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Evaluating scenario-based SPL requirements approaches: the case for modularity, stability and expressiveness.

, , , , , , , and . Requir. Eng., 19 (4): 355-376 (2014)

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Partially safe evolution of software product lines., , and . Journal of Systems and Software, (2019)Partially safe evolution of software product lines., , and . SPLC, page 124-133. ACM, (2016)An empirical study on configuration-related issues: investigating undeclared and unused identifiers., , , , and . GPCE, page 35-44. ACM, (2015)Willow: A Tool for Interactive Programming Visualization to Help in the Data Structures and Algorithms Teaching-Learning Process., and . SBES, page 553-558. ACM, (2019)Safe Evolution of Software Product Lines: Feature Extraction Scenarios., , and . SBCARS, page 11-20. IEEE Computer Society, (2016)Safe evolution templates for software product lines., , , , , , and . Journal of Systems and Software, (2015)Making refactoring safer through impact analysis., , , , and . Sci. Comput. Program., (2014)A Formal Framework of Software Product Line Analyses., , , , , and . ACM Trans. Softw. Eng. Methodol., 30 (3): 34:1-34:37 (2021)Characterizing safe and partially safe evolution scenarios in product lines: An Empirical Study., , , , and . VaMoS, page 15:1-15:9. ACM, (2019)Investigating the safe evolution of software product lines., , , , , and . GPCE, page 33-42. ACM, (2011)