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Hunter, Rebecca A.; Kovarik, Michelle L. – Journal of Chemical Education, 2022
Students develop process skills through repeated practice of data interpretation, problem solving, and critical thinking. The primary literature provides a rich source of data and application problems to engage students in this practice within the context of chemistry content knowledge. However, most existing classroom activities based on the…
Descriptors: Science Process Skills, Problem Solving, Critical Thinking, Skill Development
Jennifer Newell-Caito; Edward Bernard – Journal of Chemical Education, 2024
Pedagogical research over the past decade has shown that chemistry courses have high failure rates and low accessibility. The implementation of novel active-learning approaches has great potential to offset these trends. Fundamental concepts that serve as "pinch points" are ripe targets for designing innovative, gamified course materials…
Descriptors: Game Based Learning, Educational Technology, Chemistry, Science Education
Ruder, Suzanne M.; Stanford, Courtney – Journal of Chemical Education, 2020
Active learning environments are ideal settings to help students develop process skills such as teamwork, critical thinking, and problem solving. However, implementing active learning pedagogies where students have the opportunity to develop these skills can be challenging in large enrollment courses. With the assistance of undergraduate teaching…
Descriptors: Undergraduate Students, Teaching Assistants, Skill Development, Large Group Instruction
Ang, Jayden Wei Jie; Ng, Yin Ni Annie; Liew, Rou Shen – Journal of Chemical Education, 2020
An escape room uses a game-based active learning approach to develop students' critical thinking and problem-solving skills in an immersive environment. An escape room was developed to provide an innovative method to reinforce concepts in chemical bonding for a first-year general chemistry course. Because of the COVID-19 pandemic, it was…
Descriptors: Game Based Learning, Skill Development, Critical Thinking, Problem Solving
Hamilton, Nicholas B.; Remington, Jacob M.; Schneebeli, Severin T.; Li, Jianing – Journal of Chemical Education, 2022
We reported a redesign of a physical chemistry laboratory course (CHEM 166) for our chemistry majors at the University of Vermont carried out during the COVID-19 pandemic. We started to teach this course after a curriculum reform, which split an upper-division undergraduate laboratory course into physical and analytical chemistry laboratories. To…
Descriptors: Outcome Based Education, Chemistry, Science Laboratories, Science Curriculum
Simon D. Weaver; G. Alex Ambrose; Rebecca J. Whelan – Journal of Chemical Education, 2022
Students completing undergraduate majors in chemistry are not typically required to undergo formal training in computer programming or coding. As a result, many chemistry students are graduating without skills in understanding, writing, or manipulating computer code. This skills gap places students at a disadvantage, considering the widespread and…
Descriptors: Coding, Undergraduate Students, Majors (Students), Chemistry
Jayden Wei Jie Ang; Yin Ni Ng – Journal of Chemical Education, 2022
Research-based blended learning (RBBL) allows students to be part of an authentic scientific discovery process. In this study, students' perception and motivation of the RBBL coupled with Scrum methodology in a third-year polytechnic chemistry laboratory course were investigated. Results showed that the scaffolded approach, designed referencing…
Descriptors: Chemistry, Science Instruction, Learning Motivation, Blended Learning
Gerdon, Aren E. – Journal of Chemical Education, 2020
Undergraduate chemistry majors should be encouraged to consider chemistry-based solutions to issues that impact their daily lives as well as the lives of poor and marginalized populations worldwide. Some issues that disproportionately influence historically disadvantaged populations are also directly related to or could be impacted by chemistry.…
Descriptors: Chemistry, College Science, Undergraduate Students, Seminars
Mistry, Nimesh; Fitzpatrick, Christopher; Gorman, Stephen – Journal of Chemical Education, 2016
A guided-inquiry experiment was designed and implemented in an introductory organic chemistry laboratory course. Students were given a mixture of compounds and had to isolate two of the components by designing a viable workup procedure using liquid-liquid separation methods. Students were given the opportunity to apply their knowledge of chemical…
Descriptors: Introductory Courses, Science Instruction, Teaching Methods, Problem Solving
McCollum, Brett M.; Regier, Lisa; Leong, Jaque; Simpson, Sarah; Sterner, Shayne – Journal of Chemical Education, 2014
The impact of touch-screen technology on spatial cognitive skills as related to molecular geometries was assessed through 102 one-on-one interviews with undergraduate students. Participants were provided with either printed 2D ball-and-stick images of molecules or manipulable projections of 3D molecular structures on an iPad. Following a brief…
Descriptors: Molecular Structure, Visualization, Competence, Skill Development
O'Sullivan, Timothy P.; Hargaden, Gra´inne C. – Journal of Chemical Education, 2014
This article describes the development and implementation of an open-access organic chemistry question bank for online tutorials and assessments at University College Cork and Dublin Institute of Technology. SOCOT (structure-based organic chemistry online tutorials) may be used to supplement traditional small-group tutorials, thereby allowing…
Descriptors: Organic Chemistry, Tutorial Programs, Online Courses, Error Correction
Peer reviewedJournal of Chemical Education, 1985
Presents a method for solving problems related to gas laws, the mole concept, molarity, heats of reactions, and other chemical concepts. Also presents another method which was devised to simplify the teaching of stoichiometric calculations using conversion factors. (JN)
Descriptors: Chemistry, College Science, Higher Education, Problem Solving
Peer reviewedAshmore, A. D.; And Others – Journal of Chemical Education, 1979
Presents a definition of problem solving and discusses process and stages. An outline is given of particular uses of problem-solving networks. (SA)
Descriptors: College Science, Discovery Processes, Higher Education, Networks

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