Student Reasoning in Organic Chemistry (eBook)

Research Advances and Evidence-based Instructional Practices
Artikelnummer: 978-1-83916-778-2
Einband: PDF
Verfügbarkeit: Download, sofort verfügbar (Link per E-Mail)
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Students' Attention on Curved Arrows While Evaluating the Plausibility of an Organic Mechanistic Step;Supporting Spatial Thinking in Organic Chemistry Through Augmented Reality - An Explorative Interview Study;Representational Competence Under the Magnifying Glass - The Interplay Between Student Reasoning Skills, Conceptual Understanding, and the Nature of Representation;Fostering Causal Mechanistic Reasoning as a Means of Modelling in Organic Chemistry;Students' Reasoning in Chemistry Arguments and Designing Resources Using Constructive Alignment;From Free Association to Goal-directed Problem-solving - Network Analysis of Students' Use of Chemical Concepts in Mechanistic Reasoning;Epistemic Stances in Action - Students' Reasoning Process While Reflecting About Alternative Reaction Pathways in Organic Chemistry;How Do Students Reason When They Have to Describe the "What" and "Why" of a Given Reaction Mechanism?;In-the-moment Learning of Organic Chemistry During Interactive Lectures Through the Lens of Practical Epistemology Analysis;Flipped Classrooms in Organic Chemistry - A Closer Look at Student Reasoning Through Discourse Analysis of a Group Activity;Systemic Assessment Questions as a Means of Assessment in Organic Chemistry;Variations in the Teaching of Resonance - An Exploration of Organic Chemistry Instructors' Enacted Pedagogical Content Knowledge;Investigation of Students' Conceptual Understanding in Organic Chemistry Through Systemic Synthesis Questions;Disciplining Perception Spatial Thinking in Organic Chemistry Through Embodied Actions;Building Bridges Between Tasks and Flasks - Design of a Coherent Experiment-supported Learning Environment for Deep Reasoning in Organic Chemistry;Assessment of Assessment in Organic Chemistry - Review and Analysis of Predominant Problem Types Related to Reactions and Mechanisms;Developing Machine Learning Models for Automated Analysis of Organic Chemistry Students' Written Descriptions of Organic Reaction Mechanisms;Deveopment of a Generalizable Framework for Machine Learning-based Evaluation of Written Explanations of Reaction Mechanisms from the Post-secondary Organic Chemistry Curriculum;The Central Importance of Assessing "Doing Science" to Research and Instruction

Students' Attention on Curved Arrows While Evaluating the Plausibility of an Organic Mechanistic Step;Supporting Spatial Thinking in Organic Chemistry Through Augmented Reality - An Explorative Interview Study;Representational Competence Under the Magnifying Glass - The Interplay Between Student Reasoning Skills, Conceptual Understanding, and the Nature of Representation;Fostering Causal Mechanistic Reasoning as a Means of Modelling in Organic Chemistry;Students' Reasoning in Chemistry Arguments and Designing Resources Using Constructive Alignment;From Free Association to Goal-directed Problem-solving - Network Analysis of Students' Use of Chemical Concepts in Mechanistic Reasoning;Epistemic Stances in Action - Students' Reasoning Process While Reflecting About Alternative Reaction Pathways in Organic Chemistry;How Do Students Reason When They Have to Describe the "What" and "Why" of a Given Reaction Mechanism?;In-the-moment Learning of Organic Chemistry During Interactive Lectures Through the Lens of Practical Epistemology Analysis;Flipped Classrooms in Organic Chemistry - A Closer Look at Student Reasoning Through Discourse Analysis of a Group Activity;Systemic Assessment Questions as a Means of Assessment in Organic Chemistry;Variations in the Teaching of Resonance - An Exploration of Organic Chemistry Instructors' Enacted Pedagogical Content Knowledge;Investigation of Students' Conceptual Understanding in Organic Chemistry Through Systemic Synthesis Questions;Disciplining Perception Spatial Thinking in Organic Chemistry Through Embodied Actions;Building Bridges Between Tasks and Flasks - Design of a Coherent Experiment-supported Learning Environment for Deep Reasoning in Organic Chemistry;Assessment of Assessment in Organic Chemistry - Review and Analysis of Predominant Problem Types Related to Reactions and Mechanisms;Developing Machine Learning Models for Automated Analysis of Organic Chemistry Students' Written Descriptions of Organic Reaction Mechanisms;Deveopment of a Generalizable Framework for Machine Learning-based Evaluation of Written Explanations of Reaction Mechanisms from the Post-secondary Organic Chemistry Curriculum;The Central Importance of Assessing "Doing Science" to Research and Instruction

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VerlagRsc
EinbandPDF
Erscheinungsjahr2022
Seitenangabe360 S.
AusgabekennzeichenEnglisch
Auflage22001 A. 1. Auflage
PlattformPDF
ReiheAdvances in Chemistry Education Series
AutorGraulich, Nicole (Hrsg.) / Shultz, Ginger (Hrsg.)

Alle Bände der Reihe "Advances in Chemistry Education Series"

Über den Autor Nicole (Hrsg.) Graulich

Nicole Graulich is a professor of chemistry education at the Justus-Liebig University Giessen, Germany. Her research focuses on learning chemistry at the tertiary level with a focus on mechanistic reasoning and leveraging new technologies for adaptive learning. Michal Haskel-Ittah is a senior scientist at the Department of Science Teaching, the Weizmann Institute of Science, Israel. Her research focuses on causal understanding and mechanistic reasoning in the context of teaching and learning biology. Rayendra Wahyu Bachtiar is an assistant professor in the Department of Physics Education at the University of Jember, Indonesia. His research focuses on understanding how technology can support students in developing mechanistic reasoning in physics.

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