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ASIN : B0BXSTP9HJ
Publisher : Purdue University Press (February 15, 2024)
Publication date : February 15, 2024
Language : English
File size : 19961 KB
Text-to-Speech : Enabled
Screen Reader : Supported
Enhanced typesetting : Enabled
X-Ray : Not Enabled
Word Wise : Enabled
Print length : 148 pages
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Teaching and Learning in STEM With Computation, Modeling, and Simulation Practices: A Guide for Practitioners and Researchers
In the rapidly evolving field of STEM education, incorporating computation, modeling, and simulation practices has become increasingly important for both educators and researchers. These tools not only enhance students’ understanding of complex scientific concepts, but also help them develop critical thinking and problem-solving skills.
This guide aims to provide practical tips and strategies for incorporating computation, modeling, and simulation practices into STEM teaching and learning. Whether you are a classroom teacher looking to integrate these tools into your curriculum or a researcher seeking to explore their effectiveness, this guide will offer valuable insights and resources.
One key aspect of using computation, modeling, and simulation in STEM education is the ability to create interactive and engaging learning experiences for students. By allowing students to manipulate variables and visualize abstract concepts, these tools can help make difficult topics more accessible and interesting.
Additionally, incorporating these practices into STEM education can help students develop important skills such as data analysis, hypothesis testing, and experimental design. By engaging with real-world data and simulations, students can gain a deeper understanding of scientific principles and learn how to apply them in practical settings.
Overall, integrating computation, modeling, and simulation practices into STEM teaching and learning can help prepare students for success in a rapidly changing world. By equipping them with the tools and skills needed to tackle complex scientific challenges, educators can empower the next generation of STEM leaders.
Whether you are just starting to explore the possibilities of computation, modeling, and simulation in STEM education or are looking to deepen your understanding of these practices, this guide is here to support you on your journey. Together, we can work towards creating a more engaging and effective STEM learning experience for all students.
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