cross section for inclusive [Formula: see text] production allows us to explore the correlation between the mass [Formula: see text] of the top quark and [Formula: see text] . We find that the best-fit values are [Formula: see text] and [Formula: see text] at NLO and NNLO, respectively, with the central values changing to [Formula: see text] and 0.1178 when the world average of [Formula: see text] is used as a data point. …”
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    Online Artículo Texto
  5. 16225
    “…Key findings were that pork ham cured, fish pudding, and egg lean white induced better tissue growth, and quark with fruit, cheese quarg 45% and cheese cream 60% had similar lactose content as human milk.…”
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    Online Artículo Texto
  6. 16226
    “…We calculate the transverse momentum dependent gluon-to-gluon splitting function within [Formula: see text] -factorization, generalizing the framework employed in the calculation of the quark splitting functions in Hautmann et al. (Nucl Phys B 865:54-66, arXiv:1205.1759, 2012), Gituliar et al. …”
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    Online Artículo Texto
  7. 16227
    “…At the validation phase of the model, frequency distribution (number and percentage), median, and quark distortion index of the questions in the questionnaire were analyzed using SPSS and Minitab software. …”
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    Online Artículo Texto
  8. 16228
    “…We vary the singlet mass and coupling along with 13 nuisance parameters, including nuclear uncertainties relevant for direct detection, the local dark matter density, and selected quark masses and couplings. We include the dark matter relic density measured by Planck, direct searches with LUX, PandaX, SuperCDMS and XENON100, limits on invisible Higgs decays from the Large Hadron Collider, searches for high-energy neutrinos from dark matter annihilation in the Sun with IceCube, and searches for gamma rays from annihilation in dwarf galaxies with the Fermi-LAT. …”
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    Online Artículo Texto
  9. 16229
    por Kim, Kyung-hun, Kim, Dong-hoon
    Publicado 2022
    “…We used the MYSONO U5 MicroQuark to evaluate diaphragm thickness and respiratory function (forced vital capacity, forced expiratory volume in the one second, peak expiratory flow), respectively. …”
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    Online Artículo Texto
  10. 16230
  11. 16231
  12. 16232
    por Reichelt, Patrick Simon
    Publicado 2022
    “…Dielectrons of highest mass are thus produced in the initial scatterings of the colliding nuclei by quark-antiquark annihilation. Correlated electron-positron pairs can also emerge from the decay chains of early-produced pairs of heavy-flavour (HF) particles. …”
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  13. 16233
    “…Our result at the physical point is <math display="inline"><msubsup><mi>a</mi><mi>μ</mi><mi>win</mi></msubsup><mo>=</mo><mo stretchy="false">(</mo><mn>237.30</mn><mo>±</mo><mn>0.7</mn><msub><mn>9</mn><mrow><mi>stat</mi></mrow></msub><mo>±</mo><mn>1.2</mn><msub><mn>2</mn><mrow><mi>syst</mi></mrow></msub><mo stretchy="false">)</mo><mo>×</mo><msup><mn>10</mn><mrow><mo>-</mo><mn>10</mn></mrow></msup></math>, where the systematic error includes an estimate of the uncertainty due to the quenched charm quark in our calculation. Our result displays a tension of <math display="inline"><mrow><mn>3.9</mn><mi>σ</mi></mrow></math> with a recent evaluation of <math display="inline"><msubsup><mi>a</mi><mi>μ</mi><mi>win</mi></msubsup></math> based on the data-driven method.…”
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  14. 16234
    por Taylor, R.J.
    Publicado 2001
    “…Several parameterisations of <alternatives xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:oasis="http://docs.oasis-open.org/ns/oasis-exchange/table"><span class="NLM_inline-graphic"><img src="/na101/home/literatum/publisher/wspc/books/content/books/2002/5011/9789812777157_0001/20170712/images/medium/9789812777157_0001m006.gif" alt="" /></span></alternatives> are in agreement with the measurements whereas the quark-parton model prediction fails to describe the data.…”
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  15. 16235
  16. 16236
    por Burrows, P.N., Catalan Lasheras, N., Linssen, L., Petrič, M., Robson, A., Schulte, D., Sicking, E., Stapnes, S., Charles, T.K., Giansiracusa, P.J., Lucas, T.G., Rassool, R.P., Volpi, M., Balazs, C., Afanaciev, K., Makarenko, V., Patapenka, A., Zhuk, I., Collette, C., Boland, M.J., Abusleme Hoffman, A.C., Diaz, M.A., Garay, F., Chi, Y., He, X., Pei, G., Pei, S., Shu, G., Wang, X., Zhang, J., Zhao, F., Zhou, Z., Chen, H., Gao, Y., Huang, W., Kuang, Y.P., Li, B., Li, Y., Meng, X., Shao, J., Shi, J., Tang, C., Wang, P., Wu, X., Zha, H., Ma, L., Han, Y., Fang, W., Gu, Q., Huang, D., Huang, X., Tan, J., Wang, Z., Zhao, Z., Uggerhøj, U.I., Wistisen, T.N., Aabloo, A., Aare, R., Kuppart, K., Vigonski, S., Zadin, V., Aicheler, M., Baibuz, E., Brücken, E., Djurabekova, F., Eerola, P., Garcia, F., Haeggström, E., Huitu, K., Jansson, V., Kassamakov, I., Kimari, J., Kyritsakis, A., Lehti, S., Meriläinen, A., Montonen, R., Nordlund, K., Österberg, K., Saressalo, A., Väinölä, J., Veske, M., Farabolini, W., Mollard, A., Peauger, F., Plouin, J., Bambade, P., Chaikovska, I., Chehab, R., Delerue, N., Davier, M., Faus-Golfe, A., Irles, A., Kaabi, W., LeDiberder, F., Pöschl, R., Zerwas, D., Aimard, B., Balik, G., Blaising, J.-J., Brunetti, L., Chefdeville, M., Dominjon, A., Drancourt, C., Geoffroy, N., Jacquemier, J., Jeremie, A., Karyotakis, Y., Nappa, J.M., Serluca, M., Vilalte, S., Vouters, G., Bernhard, A., Bründermann, E., Casalbuoni, S., Hillenbrand, S., Gethmann, J., Grau, A., Huttel, E., Müller, A.-S., Peiffer, P., Perić, I., Saez de Jauregui, D., Emberger, L., Graf, C., Simon, F., Szalay, M., van der Kolk, N., Brass, S., Kilian, W., Alexopoulos, T., Apostolopoulos, T., Gazis, E.N., Gazis, N., Kostopoulos, V., Kourkoulis, S., Heilig, B., Lichtenberger, J., Shrivastava, P., Dayyani, M.K., Ghasem, H., Hajari, S.S., Shaker, H., Ashkenazy, Y., Popov, I., Engelberg, E., Yashar, A., Abramowicz, H., Benhammou, Y., Borysov, O., Borysova, M., Levy, A., Levy, I., Alesini, D., Bellaveglia, M., Buonomo, B., Cardelli, A., Diomede, M., Ferrario, M., Gallo, A., Ghigo, A., Giribono, A., Piersanti, L., Stella, A., Vaccarezza, C., de Blas, J., Franceschini, R., D'Auria, G., Di Mitri, S., Abe, T., Aryshev, A., Fukuda, M., Furukawa, K., Hayano, H., Higashi, Y., Higo, T., Kubo, K., Kuroda, S., Matsumoto, S., Michizono, S., Naito, T., Okugi, T., Shidara, T., Tauchi, T., Terunuma, N., Urakawa, J., Yamamoto, A., Raboanary, R., Luiten, O.J., Stragier, X.F.D., Hart, R., van der Graaf, H., Eigen, G., Adli, E., Lindstrøm, C.A., Lillestøl, R., Malina, L., Pfingstner, J., Sjobak, K.N., Ahmad, A., Hoorani, H., Khan, W.A., Bugiel, S., Bugiel, R., Firlej, M., Fiutowski, T.A., Idzik, M., Moroń, J., Świentek, K.P., Brückman de Renstrom, P., Krupa, B., Kucharczyk, M., Lesiak, T., Pawlik, B., Sopicki, P., Turbiarz, B., Wojtoń, T., Zawiejski, L.K., Kalinowski, J., Nowak, K., Żarnecki, A.F., Firu, E., Ghenescu, V., Neagu, A.T., Preda, T., Zgura, I.S., Aloev, A., Azaryan, N., Boyko, I., Budagov, J., Chizhov, M., Filippova, M., Glagolev, V., Gongadze, A., Grigoryan, S., Gudkov, D., Karjavine, V., Lyablin, M., Nefedov, Yu., Olyunina, A., Rymbekova, A., Samochkine, A., Sapronov, A., Shelkov, G., Shirkov, G., Soldatov, V., Solodko, E., Trubnikov, G., Tyapkin, I., Uzhinsky, V., Vorozhtov, A., Zhemchugov, A., Levichev, E., Mezentsev, N., Piminov, P., Shatilov, D., Vobly, P., Zolotarev, K., BožovićJelisavčić, I., Kačarević, G., MilutinovićDumbelović, G., Pandurović, M., Radulović, M., Stevanović, J., Vukasinović, N., Lee, D.-H., Ayala, N., Benedetti, G., Guenzel, T., Iriso, U., Marti, Z., Perez, F., Pont, M., Trenado, J., Ruiz-Jimeno, A., Vila, I., Calero, J., Dominguez, M., Garcia-Tabares, L., Gavela, D., Lopez, D., Toral, F., Blanch Gutierrez, C., Boronat, M., Esperante, D., Fullana, E., Fuster, J., García, I., Gimeno, B., Gomis Lopez, P., González, D., Perelló, M., Ros, E., Villarejo, M.A., Vnuchenko, A., Vos, M., Borgmann, Ch., Brenner, R., Ekelöf, T., Jacewicz, M., Olvegård, M., Ruber, R., Ziemann, V., Aguglia, D., Alabau Gonzalvo, J., Alcaide Leon, M., Alipour Tehrani, N., Anastasopoulos, M., Andersson, A., Andrianala, F., Antoniou, F., Apyan, A., Arominski, D., Artoos, K., Assly, S., Atieh, S., Baccigalupi, C., Ballabriga Sune, R., Banon Caballero, D., Barnes, M.J., Barranco Garcia, J., Bartalesi, A., Bauche, J., Bayar, C., Belver-Aguilar, C., Benot Morell, A., Bernardini, M., Bett, D.R., Bettoni, S., Bettencourt, M., Bielawski, B., Blanco Garcia, O., Blaskovic Kraljevic, N., Bolzon, B., Bonnin, X.A., Bozzini, D., Branger, E., Brondolin, E., Brunner, O., Buckland, M., Bursali, H., Burkhardt, H., Caiazza, D., Calatroni, S., Campbell, M., Cassany, B., Castro, E., Cavaleiro Soares, R.H., Cerqueira Bastos, M., Cherif, A., Chevallay, E., Cilento, V., Corsini, R., Costa, R., Cure, B., Curt, S., Dal Gobbo, A., Dannheim, D., Daskalaki, E., Deacon, L., Degiovanni, A., De Michele, G., De Oliveira, L., Del Pozo Romano, V., Delahaye, J.P., Delikaris, D., Dias de Almeida, P.G., Dobers, T., Doebert, S., Doytchinov, I., Draper, M., Duarte Ramos, F., Duquenne, M., Egidos Plaja, N., Elsener, K., Esberg, J., Esposito, M., Evans, L., Fedosseev, V., Ferracin, P., Fiergolski, A., Foraz, K., Fowler, A., Friebel, F., Fuchs, J-F., Gaddi, A., Gamba, D., Garcia Fajardo, L., Garcia Morales, H., Garion, C., Gasior, M., Gatignon, L., Gayde, J-C., Gerbershagen, A., Gerwig, H., Giambelli, G., Gilardi, A., Goldblatt, A.N., Gonzalez Anton, S., Grefe, C., Grudiev, A., Guerin, H., Guillot-Vignot, F.G., Gutt-Mostowy, M.L., Hein Lutz, M., Hessler, C., Holma, J.K., Holzer, E.B., Hourican, M., Hynds, D., Ikarios, E., Inntjore Levinsen, Y., Janssens, S., Jeff, A., Jensen, E., Jonker, M., Kamugasa, S.W., Kastriotou, M., Kemppinen, J.M.K., Khan, V., Kieffer, R.B., Klempt, W., Kokkinis, N., Kossyvakis, I., Kostka, Z., Korsback, A., Koukovini Platia, E., Kovermann, J.W., Kozsar, C-I., Kremastiotis, I., Kröger, J., Kulis, S., Latina, A., Leaux, F., Lebrun, P., Lefevre, T., Leogrande, E., Liu, X., Llopart Cudie, X., Magnoni, S., Maidana, C., Maier, A.A., Mainaud Durand, H., Mallows, S., Manosperti, E., Marelli, C., Marin Lacoma, E., Marsh, S., Martin, R., Martini, I., Martyanov, M., Mazzoni, S., Mcmonagle, G., Mether, L.M., Meynier, C., Modena, M., Moilanen, A., Mondello, R., Moniz Cabral, P.B., Mouriz Irazabal, N., Munker, M., Muranaka, T., Nadenau, J., Navarro, J.G., Navarro Quirante, J.L., Nebo Del Busto, E., Nikiforou, N., Ninin, P., Nonis, M., Nisbet, D., Nuiry, F.X., Nürnberg, A., Ögren, J., Osborne, J., Ouniche, A.C., Pan, R., Papadopoulou, S., Papaphilippou, Y., Paraskaki, G., Pastushenko, A., Passarelli, A., Patecki, M., Pazdera, L., Pellegrini, D., Pepitone, K., Perez Codina, E., Perez Fontenla, A., Persson, T.H.B., Pitman, S., Pitters, F., Pittet, S., Plassard, F., Popescu, D., Quast, T., Rajamak, R., Redford, S., Remandet, L., Renier, Y., Rey, S.F., Rey Orozco, O., Riddone, G., Rodriguez Castro, E., Roloff, P., Rossi, C., Rossi, F., Rude, V., Ruehl, I., Rumolo, G., Sailer, A., Sandomierski, J., Santin, E., Sanz, C., Sauza Bedolla, J., Schnoor, U., Schmickler, H., Senes, E., Serpico, C., Severino, G., Shipman, N., Simoniello, R., Skowronski, P.K., Sobrino Mompean, P., Soby, L., Sollander, P., Solodko, A., Sosin, M.P., Spannagel, S., Sroka, S., Sterbini, G., Stern, G., Ström, R., Stuart, M.J., Syratchev, I., Szypula, K., Tecker, F., Thonet, P.A., Thrane, P., Timeo, L., Tiirakari, M., Tomas Garcia, R., Tomoiaga, C.I., Valerio, P., Vaňát, T., Vamvakas, A.L., Van Hoorne, J., Viazlo, O., Vicente Barreto Pinto, M., Vitoratou, N., Vlachakis, V., Weber, M.A., Wegner, R., Wendt, M., Widorski, M., Williams, O.E., Williams, M., Woolley, B., Wuensch, W., Wulzer, A., Uythoven, J., Xydou, A., Yang, R., Zelios, A., Zhao, Y., Zisopoulos, P., Benoit, M., Sultan, D M S, Riva, F., Bopp, M., Braun, H.H., Craievich, P., Dehler, M., Garvey, T., Pedrozzi, M., Raguin, J.Y., Rivkin, L., Zennaro, R., Guillaume, S., Rothacher, M., Aksoy, A., Nergiz, Z., Denizli, H., Keskin, U., Oyulmaz, K.Y., Senol, A., Ciftci, A.K., Baturin, V., Karpenko, O., Kholodov, R., Lebed, O., Lebedynskyi, S., Mordyk, S., Musienko, I., Profatilova, Ia., Storizhko, V., Bosley, R.R., Price, T., Watson, M.F., Watson, N.K., Winter, A.G., Goldstein, J., Green, S., Marshall, J.S., Thomson, M.A., Xu, B., You, T., Gillespie, W.A., Spannowsky, M., Beggan, C., Martin, V., Zhang, Y., Protopopescu, D., Apsimon, R.J., Bailey, I., Burt, G.C., Dexter, A.C., Edwards, A.V., Hill, V., Jamison, S., Millar, W.L., Papke, K., Casse, G., Vossebeld, J., Aumeyr, T., Bergamaschi, M., Bobb, L., Bosco, A., Boogert, S., Boorman, G., Cullinan, F., Gibson, S., Karataev, P., Kruchinin, K., Lekomtsev, K., Lyapin, A., Nevay, L., Shields, W., Snuverink, J., Towler, J., Yamakawa, E., Boisvert, V., West, S., Jones, R., Joshi, N., Bett, D., Bodenstein, R.M., Bromwich, T., Christian, G.B., Gohil, C., Korysko, P., Paszkiewicz, J., Perry, C., Ramjiawan, R., Roberts, J., Coates, T., Salvatore, F., Bainbridge, A., Clarke, J.A., Krumpa, N., Shepherd, B.J.A., Walsh, D., Chekanov, S., Demarteau, M., Gai, W., Liu, W., Metcalfe, J., Power, J., Repond, J., Weerts, H., Xia, L., Zhang, J., Zupan, J., Wells, J.D., Zhang, Z., Adolphsen, C., Barklow, T., Dolgashev, V., Franzi, M., Graf, N., Hewett, J., Kemp, M., Kononenko, O., Markiewicz, T., Moffeit, K., Neilson, J., Nosochkov, Y., Oriunno, M., Phinney, N., Rizzo, T., Tantawi, S., Wang, J., Weatherford, B., White, G., Woodley, M.
    Publicado 2018
    “…Each of the three energy stages adds cornerstones of the full CLIC physics programme, such as Higgs width and couplings, top-quark properties, Higgs self-coupling, direct searches, and many precision electroweak measurements. …”
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  17. 16237
    por Steinberg, P
    Publicado 2008
    “…While high $p_T$ phenomena are of primary interest at the LHC, due to the expected increased rates of hard processes, the subsequent modification of jets and heavy quark transport will depend on the energy and gluon density of the medium, as well as its dynamical behavior reflected in the global properties of the "underlying event". …”
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  18. 16238
    por Diglio, S
    Publicado 2009
    “…In addition the cross section is sensitive to the b quark content in the proton and its precise measurement will help in reducing the current uncertainty on the partonic content of the proton (PDF's). …”
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  19. 16239
    por Buechler, A, Esperante, D, Rodriguez, P
    Publicado 2009
    “…The LHCb experiment at the Large Hadron Collider (LHC) at CERN in Geneva Switzerland is specialized on precision measurements of b quark decays. The Silicon Tracker (ST) contributes a crucial part in tracking the particle trajectories and consists of two silicon micro-strip detectors, the Tracker Turicensis upstream of the LHCb magnet and the Inner Tracker downstream. …”
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  20. 16240
    por Straessner, Arno
    Publicado 2010
    “…The masses of the W boson and of the top quark as well as the weak mixing angle are being focused on. …”
    Enlace del recurso
    Enlace del recurso
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