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Lapierre, Keith R.; Streja, Nicholas; Flynn, Alison B. – Chemistry Education Research and Practice, 2022
The goal of the present work is to extend an online reaction categorization task as a research instrument to a formative assessment tool of students' knowledge organization for organic chemistry reactions. Herein, we report our findings from administering the task with undergraduate students in Organic Chemistry II, at a large, research intensive…
Descriptors: Role, Task Analysis, Classification, Organic Chemistry
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Deng, Jacky M.; Flynn, Alison B. – Chemistry Education Research and Practice, 2021
In a world facing complex global challenges, citizens around the world need to be able to engage in scientific reasoning and argumentation supported by evidence. Chemistry educators can support students in developing these skills by providing opportunities to justify how and why phenomena occur, including on assessments. However, little is known…
Descriptors: Organic Chemistry, Persuasive Discourse, Science Process Skills, Science Tests
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Raycroft, Mark A. R.; Flynn, Alison B. – Chemistry Education Research and Practice, 2020
Science is rapidly changing with vast amounts of new information and technologies available. However, traditional instructional formats do not adequately prepare a diverse population of learners who need to evaluate and use knowledge, not simply memorize facts. Moreover, curricular change has been glacially slow. One starting goal for curricular…
Descriptors: Organic Chemistry, Science Curriculum, Curriculum Evaluation, Outcomes of Education
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Bongers, Amanda; Beauvoir, Berthorie; Streja, Nicholas; Northof, Georg; Flynn, Alison B. – Chemistry Education Research and Practice, 2020
In chemistry, novices and experts use mental models to simulate and reason about sub-microscopic processes. Animations are thus important tools for learning in chemistry to convey reaction dynamics and molecular motion. While there are many animations available and studies showing the benefit of learning from animations, there are also limitations…
Descriptors: Science Instruction, Schemata (Cognition), Scientific Concepts, Animation
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Carle, Myriam S.; Visser, Rebecca; Flynn, Alison B. – Chemistry Education Research and Practice, 2020
We developed an online learning module called ''Organic Mechanisms: Mastering the Arrows'' to help students learn part of organic chemistry's language--the electron-pushing formalism. The module guides students to learn and practice the electron-pushing formalism using a combination of interactive videos, questions with instant feedback, and…
Descriptors: Science Instruction, Organic Chemistry, Open Educational Resources, Pretests Posttests
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Bongers, Amanda; Northoff, Georg; Flynn, Alison B. – Chemistry Education Research and Practice, 2019
Creating and using models are essential skills in chemistry. Novices and experts alike rely on conceptual models to build their own personal mental models for predicting and explaining molecular processes. There is evidence that chemistry students lack rich mental models of the molecular level; their mental models of reaction mechanisms have often…
Descriptors: Science Instruction, Schemata (Cognition), Teaching Methods, Scientific Concepts
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Galloway, Kelli R.; Leung, Min Wah; Flynn, Alison B. – Chemistry Education Research and Practice, 2019
Research has shown that within a traditional organic chemistry curriculum, organic chemistry students struggle to develop deep conceptual understanding of reactions and attribute little meaning to the electron-pushing formalism. At the University of Ottawa, a new curriculum was developed for organic chemistry in which students are taught the…
Descriptors: Organic Chemistry, Science Instruction, Foreign Countries, College Students
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Flynn, Alison B.; Featherstone, Ryan B. – Chemistry Education Research and Practice, 2017
This study investigated students' successes, strategies, and common errors in their answers to questions that involved the electron-pushing (curved arrow) formalism (EPF), part of organic chemistry's language. We analyzed students' answers to two question types on midterms and final exams: (1) draw the electron-pushing arrows of a reaction step,…
Descriptors: Organic Chemistry, Error Patterns, Science Tests, Test Items
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Galloway, Kelli R.; Stoyanovich, Carlee; Flynn, Alison B. – Chemistry Education Research and Practice, 2017
Research on mechanistic thinking in organic chemistry has shown that students attribute little meaning to the electron-pushing (i.e., curved arrow) formalism. At the University of Ottawa, a new curriculum has been developed in which students are taught the electron-pushing formalism prior to instruction on specific reactions--this formalism is…
Descriptors: Organic Chemistry, Student Reaction, Science Instruction, Teaching Methods
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Bodé, Nicholas E.; Caron, Jeanette; Flynn, Alison B. – Chemistry Education Research and Practice, 2016
Skill in organic chemistry nomenclature is fundamental for communicating more complex concepts. Interpreting and using functional group names is particularly important. With nomenclature101.com, students can create tailored interactive quizzes according to their learning needs; the tool is free and available in English and French. The present…
Descriptors: Student Evaluation, Achievement Gains, Organic Chemistry, Intermode Differences
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Flynn, Alison B. – Chemistry Education Research and Practice, 2015
Organic chemistry is a traditionally difficult subject with high failure & withdrawal rates and many areas of conceptual difficulty for students. To promote student learning and success, four undergraduate organic chemistry and spectroscopy courses at the first to third year level (17-420 students) were "flipped" in 2013-2014. In the…
Descriptors: Spectroscopy, Chemistry, Organic Chemistry, Course Evaluation
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Flynn, Alison B. – Chemistry Education Research and Practice, 2014
Organic chemistry has the long-standing reputation as a challenging course, and organic synthesis is an aspect of organic chemistry that requires students to make the most links between concepts and requires the highest order of thinking. One-on-one interviews were conducted with students from a second undergraduate organic chemistry course in…
Descriptors: Undergraduate Students, Organic Chemistry, Problem Solving, Protocol Analysis