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Making sense of models: How teachers use agent-based modeling to advance mechanistic reasoning.

, , and . Br. J. Educ. Technol., 50 (5): 2203-2216 (2019)

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The State of the Field in Computational Thinking Assessment., , , , , , , , , and 13 other author(s). ICLS, International Society of the Learning Sciences, (2018)Teacher Beliefs in Student Capabilities as a Mediating Factor in a Novel Understanding of Enactment of CT Curriculum., , and . SIGCSE, page 1277. ACM, (2019)Computational thinking for youth in practice., , , , , , , and . Inroads, 2 (1): 32-37 (2011)Integrating STEM and Computing in PK-12: Operationalizing Computational Thinking for STEM Learning and Assessment., , , , , , , , , and 24 other author(s). ICLS, International Society of the Learning Sciences, (2020)Preparing STEM Teachers to offer New Mexico Computer Science for All., , and . SIGCSE, page 363-368. ACM, (2017)Integrating computational thinking across the K-8 curriculum., , and . Inroads, 5 (4): 64-71 (2014)Integrating Computing and Computational Thinking into K-12 STEM Learning., , , and . SIGCSE, page 481-482. ACM, (2020)Animated Algorithms Computer Science Education with Algorithm Animation., , and . Computational Support for Discrete Mathematics, volume 15 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 41-55. DIMACS/AMS, (1992)Making sense of models: How teachers use agent-based modeling to advance mechanistic reasoning., , and . Br. J. Educ. Technol., 50 (5): 2203-2216 (2019)Extending and Evaluating the Use-Modify-Create Progression for Engaging Youth in Computational Thinking., , , , and . SIGCSE, page 807-808. ACM, (2020)