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2. Sexual Selection as a Tool to Improve Student Reasoning of Evolution

3. Revision as an Essential Step in Modeling to Support Predicting, Observing, and Explaining Cellular Respiration System Dynamics

4. Supporting University Student Learning of Complex Systems: An Example of Teaching the Interactive Processes That Constitute Photosynthesis

5. Development of the Quantitative Modelling Observation Protocol (QMOP) for undergraduate biology courses: validity evidence for score interpretation and uses.

6. Assessing Quantitative Modelling Practices, Metamodelling, and Capability Confidence of Biology Undergraduate Students

7. Simulating a Computational Biological Model, Rather than Reading, Elicits Changes in Brain Activity during Biological Reasoning

8. Using Concept Maps to Characterise Cellular Respiration Knowledge in Undergraduate Students

9. Changes in Students' Mental Models from Computational Modeling of Gene Regulatory Networks

10. Modelling Activities Integrating Construction and Simulation Supported Explanatory and Evaluative Reasoning

14. Introductory Biology Students' Use of Enhanced Answer Keys and Reflection Questions to Engage in Metacognition and Enhance Understanding

15. A Framework for Understanding the Characteristics of Complexity in Biology

16. Long-Term Conceptual Retrieval by College Biology Majors Following Model-Based Instruction

23. Analyzing Change in Students' Gene-to-Evolution Models in College-Level Introductory Biology

25. A unifying gravity framework for dispersal

32. Sexual Selection as a Tool to Improve Evolution Student Reasoning of Evolution.

38. Quantitative modelling biology undergraduate assessment

39. Changes in students’ mental models from computational modeling of gene regulatory networks

42. Gene flow from single and stacked herbicide-resistant rice (Oryza sativa): Modeling occurrence of multiple herbicide-resistant weedy rice

45. An invitation to modeling: building a community with shared explicit practices

48. Simulated Computational Model Lesson Improves Foundational Systems Thinking Skills and Conceptual Knowledge in iology Students.

49. A unifying gravity framework for dispersal

50. Elucidating the Population Dynamics of Japanese Knotweed Using Integral Projection Models

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