Mostrando 21 - 40 Resultados de 58,275 Para Buscar '".br"', tiempo de consulta: 0.19s Limitar resultados
  1. 21
    “…[Image: see text] Perovskite-related Cs(4)PbBr(6) nanocrystals present a “zero-dimensional” crystalline structure where adjacent [PbBr(6)](4–) octahedra do not share any corners. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  2. 22
    “…Trans-acting siRNA gene 4 (BrTAS4) was also identified to have a higher transcript level under blue and UV-A light irradiation than that in dark treatment. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  3. 23
    “…The ionic liquid (IL) trihalogen monoanions [N(2221)][X(3)](−) and [N(2221)][XY(2)](−) ([N(2221)](+)=triethylmethylammonium, X=Cl, Br, I, Y=Cl, Br) were investigated electrochemically via temperature dependent conductance and cyclic voltammetry (CV) measurements. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  4. 24
    “…Due to the low solubility of CsBr in organic solvents, the CsPbBr(3) film prepared by the multi-step method has holes and insufficient thickness, and the light absorption capacity and current density of the perovskite film hinder the further improvement in the power conversion efficiency (PCE) of CsPbBr(3) solar cells. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  5. 25
  6. 26
  7. 27
    “…Using the LEP I ALEPH data the branching ratio BR(b->tau nu X) is measured. The branching ratio BR(b->tau nu D*+-(X)) is also measured and 90§onfidence level limits are established for BR(B- ->tau nu) and BR(b ->s nu nu). …”
    Enlace del recurso
  8. 28
    por Barate, R., Decamp, D., Ghez, Philippe, Goy, C., Lees, J.P., Merle, E., Minard, M.N., Perrodo, P., Pietrzyk, B., Bravo, S., Casado, M.P., Chmeissani, M., Crespo, J.M., Fernandez, E., Fernandez-Bosman, M., Garrido, L., Grauges, E., Martinez, M., Merino, G., Miquel, R., Mir, L.M., Pacheco, A., Pascual, A., Ruiz, H., Colaleo, A., Creanza, D., de Palma, M., 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., Boix, G., Buchmuller, O., Cattaneo, M., Cerutti, F., Dissertori, G., Drevermann, H., Forty, R.W., Frank, M., Greening, T.C., Hansen, J.B., Harvey, John, Janot, P., Jost, B., Lehraus, I., Mato, P., Minten, A., Moutoussi, A., Ranjard, F., Rolandi, Gigi, Schlatter, D., Schmitt, M., Schneider, O., Spagnolo, P., Tejessy, W., Teubert, F., Tournefier, E., Wright, A.E., Ajaltouni, Z., Badaud, F., Chazelle, G., Deschamps, O., Falvard, A., Gay, P., Guicheney, C., Henrard, P., Jousset, J., Michel, B., Monteil, S., Montret, J.C., Pallin, D., Perret, P., Podlyski, F., Hansen, J.D., Hansen, J.R., Hansen, P.H., Nilsson, B.S., Waananen, A., Daskalakis, G., Kyriakis, A., Markou, C., Simopoulou, E., Vayaki, A., Blondel, A., Bonneaud, G., Brient, J.C., Rouge, A., Rumpf, M., Swynghedauw, M., Verderi, M., Videau, H., Focardi, E., Parrini, G., Zachariadou, K., Antonelli, A., Antonelli, M., Bencivenni, G., Bologna, G., Bossi, F., Campana, P., Capon, G., Chiarella, V., Laurelli, P., Mannocchi, G., Murtas, F., Murtas, G.P., Passalacqua, L., Pepe-Altarelli, M., Halley, A.W., Lynch, J.G., Negus, P., O'Shea, V., Raine, C., Teixeira-Dias, P., Thompson, A.S., Cavanaugh, R., Dhamotharan, S., Geweniger, C., 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., Marinelli, N., Sedgbeer, J.K., Thompson, J.C., Thomson, Evelyn J., Ghete, V.M., Girtler, P., Kneringer, E., Kuhn, D., Rudolph, G., Bowdery, C.K., Buck, P.G., Finch, A.J., Foster, F., Hughes, G., Jones, R.W.L., Robertson, N.A., Giehl, I., Jakobs, K., Kleinknecht, K., Quast, G., Renk, B., Rohne, E., Sander, H.G., Wachsmuth, H., Zeitnitz, C., Bonissent, A., Carr, J., Coyle, P., Leroy, O., Payre, P., Rousseau, D., Talby, M., Aleppo, M., Ragusa, F., Dietl, H., Ganis, G., Heister, A., Huttmann, K., Lutjens, G., Mannert, C., Manner, W., Moser, H.G., Schael, S., Settles, R., Stenzel, H., Wiedenmann, W., Wolf, G., Azzurri, P., Boucrot, J., Callot, O., Chen, S., Cordier, A., Davier, M., Duflot, L., Grivaz, J.F., Heusse, P., Jacholkowska, A., Le Diberder, F., Lefrancois, J., Lutz, A.M., Schune, M.H., Veillet, J.J., Videau, I., Yuan, C., Zerwas, D., Bagliesi, Giuseppe, Boccali, T., Calderini, G., Ciulli, V., Foa, L., Giassi, A., Ligabue, F., Messineo, A., Palla, F., Sanguinetti, G., Sciaba, A., Sguazzoni, G., Tenchini, R., Venturi, A., Verdini, P.G., Blair, G.A., Cowan, G., Green, M.G., Medcalf, T., Strong, J.A., von Wimmersperg-Toeller, J.H., Clifft, R.W., Edgecock, T.R., Norton, P.R., Tomalin, I.R., Bloch-Devaux, Brigitte, Colas, P., Emery, S., Kozanecki, W., Lancon, E., Lemaire, M.C., Locci, E., Perez, P., Rander, J., Renardy, J.F., Roussarie, A., Schuller, J.P., Schwindling, J., Trabelsi, A., Vallage, B., Black, S.N., Dann, J.H., Johnson, R.P., Kim, H.Y., Konstantinidis, N., Litke, A.M., McNeil, M.A., Taylor, G., Booth, C.N., Cartwright, S., Combley, F., Lehto, M., Thompson, L.F., Affholderbach, K., Boehrer, Armin, Brandt, S., Grupen, C., Misiejuk, A., Prange, G., Sieler, U., Giannini, G., Gobbo, B., Rothberg, J., Wasserbaech, S., Armstrong, S.R., Cranmer, K., Elmer, P., Ferguson, D.P.S., Gao, Y., Gonzalez, S., Hayes, O.J., Hu, H., Jin, S., Kile, J., McNamara, P.A., III, Nielsen, J., Orejudos, W., Pan, Y.B., Saadi, Y., Scott, I.J., Walsh, J., Wu, Sau Lan, Wu, X., Zobernig, G.
    Publicado 2000
    Enlace del recurso
    Enlace del recurso
  9. 29
    “…The reaction of [(C(5)H(3)Br(2))(2)Fe] with lithium tetra­methyl­piperidinide (LiTMP) in a 1:10 molar ratio in tetra­hydro­furan yields, after quenching with C(2)H(2)Br(4), a mixture of the polybromo­ferrocenes [C(10)H(10–n )Br( n )Fe] with n = 4–9, from which single crystals of bis­(1,2,3-tri­bromo­cyclo­penta­dien­yl)iron(II), [Fe(C(5)H(2)Br(3))(2)], and bis­(1,2,3,4-tetra­bromo­cyclo­penta­dien­yl)iron(II), [Fe(C(5)HBr(4))(2)Fe], were obtained by a combination of chromatography and fractional crystallization. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  10. 30
    por Seppelt, Konrad
    Publicado 2019
    “…A reliable synthesis of unstable and highly reactive BrO(2)F is reported. This compound can be converted into BrO(2) (+)SbF(6) (−), BrO(2) (+)AsF(6) (−) (,) and BrO(2) (+)AsF(6) (−)⋅2 BrO(2)F. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  11. 31
    por CERN
    Publicado 2002
    “…Johnsen - Some recollections of Jentschke by K. Winter<BR><BR><I>Note: Participants are cordially invited to drinks at 17h.30 following the symposium</I>…”
    Enlace del recurso
  12. 32
  13. 33
  14. 34
  15. 35
    por Williams, M I
    Publicado 1999
    “…In a data sample of approximately four million hadronic Z/sup 0/ decays, recorded by the ALEPH detector during the years 1991 to 1995, the inclusive branching ratio for b to s gamma is measured to be: Br (b to s gamma )=(3.11+or-0.80/sub stat/+or-0.72/sub syst/)*10/sup -4 /, where the uncertainties are statistical and systematic respectively. …”
    Enlace del recurso
  16. 36
  17. 37
  18. 38
  19. 39
    “…Single crystals of Cd(4)As(2)Br(3) (tetra­cadmium biarsenide tri­bromide) were grown by a chemical transport reaction. …”
    Enlace del recurso
    Enlace del recurso
    Enlace del recurso
    Online Artículo Texto
  20. 40
Herramientas de búsqueda: RSS