Results 31 to 40 of about 5,693,533 (296)
Image-to-Level: Generation and Repair
Proceedings of the AAAI Conference on Artificial Intelligence and Interactive Digital Entertainment, 2020 Procedural content generation via machine learning (PCGML) has recently gained research attention due to its ability to generate new game content with minimal user input. However, thus far those without machine learning expertise have been largely unable to use PCGML to generate content to fit their needs.Eugene Chen, Christoph Sydora, Brad Burega, Anmol Mahajan, Abdullah, Matthew Gallivan, Matthew Guzdial +6 moreopenaire +2 more sourcesNeutrino masses from higher than d=5 effective operators [PDF]
, 2009 We discuss the generation of small neutrino masses from effective operators
higher than dimension five, which open new possibilities for low scale see-saw
mechanisms., A. Abada, A. Bartl, C. Biggio, C. Biggio, D Hernandez, F Bonnet, F. del Aguila, J. Garayoa, J.F. Gunion, K.S. Babu, M. Czakon, M. Gell-Mann, M. Hirsch, M.B. Gavela, S. Davidson, T Ota, T. Yanagida, W Winter +18 morecore +4 more sourcesDesigning Procedurally Generated Levels
Proceedings of the AAAI Conference on Artificial Intelligence and Interactive Digital Entertainment, 2013 There is an increasing demand to improve the procedural generation of game levels. Our approach empowers game designers to author and control level generators, by expressing gameplay-related design constraints. Graph grammars, resulting from these designer-expressed constraints, can generate sequences of desired player actions as well as their ...Roland van der Linden, Ricardo Lopes, Rafael Bidarra +2 moreopenaire +2 more sourcesGeneration Z and the Level of Islamic Akhlaq Practices
مجلة كلية الشريعة والدراسات الإسلامية, 2020 Purpose: This research aims to identifying the level of akhlaq practiced by the young generation. This research discusses one of the most important elements in the life of adolescents. It determines adolescent’s behavior.Fariza Md Sham, Mohamed Hamdan Abdullah, A’dawiyah Ismail +2 moredoaj +2 more sourcesSearch for Charge 1/3 Third Generation Leptoquarks in pbarp Collisions
at sqrt(s)=1.8 TeV [PDF]
, 1998 We report on a search for charge 1/3 third generation leptoquarks (LQ)
produced in pbarp collisions at sqrt(s) = 1.8 TeV using the D0 detector at
Fermilab.A. A. Mayorov, A. A. Volkov, A. Baden, A. Belyaev, A. Boehnlein, A. Brandt, A. Bross, A. Goldschmidt, A. Goussiou, A. Gupta, A. Jonckheere, A. K. A. Maciel, A. L. Lyon, A. L. Spadafora, A. Leflat, A. Mincer, A. N. Galyaev, A. Narayanan, A. P. Heinson, A. P. Vorobiev, A. Para, A. R. Clark, A. S. Ito, A. Santoro, A. Sznajder, A. Sánchez-Hernández, A. V. Kostritskiy, A. V. Kotwal, A. V. Kozelov, A. White, A. Zieminski, A. Zylberstejn, B. Abbott, B. Baldin, B. C. Choudhary, B. G. Pope, B. Gibbard, B. Gobbi, B. Gómez, B. Hoeneisen, B. Klima, B. Lauer, B. May, B. Pawlik, B. S. Acharya, C. Boswell, C. Cretsinger, C. E. Gerber, C. K. Jung, C. Klopfenstein, C. L. Kim, C. Murphy, C. S. Mishra, C. Shaffer, C. Yoshikawa, D. A. Stoyanova, D. Buchholz, D. Casey, D. Chakraborty, D. Claes, D. Cullen-Vidal, D. Cutts, D. Decamp, D. Denisov, D. Edmunds, D. Fein, D. Hedin, D. Karmanov, D. Karmgard, D. Koltick, D. L. Adams, D. Lincoln, D. Norman, D. Owen, D. R. Green, D. R. Wood, D. Stewart, D. Stoker, D. Vititoe, D. Zieminska, E. A. Kozlovsky, E. Barberis, E. Flattum, E. G. Zverev, E. Gallas, E. James, E. Oliveira, E. Oltman, E. Shabalina, E. Smith, E. W. Anderson, E. W. Varnes, E. Won, F. Abe, F. Borcherding, F. Hsieh, F. Landry, F. Lobkowicz, F. Nang, F. Stichelbaut, G. A. Alves, G. Alexander, G. Blazey, G. Di Loreto, G. E. Forden, G. Eppley, G. Finocchiaro, G. Guglielmo, G. Gutierrez, G. Gómez, G. Kalbfleisch, G. Landsberg, G. R. Snow, G. Steinbrück, G. Wang, G. Watts, H. A. Neal, H. Aihara, H. B. Prosper, H. C. Shankar, H. Castilla-Valdez, H. D. Wahl, H. da Motta, H. E. Fisk, H. E. Montgomery, H. Gordon, H. Greenlee, H. Haggerty, H. Jöstlein, H. L. Melanson, H. Li, H. Miettinen, H. Piekarz, H. S. Mao, H. Schellman, H. Singh, H. T. Diehl, H. Weerts, H. Xu, I. Adam, I. Bertram, J. A. Guida, J. A. Wightman, J. B. Singh, J. Balderston, J. Bantly, J. Blumlein, J. Cochran, J. D. Hobbs, J. Ellison, J. F. Bartlett, J. G. R. Lima, J. H. Christenson, J. Jaques, J. Kotcher, J. Kourlas, J. Krane, J. L. González Solís, J. L. Hewett, J. Li, J. Linnemann, J. M. Butler, J. M. Guida, J. M. Hauptman, J. M. Kohli, J. McDonald, J. McKinley, J. P. Negret, J. Perkins, J. Qian, J. Rutherfoord, J. S. Hoftun, J. S. Kang, J. Sculli, J. Snow, J. Solomon, J. T. White, J. Tarazi, J. Thompson, J. V. D. Wirjawan, J. Warchol, J. Womersley, J. Yang, J. Yu, J. Z.-Y. Jiang, K. C. Frame, K. Davis, K. De, K. Del Signore, K. Genser, K. Gounder, K. Johns, K. M. Mauritz, K. S. Hahn, K. Streets, K. W. Merritt, L. Babukhadia, L. Coney, L. Lueking, L. Magaña-Mendoza, L. Oesch, L. Rasmussen, L. Sawyer, L. T. Goss, L. V. Dudko, L.-P. Chen, M. A. C. Cummings, M. A. C. Cummings, M. Abolins, M. Adams, M. Bhattacharjee, M. Chung, M. Demarteau, M. Diesburg, M. Fortner, M. I. Martin, M. Johnson, M. Jones, M. K. Fatyga, M. Krämer, M. L. Kelly, M. L. Stevenson, M. Leurer, M. M. Baarmand, M. Merkin, M. Narain, M. Paterno, M. Peters, M. R. Krishnaswamy, M. Rijssenbeek, M. Roco, M. Shupe, M. Sosebee, M. Souza, M. Strauss, M. Strovink, M. Tartaglia, M. Wayne, N. Amos, N. Biswas, N. Graf, N. I. Bojko, N. J. Hadley, N. K. Mondal, N. Mokhov, N. Oshima, N. Parua, N. Sotnikova, N. Varelas, O. Adriani, O. I. Dahl, O. Ramirez, O. V. Eroshin, P. Abreu, P. Bloom, P. C. Bhat, P. D. Grannis, P. Draper, P. Ermolov, P. Gartung, P. Grudberg, P. Gutierrez, P. Hanlet, P. I. Goncharov, P. M. Tuts, P. Mooney, P. Nemethy, P. Padley, P. Rubinov, P. Tamburello, P. Yamin, P. Yepes, P. Z. Quintas, Q. Z. Li-Demarteau, R. Astur, R. Brock, R. D. Schamberger, R. E. Hall, R. Engelmann, R. Hernández-Montoya, R. Hirosky, R. J. Genik, R. J. Madras, R. Jesik, R. K. Shivpuri, R. Kehoe, R. Lipton, R. Madden, R. Markeloff, R. McCarthy, R. P. Smith, R. Partridge, R. Piegaia, R. Raja, R. Ruchti, R. Snihur, R. W. Stephens, R. Yamada, S. A. Jerger, S. Abachi, S. Abachi, S. Abachi, S. Abachi, S. Abachi, S. Ahn, S. B. Beri, S. Banerjee, S. Blessing, S. C. Loken, S. Choi, S. Chopra, S. Eno, S. Feher, S. Fuess, S. Glenn, S. Grinstein, S. Grünendahl, S. Hagopian, S. Hansen, S. J. Wimpenny, S. K. Kim, S. Kahn, S. Krzywdzinski, S. Kuleshov, S. Kunori, S. L. Linn, S. Lökös, S. Mani, S. N. Gurzhiev, S. P. Denisov, S. Proptopopescu, S. R. Dugad, S. Rajagopalan, S. Reucroft, S. Snyder, S. V. Chekulaev, S. Willis, S. Y. Jun, S. Youssef, S.-M. Chang, T. Fahland, T. Ferbel, T. G. Trippe, T. Heuring, T. Huehn, T. Joffe-Minor, T. L. Geld, T. L. T. Thomas, T. Marshall, T. McKibben, T. McMahon, T. Rockwell, T. Yasuda, Ting Hu, Tong Hu, U. Heintz, V. A. Bezzubov, V. Balamurali, V. Bhatnagar, V. D. Elvira, V. Gavrilov, V. Hagopian, V. Manankov, V. N. Evdokimov, V. Oguri, V. S. Burtovoi, V. S. Narasimham, V. Sirotenko, V. Stolin, W. Carvalho, W. Chen, W. E. Cooper, W. G. Cobau, W. Smart, Y. C. Liu, Y. Ducros, Y. Fisyak, Y. Gershtein, Y. M. Park, Y. Pischalnikov, Y. Yu, Z. Casilum, Z. H. Zhu, Z. Zhou +383 morecore +2 more sources