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Nedungadi, Sachin; Rinco Michels, Olga; Kreke, Patricia J.; Raker, Jeffrey R.; Murphy, Kristen L. – Journal of Chemical Education, 2022
Practice examinations developed at the ACS Examinations Institute ask students to self-report mental effort when answering items. This self-reported mental effort together with performance can be represented in the form of a cognitive efficiency graph for each student giving information on the utilization of cognitive resources and content…
Descriptors: Cognitive Processes, Science Tests, Test Items, Difficulty Level
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Holme, Thomas A.; Bauer, Christopher; Trate, Jaclyn M.; Reed, Jessica J.; Raker, Jeffrey R.; Murphy, Kristen L. – Journal of Chemical Education, 2020
The American Chemical Society, Division of Chemical Education, Examinations Institute has been developing content maps for the undergraduate program based on subdiscipline specifications since 2008. The Anchoring Concepts Content Maps (or ACCM) have been published in four subdisciplines (general, organic, physical, and inorganic chemistry) with…
Descriptors: Undergraduate Students, Chemistry, Scientific Concepts, Concept Mapping
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Dood, Amber J.; Dood, John C.; Cruz-Ramírez de Arellano, Daniel; Field, Kimberly B.; Raker, Jeffrey R. – Journal of Chemical Education, 2020
Two key topics of many second-year organic chemistry courses are substitution and elimination reactions. Predicting and explaining substitution and elimination reactions tends to be a challenging task for students, as documented in the research literature. Motivated by the many documented challenges experienced by students when learning these…
Descriptors: Science Instruction, Organic Chemistry, College Science, Undergraduate Study
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Holme, Thomas A.; MacKellar, Jennifer; Constable, David J. C.; Michels, Olga R.; Trate, Jaclyn M.; Raker, Jeffrey R.; Murphy, Kristen L. – Journal of Chemical Education, 2020
The American Chemical Society (ACS), Division of Chemical Education, Examinations Institute, has been developing content maps to describe comprehensively the undergraduate curriculum aligned to traditional subdisciplines. These content maps have been developed through the combined efforts of many faculty members who teach the targeted courses in…
Descriptors: Concept Mapping, Organic Chemistry, Conservation (Environment), College Science
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Reisner, Barbara A.; Pate, Cole L.; Kinkaid, Melissa M.; Paunovic, Daniel M.; Pratt, Justin M.; Stewart, Joanne L.; Raker, Jeffrey R.; Bentley, Anne K.; Lin, Shirley; Smith, Sheila R. – Journal of Chemical Education, 2020
Classroom observation data using tools such as the Classroom Observation Protocol for Undergraduate STEM (COPUS) are frequently collected in instructional settings for large-scale research studies and program assessment. While COPUS data may be provided to instructors, it is often provided with little or no guidance on how the data can be used to…
Descriptors: Chemistry, Undergraduate Students, Data Use, Science Instruction
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Reed, Jessica J.; Raker, Jeffrey R.; Murphy, Kristen L. – Journal of Chemical Education, 2019
The ability to assess students' content knowledge and make meaningful comparisons of student performance is an important component of instruction. ACS exams have long served as tools for standardized assessment of students' chemistry knowledge. Because these exams are designed by committees of practitioners to cover a breadth of topics in the…
Descriptors: Science Tests, Standardized Tests, Chemistry, Student Evaluation
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Marek, Keith A.; Raker, Jeffrey R.; Murphy, Kristen L. – Journal of Chemical Education, 2019
Missing data is a regular issue that researchers and practitioners must consider for treatment. Commonly, cases for which data is missing are excluded from inclusion in larger data sets. However, this is not the only option and could artificially alter the sample. Other options are available for imputing missing data. Expanding on work previously…
Descriptors: Data, Science Tests, Chemistry, Data Analysis
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Srinivasan, Shalini; Reisner, Barbara A.; Smith, Sheila R.; Stewart, Joanne L.; Johnson, Adam R.; Lin, Shirley; Marek, Keith A.; Nataro, Chip; Murphy, Kristen L.; Raker, Jeffrey R. – Journal of Chemical Education, 2018
ACS Examinations provide a lens through which to examine historical changes in topic coverage via analyses of course-specific examinations. This study is an extension of work completed previously by the ACS Exams Research Staff and collaborators in general chemistry, organic chemistry, and physical chemistry to explore content changes in the…
Descriptors: Inorganic Chemistry, Science Instruction, Spatial Ability, College Science
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Dood, Amber J.; Fields, Kimberly B.; Raker, Jeffrey R. – Journal of Chemical Education, 2018
The Lewis acid-base model is key to identifying and explaining the formation and breaking of bonds in a large number of reaction mechanisms taught in the sophomore-level year-long organic chemistry course. Understanding the model is, thus, essential to success in organic chemistry coursework. Concept-inventories exist to identify misunderstandings…
Descriptors: Science Instruction, College Science, Undergraduate Study, Scientific Concepts
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Marek, Keith A.; Raker, Jeffrey R.; Holme, Thomas A.; Murphy, Kristen L. – Journal of Chemical Education, 2018
The American Chemical Society-Examinations Institute (ACS-EI) released the first ACS Foundations of Inorganic Chemistry Examination in 2016 to better address the two generalized types of inorganic chemistry courses (i.e., at the foundation or second/third-year level and the indepth or third/fourth-year level). The ACS Inorganic Chemistry Exam that…
Descriptors: Science Tests, Inorganic Chemistry, Test Items, Concept Mapping
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Reed, Jessica J.; Villafan~e, Sachel M.; Raker, Jeffrey R.; Holme, Thomas A.; Murphy, Kristen L. – Journal of Chemical Education, 2017
General chemistry courses are often the foundation for the study of other science disciplines and upper-level chemistry concepts. Students who take introductory chemistry courses are more often from health and science-related fields than chemistry. As such, the content taught and assessed in general chemistry courses is envisioned as building…
Descriptors: Science Tests, Chemistry, Test Items, Test Content
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Gibbons, Rebecca E.; Laga, Emily E.; Leon, Jessica; Villafan~e, Sachel M.; Stains, Marilyne; Murphy, Kristen; Raker, Jeffrey R. – Journal of Chemical Education, 2017
Research on classroom response systems (CRSs) in chemical education has primarily focused on the development of evidence-based strategies for implementation and novel practitioner uses of CRSs in instructional practice. Our national survey of postsecondary chemistry faculty extends these discussions, providing a broad-based understanding of the…
Descriptors: Undergraduate Students, College Science, Chemistry, Audience Response Systems
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Ye, Li; Lewis, Scott E.; Raker, Jeffrey R.; Oueini, Razanne – Journal of Chemical Education, 2015
Evaluating the impact of Chemistry Education Research articles has historically centered on the impact factor of the publishing journal. With the advent of electronic journal indices, it is possible to determine the impact of individual research articles by the number of citations it has received. However, in a relatively new discipline, such as…
Descriptors: Chemistry, Science Education, Periodicals, Journal Articles
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Raker, Jeffrey R.; Reisner, Barbara A.; Smith, Sheila R.; Stewart, Joanne L.; Crane, Johanna L.; Pesterfield, Les; Sobel, Sabrina G. – Journal of Chemical Education, 2015
A national survey of inorganic chemists explored the self-reported topics covered in foundation-level courses in inorganic chemistry at the postsecondary level; the American Chemical Society's Committee on Professional Training defines a foundation course as one at the conclusion of which, "a student should have mastered the vocabulary,…
Descriptors: Science Instruction, Inorganic Chemistry, College Science, Undergraduate Study
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Raker, Jeffrey R.; Reisner, Barbara A.; Smith, Sheila R.; Stewart, Joanne L.; Crane, Johanna L.; Pesterfield, Les; Sobel, Sabrina G. – Journal of Chemical Education, 2015
A national survey of inorganic chemists explored the self-reported topics covered in in-depth inorganic chemistry courses at the postsecondary level; an in-depth course is defined by the American Chemical Society's Committee on Professional Training as a course that integrates and covers topics that were introduced in introductory and foundation…
Descriptors: Inorganic Chemistry, National Surveys, College Faculty, Teacher Surveys
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