Mostrando 2,121 - 2,140 Resultados de 16,193 Para Buscar '"Bottom"', tiempo de consulta: 0.18s Limitar resultados
  1. 2121
    “…Unfortunately, the low heat conductivity of the glass substrate builds up a temperature gradient within from bottom to top and makes the initial annealing temperature of the perovskite film lower than the black-phase crystallization point (~150°C). …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  2. 2122
    “…The abundance of near-bottom pelagic Microcystis declined with increased depth with no influence of depth on near-surface Microcystis abundance. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  3. 2123
    “…This result adds evidence to the idea that meter perception involves the interaction between top-down and bottom-up processes.…”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  4. 2124
    por Kublina, Sandra, Ali, Muhammad
    Publicado 2021
    “…We further examined entries and exits of the firms among regions with top and bottom rankings in RV. Findings suggest that both the top and bottom regions experienced an increase in the total number of industries, however, exits were much less pronounced in the bottom regions. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  5. 2125
  6. 2126
    “…In the point cloud of the water bottom, the existence of a 1-m target cube and the rough shape of a 2-m target cube are clearly observed at a depth of 12 m. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  7. 2127
    por Oh, Haeseong, Choi, Jung-Hyun
    Publicado 2022
    “…The initial DOC was correlated with precipitation (R(2) = 0.295, p = 0.034) and residence time (R(2) = 0.275, p = 0.040). The change in the bottom water DOC concentration resulted from the DOC released from the sediments, which may cause water quality issues in the bottom water. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  8. 2128
    “…In this paper, we investigate different ways that crowd teams can be formed through three team formation models namely bottom-up, top-down, and hybrid. By simulating an open collaboration scenario such as a hackathon, we observe that the bottom-up model forms the most competitive teams with the highest teamwork quality. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  9. 2129
    por Alsalme, Ali, Alsaeedi, Huda
    Publicado 2022
    “…Further, FA(0.75)MA(0.25)Sn(0.25)Ge(0.5)I(3) = FAMASnGeI(3) was used as the bottom subcell absorber layer due to its narrow band gap of 1.4 eV. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  10. 2130
    “…CONCLUSIONS: This study reports the landscape of virulence factors, antibiotic resistome, and mobilome in the sediment and seawater microbiota residing hadal environment of the deepest ocean bottom on earth. Our work unravels the contrasting and unique features of virulence genes, ARGs, and MGEs in the Mariana Trench bottom, providing new insights into the eco-environmental and biological processes underlying microbial pathogenicity, resistance, and adaptative evolution in the hadal environment. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  11. 2131
    por Barate, R., Buskulic, D., Decamp, D., Ghez, Philippe, Goy, C., Jezequel, S., Lees, J.P., Lucotte, A., Martin, F., Merle, E., Minard, M.N., Nief, J.Y., Pietrzyk, B., Alemany, R., Boix, G., Casado, M.P., Chmeissani, M., Crespo, J.M., Delfino, M., Fernandez, E., Fernandez-Bosman, M., Garrido, L., Grauges, E., Juste, A., Martinez, M., Merino, G., Miquel, R., Mir, L.M., Morawitz, P., Park, I.C., Pascual, A., Riu, I., Sanchez, F., Colaleo, A., Creanza, D., de Palma, M., Gelao, G., Iaselli, G., Maggi, G., Maggi, M., Nuzzo, S., Ranieri, A., Raso, G., Ruggieri, F., Selvaggi, G., Silvestris, L., Tempesta, P., Tricomi, A., Zito, G., Huang, X., Lin, J., Ouyang, Q., Wang, T., Xie, Y., Xu, R., Xue, S., Zhang, J., Zhang, L., Zhao, W., Abbaneo, D., Becker, U., Bright-Thomas, P., Casper, D., Cattaneo, M., Ciulli, V., Dissertori, G., Drevermann, H., Forty, R.W., Frank, M., Gianotti, F., Hagelberg, R., Hansen, J.B., Harvey, John, Janot, P., Jost, B., Lehraus, I., Maley, P., Mato, P., Minten, A., Moneta, L., Qi, N., Pacheco, A., Ranjard, F., Rolandi, Gigi, Rousseau, D., Schlatter, D., Schmitt, M., Schneider, O., Tejessy, W., Teubert, F., Tomalin, I.R., Vreeswijk, M., Wachsmuth, H., Ajaltouni, Z., Badaud, F., Chazelle, G., Deschamps, O., Falvard, A., Ferdi, C., Gay, P., Guicheney, C., Henrard, P., Jousset, J., Michel, B., Monteil, S., Montret, J.C., Pallin, D., Perret, P., Podlyski, F., Proriol, J., Rosnet, P., Hansen, J.D., Hansen, J.R., Hansen, P.H., Nilsson, B.S., Rensch, B., Waananen, A., Daskalakis, G., Kyriakis, A., Markou, C., Simopoulou, E., Vayaki, A., Blondel, A., Brient, J.C., Machefert, F., Rouge, A., Rumpf, M., Tanaka, R., Valassi, A., Videau, H., Focardi, E., Parrini, G., Zachariadou, K., Cavanaugh, R., Corden, M., Georgiopoulos, C., Huehn, T., Jaffe, D.E., Antonelli, A., Bencivenni, G., Bologna, G., Bossi, F., Campana, P., Capon, G., Cerutti, F., Chiarella, V., Felici, G., Laurelli, P., Mannocchi, G., Murtas, F., Murtas, G.P., Passalacqua, L., Pepe-Altarelli, M., Chalmers, M., Curtis, L., Halley, A.W., Lynch, J.G., Negus, P., O'Shea, V., Raine, C., Scarr, J.M., Smith, K., Teixeira-Dias, P., Thompson, A.S., Thomson, Evelyn J., Ward, J.J., Buchmuller, O., Dhamotharan, S., Geweniger, C., Graefe, G., Hanke, P., Hansper, G., Hepp, V., Kluge, E.E., Putzer, A., Sommer, J., Tittel, K., Werner, S., Wunsch, M., Beuselinck, R., Binnie, D.M., Cameron, W., Dornan, P.J., Girone, M., Goodsir, S., Martin, E.B., Marinelli, N., Moutoussi, A., Nash, J., Sedgbeer, J.K., Spagnolo, P., Williams, M.D., Ghete, V.M., Girtler, P., Kneringer, E., Kuhn, D., Rudolph, G., Bowdery, C.K., Buck, P.G., Colrain, P., Crawford, G., Finch, A.J., Foster, F., Hughes, G., Jones, R.W.L., Robertson, A.N., Williams, M.I., Giehl, I., Hoffmann, C., Jakobs, K., Kleinknecht, K., Krocker, M., Nurnberger, H.A., Quast, G., Renk, B., Rohne, E., Sander, H.G., van Gemmeren, P., Zeitnitz, C., Ziegler, T., Aubert, J.J., Benchouk, C., Bonissent, A., Bujosa, G., Carr, J., Coyle, P., Ealet, A., Fouchez, D., Leroy, O., Motsch, F., Payre, P., Talby, M., Sadouki, A., Thulasidas, M., Tilquin, A., Trabelsi, K., Aleppo, M., Antonelli, M., Ragusa, F., Berlich, R., Buescher, Volker, Cowan, G., Dietl, H., Ganis, G., Lutjens, G., Mannert, C., Manner, W., Moser, H.G., Schael, S., Settles, R., Seywerd, H., Stenzel, H., Wiedenmann, W., Wolf, G., Boucrot, J., Callot, O., Chen, S., Davier, M., Duflot, L., Grivaz, J.F., Heusse, P., Hocker, Andreas, Jacholkowska, A., Kado, M., Kim, D.W., Le Diberder, F., Lefrancois, J., Serin, L., Tournefier, E., Veillet, J.J., Videau, I., Zerwas, D., Azzurri, P., Bagliesi, Giuseppe, Bettarini, S., Boccali, T., Bozzi, C., Calderini, G., Dell'Orso, R., Fantechi, R., Ferrante, I., Giassi, A., Gregorio, A., Ligabue, F., Lusiani, A., Marrocchesi, P.S., Messineo, A., Palla, F., Rizzo, G., Sanguinetti, G., Sciaba, A., Sguazzoni, G., Tenchini, R., Vannini, C., Venturi, A., Verdini, P.G., Blair, G.A., Bryant, L.M., Chambers, J.T., Coles, J., Green, M.G., Medcalf, T., Perrodo, P., Strong, J.A., von Wimmersperg-Toeller, J.H., Botterill, D.R., Clifft, R.W., Edgecock, T.R., Haywood, S., Norton, P.R., Thompson, J.C., Wright, A.E., Bloch-Devaux, Brigitte, Colas, P., Fabbro, B., Faif, G., Lancon, E., Lemaire, M.C., Locci, E., Perez, P., Przysiezniak, H., Rander, J., Renardy, J.F., Rosowsky, A., Roussarie, A., Trabelsi, A., Vallage, B., Black, S.N., Dann, J.H., Kim, H.Y., Konstantinidis, N., Litke, A.M., McNeil, M.A., Taylor, G., Booth, C.N., Cartwright, S., Combley, F., Kelly, M.S., Lehto, M.H., Thompson, L.F., Affholderbach, K., Boehrer, Armin, Brandt, S., Foss, J., Grupen, C., Smolik, L., Stephan, F., Giannini, G., Gobbo, B., Musolino, G., Putz, J., Rothberg, J.E., Wasserbaech, S., Williams, R.W., Armstrong, S.R., Betteridge, A.P., Charles, E., Elmer, P., Ferguson, D.P.S., Gao, Y., Gonzalez, S., Greening, T.C., Hayes, O.J., Hu, H., Jin, S., McNamara, P.A., III, Nachtman, J.M., Nielsen, J., Orejudos, W., Pan, Y.B., Saadi, Y., Scott, I.J., Walsh, J., Wu, S.L., Wu, X., Zobernig, G.
    Publicado 1998
    “…Searches for scalar top, scalar bottom and degenerate scalar quarks have been performed with data collected with the ALEPH detector at LEP. …”
    Enlace del recurso
    Enlace del recurso
  12. 2132
    “…As an example of this general strategy, we study SUSY models where gluino decays to an invisible lightest neutralino via an on-shell bottom squark. Taking into account the dominant backgrounds, we show how the mass of the bottom squark, the gluino and (for some class of spectra) that of the neutralino can be determined using this technique.…”
    Enlace del recurso
    Enlace del recurso
  13. 2133
    por The ATLAS collaboration
    Publicado 2013
    “…The results of the search for direct pair production of bottom squarks presented in ATLAS-CONF-2012-165 are reinterpreted in terms of direct pair production of top squarks decaying into a bottom quark and a chargino. …”
    Enlace del recurso
  14. 2134
    por Choudhury, Somnath
    Publicado 2013
    “…Results for the Standard Model Higgs Boson search are presented in the final states consisting of either two tau leptons or a bottom quark pair, based on proton-proton collision data collected in the years 2011 and 2012 at 7 and 8 TeV respectively with the CMS experiment. …”
    Enlace del recurso
  15. 2135
    por Jung, Kurt
    Publicado 2014
    “…Jets are first tagged by their secondary vertices and the contribution from bottom quarks is extracted using template fits to their secondary vertex mass distributions. …”
    Enlace del recurso
  16. 2136
    por The ATLAS collaboration
    Publicado 2019
    “…The first of these likelihoods published on HEPData is from a search for bottom-squark pair production. Using two independent implementations of the model, one in $\texttt{ROOT}$ and one in pure Python, the limits on the bottom-squark mass are reproduced, underscoring the implementation independence and long-term viability of the archived data.…”
    Enlace del recurso
  17. 2137
    por CMS Collaboration
    Publicado 2022
    “…The azimuthal anisotropy elliptic ($v_2$) and triangular ($v_3$) Fourier coefficients of $\mathrm{D}^0$ mesons produced in B hadron decays are measured in PbPb collisions at $\sqrt{s_{_{\mathrm{NN}}}}=5.02~\mathrm{TeV}$. Due to the larger bottom quark mass as compared to the charm quark mass, separate measurements of charm and bottom hadron azimuthal anisotropy can shed new light on understanding the mass dependence of the heavy quark and medium interaction. …”
    Enlace del recurso
  18. 2138
    por Das, Indranil
    Publicado 2023
    “…We are looking for $H^{\pm}$ in the top-quark pair production process, where one top quark decays to a charged Higgs boson and a bottom quark, and the other to a $W$ boson and a bottom quark. …”
    Enlace del recurso
  19. 2139
    por Pilaftsis, Apostolos
    Publicado 1999
    “…The electric dipole moments are induced by CP-violating trilinear couplings of the `CP-odd' and charged Higgs bosons to the scalar top and bottom quarks. Numerical estimates of the individual two-loop contributions to electric dipole moments are given.…”
    Enlace del recurso
    Enlace del recurso
  20. 2140
    por Berger, E L, Han, T, Jiang, J, Plehn, Tilman
    Publicado 2003
    “…For small Higgs boson masses we include the consistent treatment of resonant top quark pair production diagrams with a subsequent top quark decay into a bottom quark and a charged Higgs boson. We compare the NLO differential cross sections obtained in the bottom parton picture with the gluon-initiated process and observe remarkable consistency. …”
    Enlace del recurso
Herramientas de búsqueda: RSS