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Marchak, Debora; Shvarts-Serebro, Inna; Blonder, Ron – Journal of Chemical Education, 2021
Using three-dimensional models in chemistry is a common teaching practice aimed at elevating the level of understanding of abstract concepts. However, the experience of using chemical models is still quite passive in terms of students' input, requiring the students to utilize mainly visual, auditory, and some tactile information processing…
Descriptors: Chemistry, Manipulative Materials, Molecular Structure, Science Instruction
Belford, Robert E.; Stoltzfus, Matthew; Houseknecht, Justin B. – Journal of Chemical Education, 2015
This communication describes the virtual poster session of the Flipped Classroom online ConfChem conference that was hosted by the ACS CHED Committee on Computers in Chemical Education (CCCE) from May 9 to June 12, 2014. During the conference's online discussions, it became evident that multiple participants who were not presenting papers had been…
Descriptors: Conferences (Gatherings), Teleconferencing, Chemistry, Science Education
Paterson, David J. – Journal of Chemical Education, 2019
Practical work in secondary-level chemistry laboratories involves a high cognitive load for students. In addition to reading and understanding instructions, students have to think about observations and the underlying chemical concepts, as well as deal with the noise and social interaction of a busy classroom. One form of extraneous cognitive load…
Descriptors: Chemistry, Secondary School Science, Cognitive Processes, Difficulty Level
Giordano, Andrea N.; Christopher, Casey R. – Journal of Chemical Education, 2020
The Spring 2020 semester will be marked in our history as one of the most challenging semesters for higher education, although through the adversity, we were presented with opportunities for classroom innovation. A reflective account of the teaching insights gained from implementing a COVID-19 miniunit and utilizing remote oral examinations is…
Descriptors: Best Practices, Teaching Methods, COVID-19, Pandemics
Taber, Keith S. – Chemistry Education Research and Practice, 2013
Much scholarship in chemical education draws upon the model of there being three "levels" at which the teaching and learning of chemistry operates, a notion which is often represented graphically in terms of a triangle with the apices labelled as macroscopic, submicroscopic and symbolic. This model was proposed by Johnstone who argued that…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Scientific Concepts
Domyancich, John M. – Journal of Chemical Education, 2014
Multiple-choice questions are an important part of large-scale summative assessments, such as the advanced placement (AP) chemistry exam. However, past AP chemistry exam items often lacked the ability to test conceptual understanding and higher-order cognitive skills. The redesigned AP chemistry exam shows a distinctive shift in item types toward…
Descriptors: Multiple Choice Tests, Science Instruction, Chemistry, Summative Evaluation
Schroeder, Jacob; Murphy, Kristen L.; Holme, Thomas A. – Journal of Chemical Education, 2012
General chemistry tests from the Examinations Institute of the Division of Chemical Education of the American Chemical Society have been analyzed to identify factors that may influence how individual test items perform. In this paper, issues of item order (position within a set of items that comprise a test) and answer order (position of correct…
Descriptors: Chemistry, Test Items, Individual Testing, Test Construction
Criswell, Brett – Journal of Chemical Education, 2012
Inquiry has been advocated as an effective pedagogical strategy for promoting deep conceptual understanding and more sophisticated scientific thinking by numerous bodies associated with chemistry (and science) education. To allow inquiry to achieve these goals, the teacher must manage the amount of cognitive load experienced by students while they…
Descriptors: Chemistry, Secondary School Science, Science Instruction, Inquiry
Seery, Michael K. – Chemistry Education Research and Practice, 2012
This article summarises the author's experiences in running a module "Computers for Chemistry" entirely online for the past four years. The module, previously taught in a face-to-face environment, was reconfigured for teaching in an online environment. The rationale for moving online along with the design, implementation and evaluation of the…
Descriptors: Physical Activities, Educational Theories, Chemistry, Cognitive Processes
Taber, Keith S. – International Journal of Science Education, 2008
Many studies into learners' ideas in science have reported that aspects of learners' thinking can be represented in terms of entities described in such terms as alternative conceptions or conceptual frameworks, which are considered to describe relatively stable aspects of conceptual knowledge that are represented in the learner's memory and…
Descriptors: Cognitive Structures, Misconceptions, Models, Cognitive Processes
Basu-Dutt, Sharmistha; Slappey, Charles; Bartley, Julie K. – Journal of Chemical Education, 2010
As part of a campus-wide, externally funded project to increase performance in, enthusiasm for, and retention within STEM disciplines, we developed an interdisciplinary, team-taught first-year seminar course. The construction and delivery of this course was designed to show the relevance of selected general chemistry topics such as matter and…
Descriptors: Concept Mapping, First Year Seminars, Grade Point Average, Chemistry
Peer reviewedGoodman, W. Daniel; Bean, John C. – Journal of Chemical Education, 1983
Describes a method for conducting a sophomore organic chemistry laboratory which included integrating projects with a writing task involving peer group interaction. Also includes background/theory, chemistry tasks, writing tasks, and evaluation. Included in appendices are an analytic worksheet and grading scale. (JN)
Descriptors: Chemistry, Cognitive Processes, College Science, Course Descriptions
Crippen, Kent J.; Brooks, David W. – Chemistry Education Research and Practice, 2009
The case for chemistry instruction based on worked examples is presented, using a contemporary model of human learning. We begin by detailing human cognitive architecture and outlining the Interactive Compensatory Model of Learning (ICML). Through the ICML, the role of motivation, deliberate practice and feedback are detailed as key variables in…
Descriptors: Chemistry, Science Instruction, Epistemology, Learning Activities
Peer reviewedBowen, Craig W. – Journal of Chemical Education, 1994
Describes research techniques in chemistry education that are based on listening to learners. Gives a brief history of think-aloud techniques and works through an example study to show considerations that must be made when doing this kind of research. Issues raised include conceptualization of research studies, preparation for their…
Descriptors: Chemistry, Cognitive Processes, Educational Research, Higher Education
Bauer, Christopher F. – Journal of Chemical Education, 2008
The development of a 20-item semantic differential assessment instrument for measuring student attitudes toward the subject of chemistry is described (Attitude toward the Subject of Chemistry Inventory-ASCI). Instrument subscales and survey items pertain to interest and utility, anxiety, intellectual accessibility, emotional satisfaction, and…
Descriptors: Majors (Students), Student Attitudes, Semantics, Chemistry

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