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Deep Learning in Introductory Physics: Exploratory Studies of Model?Based Reasoning is concerned with the broad question of how students learn physics in a model?centered classroom. The diverse, creative, and sometimes unexpected ways students construct models, and deal with intellectual conflict, provide valuable insights into student learning and cast a new vision for physics teaching. This book is the first publication in several years to thoroughly address the “coherence versus fragmentation” debate in science education, and the first to advance and explore the hypothesis that deep science learning is regressive and revolutionary. Deep Learning in Introductory Physics also contribute...
From the Foreword“These authors have clearly shown the value in looking for the signature pedagogies of their disciplines. Nothing uncovers hidden assumptions about desired knowledge, skills, and dispositions better than a careful examination of our most cherished practices. The authors inspire specialists in other disciplines to do the same. Furthermore, they invite other colleagues to explore whether relatively new, interdisciplinary fields such as Women’s Studies and Global Studies have, or should have, a signature pedagogy consistent with their understanding of what it means to ‘apprentice’ in these areas." -- Anthony A. Ciccone, Senior Scholar and Director, Carnegie Academy for ...
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“What a delight to read David Gooblar’s book on teaching and learning. He wraps important insights into a story of discovery and adventure.” —Ken Bain, author of What the Best College Teachers Do College is changing, but the way we train academics is not. Most professors are taught to be researchers first and teachers a distant second, even as scholars are increasingly expected to excel in the classroom. There has been a revolution in teaching and learning over the past generation, and we now have a whole new understanding of how the brain works and how students learn. The Missing Course offers a field guide to the state-of-the-art in teaching and learning and is packed with insights...
The authors explain how a group of higher education schools used just-in-time teaching (JiTT) methods to increase interactivity for the physics student. By enhancing courses with multimedia Web activities and electronic communications, the classroom environment allowed less dependence on lecture and more rapid responses to students' problems.