Zobrazeno 1 - 10
of 378
pro vyhledávání: '"Zweben, S.J."'
Publikováno v:
In Journal of Aerosol Science October 2014 76:115-125
Publikováno v:
In Journal of Nuclear Materials July 2013 438 Supplement:S505-S508
Autor:
Kugel, H.W., Bell, M.G., Allain, J.P., Bell, R.E., Ding, S., Gerhardt, S.P., Jaworski, M.A., Kaita, R., Kallman, J., Kaye, S.M., LeBlanc, B.P., Maingi, R., Majeski, R., Maqueda, R., Mansfield, D.K., Mueller, D., Nygren, R., Paul, S.F., Raman, R., Roquemore, A.L., Sabbagh, S.A., Schneider, H., Skinner, C.H., Soukhanovskii, V.A., Taylor, C.N., Timberlake, J.R., Wampler, W.R., Zakharov, L.E., Zweben, S.J.
Publikováno v:
In Journal of Nuclear Materials 1 August 2011 415(1) Supplement:S400-S404
Publikováno v:
In Journal of Nuclear Materials 1 August 2011 415(1) Supplement:S459-S462
Autor:
Myra, J.R., Russell, D.A., D’Ippolito, D.A., Ahn, J-W., Maingi, R., Maqueda, R.J., Lundberg, D.P., Stotler, D.P., Zweben, S.J., Umansky, M.
Publikováno v:
In Journal of Nuclear Materials 1 August 2011 415(1) Supplement:S605-S608
Autor:
Zweben, S.J., Terry, J.L., LaBombard, B., Agostini, M., Greenwald, M., Grulke, O., Hughes, J.W., D’Ippolito, D.A., Krasheninnikov, S.I., Myra, J.R., Russell, D.A., Stotler, D.P., Umansky, M.
Publikováno v:
In Journal of Nuclear Materials 1 August 2011 415(1) Supplement:S463-S466
Publikováno v:
In Fusion Engineering and Design 2010 85(3):325-327
Autor:
Zweben, S.J., Maqueda, R.J., Roquemore, A.L., Bush, C.E., Kaita, R., Marsala, R.J., Raitses, Y., Cohen, R.H., Ryutov, D.D.
Publikováno v:
In Journal of Nuclear Materials 2009 390:417-420
Autor:
Terry, J.L., Zweben, S.J., Umansky, M.V., Cziegler, I., Grulke, O., LaBombard, B., Stotler, D.P.
Publikováno v:
In Journal of Nuclear Materials 2009 390:339-342
Autor:
Guttenfelder, W., Battaglia, D.J., Belova, E., Bertelli, N., Boyer, M.D., Chang, C.S., Diallo, A., Duarte, V.N., Ebrahimi, F., Emdee, E.D., Ferraro, N., Fredrickson, E., Gorelenkov, N.N., Heidbrink, W., Ilhan, Z., Kaye, S.M., E.-H., Kim, Kleiner, A., Laggner, F., Lampert, M., Lestz, J.B., C. Liu, Liu, D., Looby, T., Mandell, N., Maingi, R., Myra, J.R., Munaretto, S., Podesta, M., Rafiq, T., Raman, R., Reinke, M., Ren, Y., Ruiz Ruiz, J., Scotti, F., Shiraiwa, S., Soukhanovskii, V., Vail, P., Wang, Z.R., Wehner, W., White, A.E., White, R.B., Woods, B.J.Q., J. Yang, Zweben, S.J., Banerjee, S., Barchfeld, R., Bell, R.E., Berkery, J.W., Bhattacharjee, A., Bierwage, Andreas, Canal, G.P., Chen, X., Clauser, C., Crocker, N., Domier, C., Evans, T., Francisquez, M., Gan, K., Gerhardt, S., Goldston, R.J., Gray, T., Hakim, A., Hammett, G., Jardin, S., Kaita, R., Koel, B., Kolemen, E., S.-H., Ku, Kubota, S., LeBlanc, B.P., Levinton, F., Lore, J.D., Luhmann, N., Lunsford, R., Maqueda, R., Menard, J.E., Nichols, J.H., Ono, M., J.-K., Park, Poli, F., Rhodes, T., Riquezes, J., Russel, D., Sabbagh, S.A., Schuster, E., Smith, D.R., Stotler, D., Stratton, B., Tritz, K., Wang, W., Wirth, B.
Publikováno v:
Nuclear Fusion. 62(4):042023-042023-17
The mission of the low aspect ratio spherical tokamak NSTX-U is to advance the physics basis and technical solutions required for optimizing the configuration of next-step steady-state tokamak fusion devices. NSTX-U will ultimately operate at up to 2