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Classifying and diacritizing Arabic poems using deep recurrent neural networks.

, , , , , and . J. King Saud Univ. Comput. Inf. Sci., 34 (6 Part B): 3775-3788 (2022)

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Effects of Architectural and Technological Advances on the HP/Convex Exemplar's Memory and Communication Performance., and . ISCA, page 318-329. IEEE Computer Society, (1998)Characterizing Distributed Shared Memory Performance: A Case Study of the Convex SPP1000., and . IEEE Trans. Parallel Distributed Syst., 9 (2): 206-216 (1998)Transfer learning and multi-phase training for accurate diacritization of Arabic poetry., , and . J. King Saud Univ. Comput. Inf. Sci., 34 (6 Part B): 3744-3757 (2022)Crypto-based algorithms for secured medical image transmission., , and . IET Inf. Secur., 9 (6): 365-373 (2015)Correcting Wide-Range of Arabic Spelling Mistakes Using Machine Learning and Transformers., and . ICIT, page 405-410. IEEE, (2023)Configuration Independent Analysis for Characterizing Shared-Memory Applications., and . IPPS/SPDP, page 485-491. IEEE Computer Society, (1998)Optimizing Feature Selection for Recognizing Handwritten Arabic Characters., , and . WEC (2), page 81-84. Enformatika, Çanakkale, Turkey, (2005)Classifying and diacritizing Arabic poems using deep recurrent neural networks., , , , , and . J. King Saud Univ. Comput. Inf. Sci., 34 (6 Part B): 3775-3788 (2022)Modeling the Communication Performance of the IBM SP2., and . IPPS, page 249-257. IEEE Computer Society, (1996)Origin 2000 Design Enhancements for Communication Intensive Applications., and . IEEE PACT, page 30-39. IEEE Computer Society, (1998)