Zobrazeno 1 - 10
of 4 138
pro vyhledávání: '"Ayoub M"'
Publikováno v:
BIO Web of Conferences, Vol 86, p 01004 (2024)
Dyes are hazardous chemicals that are commonly found in textile industries’ effluent water. Adsorption techniques are more efficiently used for the removal of various dyes from wastewater. The present work deals with the synthesis of Mn-Zn (Mn0.3Zn
Externí odkaz:
https://doaj.org/article/7763359da24b412ab0ac4082bc2c8070
Autor:
Ayoub M. Abdelalatif, Bassma H. Elwakil, Mohamed Zakaria Mohamed, Mohamed Hagar, Zakia A. Olama
Publikováno v:
Molecules, Vol 28, Iss 6, p 2434 (2023)
The spread of antibiotic-resistant opportunistic microbes is a huge socioeconomic burden and a growing concern for global public health. In the current study, two endophytic fungal strains were isolated from Mangifera Indica roots and identified as A
Externí odkaz:
https://doaj.org/article/e8d9882f9a5d412bb135c8f994214563
Publikováno v:
Risk Management and Healthcare Policy, Vol 2014, Iss default, Pp 19-24 (2013)
Ashraf Ahmad Zaghloull,1 Moetaz Elsergany,2 Nagwa Abou El-Enein,1 Hamda Alsuwaidi,3 Mohamed Ayoub3 1Health Administration and Behavioral Sciences Department, High Institute of Public Health, University of Alexandria, Alexandria, Egypt; 2e-School Heal
Externí odkaz:
https://doaj.org/article/679b261f01f2448ba0512f566ec1a19e
Autor:
Xiao, S., Alderweireldt, S., Ali, S., Allaire, C., Agapopoulou, C., Atanov, N., Ayoub, M. K., Barone, G., Benchekroun, D., Buzatu, A., Caforio, D., García, L. Castillo, Chan, Y., Chen, H., Cindro, V., Ciucu, L., da Costa, J. Barreiro Guimarães, Cui, H., Miralles, F. Davó, Davydov, Y., d'Amen, G., de la Taille, C., Kiuchi, R., Fan, Y., Falou, A., Ferreira, A. S. C., Garau, M., Ge, J., Ghosh, A., Giacomini, G., Gkougkousis, E. L., Grieco, C., Guindon, S., Han, D., Han, S., Holmberg, M., Howard, A., Huang, Y., Jing, M., Khoulaki, Y., Kramberger, G., Kuwertz, E., Lefebvre, H., Leite, M., Leopold, A., Li, C., Li, Q., Liang, H., Liang, Z., Liu, B., Liu, J., Luthfi, A., Lyu, F., Malyukov, S., Mandić, I., Masetti, L., Mikuž, M., Nikolic, I., Polidori, L., Polifka, R., Posopkina, O., Qi, B., Ran, K., Reynolds, B. J. G., Rizzi, C., Manzano, M. Robles, Rossi, E., Rummler, A., Sacerdoti, S., Saito, G. T., Seguin-Moreau, N., Serin, L., Shan, L., Shi, L., Sjostrom, N. F., Ferreira, A. Soares Canas, Soengen, J., Stenzel, H., Szadaj, A. J., Tan, Y., Terzo, S., Thomas, J. O., Tolley, E., Tricoli, A., Trincaz-Duvoid, S., Wang, R., Wang, S. M., Wang, W., Wu, K., Shi, X., Yang, T., Yang, Y., Yu, C., Zhang, X., Zhao, L., Zhao, M., Zhao, Z., Zheng, X., Zhuang, X.
To meet the timing resolution requirement of up-coming High Luminosity LHC (HL-LHC), a new detector based on the Low-Gain Avalanche Detector(LGAD), High-Granularity Timing Detector (HGTD), is under intensive research in ATLAS. Two types of IHEP-NDL L
Externí odkaz:
http://arxiv.org/abs/2005.07323
Autor:
Shi, X., Ayoub, M. K., da Costa, J. Barreiro Guimarães, Cui, H., Kiuchi, R., Fan, Y., Han, S., Huang, Y., Jing, M., Liang, Z., Liu, B., Liu, J., Lyu, F., Qi, B., Ran, K., Shan, L., Shi, L., Tan, Y., Wu, K., Xiao, S., Yang, T., Yang, Y., Yu, C., Zhao, M., Zhuang, X., García, L. Castillo, Gkougkousis, E. L., Grieco, C., Grinstein, S., Leite, M., Saito, G. T., Howard, A., Cindro, V., Kramberger, G., Mandić, I., Mikuž, M., d'Amen, G., Giacomini, G., Rossi, E., Tricoli, A., Chen, H., Ge, J., Li, C., Liang, H., Yang, X., Zhao, L., Zhao, Z., Zheng, X., Atanov, N., Davydov, Y., Grosse-Knetter, J., Lange, J., Quadt, A., Schwickardi, M., Alderweireldt, S., Ferreira, A. S. C., Guindon, S., Kuwertz, E., Rizzi, C., Christie, S., Galloway, Z., Gee, C., Jin, Y., Labitan, C., Lockerby, M., Mazza, S. M., Martinez-Mckinney, F., Padilla, R., Ren, H., Sadrozinski, H. F. -W., Schumm, B., Seiden, A., Wilder, M., Wyatt, W., Zhao, Y., Han, D., Zhang, X.
We report on the results of a radiation campaign with neutrons and protons of Low Gain Avalanche Detectors (LGAD) produced by Hamamatsu (HPK) as prototypes for the High-Granularity Timing Detector (HGTD) in ATLAS. Sensors with an active thickness of
Externí odkaz:
http://arxiv.org/abs/2004.13895
Autor:
Yang, X., Alderweireldt, S., Atanov, N., Ayoub, M. K., da Costa, J. Barreiro Guimaraes, Garcia, L. Castillo, Chen, H., Christie, S., Cindro, V., Cui, H., D'Amen, G., Davydov, Y., Fan, Y. Y., Galloway, Z., Ge, J. J., Gee, C., Giacomini, G., Gkougkousis, E. L., Grieco, C., Grinstein, S., Grosse-Knetter, J., Guindon, S., Han, S., Howard, A., Huang, Y. P., Jin, Y., Jing, M. Q., Kiuchi, R., Kramberger, G., Kuwertz, E., Labitan, C., Lange, J., Leite, M., Li, C. H., Li, Q. Y., Liu, B., Liu, J. Y., Liu, Y. W., Liang, H., Liang, Z. J., Lockerby, M., Lyu, F., Mandić, I., Martinez-Mckinney, F., Mazza, S. M., Mikuž, M., Padilla, R., Qi, B. H., Quadt, A., Ran, K. L., Ren, H., Rizzi, C., Rossi, E., Sadrozinski, H. F. -W., Saito, G. T., Schumm, B., Schwickardi, M., Seiden, A., Shan, L. Y., Shi, L. S., Shi, X., Ferreira, A. Soares Canas, Sun, Y. J., Tan, Y. H., Tricoli, A., Wan, G. Y., Wilder, M., Wu, K. W., Wyatt, W., Xiao, S. Y., Yang, T., Yang, Y. Z., Yu, C. J., Zhao, L., Zhao, M., Zhao, Y., Zhao, Z. G., Zheng, X. X., Zhuang, X. A.
The High-Granularity Timing Detector is a detector proposed for the ATLAS Phase II upgrade. The detector, based on the Low-Gain Avalanche Detector (LGAD) technology will cover the pseudo-rapidity region of $2.4<|\eta|<4.0$ with two end caps on each s
Externí odkaz:
http://arxiv.org/abs/2003.14071
Akademický článek
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Autor:
Abdelalatif, Ayoub M.1 (AUTHOR), Elwakil, Bassma H.2 (AUTHOR) bassma.hassan@pua.edu.eg, Mohamed, Mohamed Zakaria3 (AUTHOR), Hagar, Mohamed3 (AUTHOR), Olama, Zakia A.1 (AUTHOR)
Publikováno v:
Molecules. Mar2023, Vol. 28 Issue 6, p2434. 16p.
Autor:
Fan, Y.Y., Alderweireldt, S., Agapopoulou, C., Atanov, N., Ayoub, M. Kassem, Caforio, D., Chen, H., Christie, S., da Costa, J.G., Cui, H., d’Amen, G., Davydov, Y., Kiuchi, R., Ferreira, A.S.C., Galloway, Z., Garau, M., García, L.C., Ge, J., Gee, C., Giacomini, G., Gkoukousis, V., Grieco, C., Guindon, S., Han, D., Han, S., Huang, Y., Jin, Y., Jing, M., Kuwertz, E., Labitan, C., Leite, M., Li, B., Liang, H., Liang, Z., Liu, B., Liu, J., Lockerby, M., Lyu, F., Makovec, N., Mazza, S.M., Martinez-Mckinney, F., Nikolic, I., Padilla, R., Qi, B., Ran, K., Ren, H., Rizzi, C., Rossi, E., Sacerdoti, S., Sadrozinski, H.F.-W., Saito, G.T., Schumm, B., Seiden, A., Shan, L., Shi, L., Tan, Y., Tricoli, A., Trincaz-Duvoid, S., Wilder, M., Wu, K., Wyatt, W., Shi, X., Yang, T., Yang, Y., Yu, C., Zhang, X., Zhao, L., Zhao, M., Zhao, Y., Zhao, Z., Zheng, X., Zhuang, X.
Publikováno v:
In Nuclear Inst. and Methods in Physics Research, A 21 December 2020 984
Akademický článek
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