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Reducing the Number of Higher-Order Mutants with the Aid of Data Flow.

. e Informatica Softw. Eng. J., 10 (1): 31-49 (2016)

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Reducing the Number of Higher-Order Mutants with the Aid of Data Flow.. e Informatica Softw. Eng. J., 10 (1): 31-49 (2016)Using Genetic Algorithms and Dominance Concepts for Generating Reduced Test Data., and . Informatica (Slovenia), 34 (3): 377-385 (2010)Employing Dynamic Symbolic Execution for Equivalent Mutant Detection., , and . IEEE Access, (2019)Hybridizing genetic algorithm and harmony search for higher-order mutation testing., and . J. Intell. Fuzzy Syst., 46 (2): 4429-4452 (February 2024)Automatic Generation of Object-Oriented Tests with a Multistage-Based Genetic Algorithm.. J. Comput., 5 (10): 1560-1569 (2010)Automatic Software Test Data Generation for Spanning Sets Coverage Using Genetic Algorithms., , and . Comput. Informatics, 26 (4): 383-401 (2007)An empirical study of local-decision-making-based software customization in distributed development., and . IET Softw., 15 (2): 174-187 (2021)The limitations of genetic algorithms in software testing., , and . AICCSA, page 1-7. IEEE Computer Society, (2010)Automatic generation of basis test paths using variable length genetic algorithm.. Inf. Process. Lett., 114 (6): 304-316 (2014)An Empirical Comparison of the Efficiency and Effectiveness of Genetic Algorithms and Adaptive Random Techniques in Data-Flow Testing., , and . IEEE Access, (2020)