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Predictive Sentiment Analysis of Tweets: A Stock Market Application., , , и . CHI-KDD, том 7947 из Lecture Notes in Computer Science, стр. 77-88. Springer, (2013)Evaluation of Curriculum Learning Algorithms using Computational Creativity Inspired Metrics., , , и . ICCC, стр. 364-373. Association for Computational Creativity (ACC), (2022)Dynamic Parameter Adaptation of SVM Based Active Learning Methodology., , , и . AL@iKNOW, том 1707 из CEUR Workshop Proceedings, стр. 17-24. CEUR-WS.org, (2016)Qualitative Assessment of Data-Mining Workflows., , и . DSS, том 238 из Frontiers in Artificial Intelligence and Applications, стр. 75-86. IOS Press, (2012)Hierarchical Multi-Attribute Decision Support Approach to Virtual Organization Creation., , , , , , , и . PRO-VE, том 186 из IFIP, стр. 135-142. Springer, (2005)Monitoring the Twitter sentiment during the Bulgarian elections., , , , и . DSAA, стр. 1-10. IEEE, (2015)BISLON: BISociative SLOgaN generation based on stylistic literary devices., , , и . ICCC, стр. 248-255. Association for Computational Creativity (ACC), (2018)Using a Genetic Algorithm to Produce Slogans., , и . Informatica (Slovenia), (2015)Computational creativity infrastructure for online software composition: A conceptual blending use case., , , , , , , , , и 2 other автор(ы). IBM J. Res. Dev., 63 (1): 9:1-9:17 (2019)Implementation of a Slogan Generator., , и . ICCC, стр. 340-343. computationalcreativity.net, (2014)