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Peter A. C. McPherson; Ben M. Johnston – Journal of Chemical Education, 2022
Of the three main subdivisions in chemistry, physical chemistry often presents a challenge when delivered to those not majoring in chemistry or its cognate disciplines. This is, at least in part, due to the seemingly unrelatedness of the subject to students' anticipated career. We describe the redesign of a nested physical chemistry course for…
Descriptors: Chemistry, Science Instruction, Anesthesiology, Difficulty Level
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Tong Wang; Weiqun Wang; Jianye Wei – Journal of Chemical Education, 2022
Inquiry is one integral part of science learning. Understanding the underlining meaning and the complete procedures of inquiry-based laboratories would be beneficial to student teachers' future work. Therefore, it is necessary for student teachers to perform inquiry-based laboratories and know how to demonstrate them to school students. However,…
Descriptors: Student Teachers, Science Teachers, Science Instruction, Teaching Methods
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Margaret A. L. Blackie; Gareth Arnott; Catherine H. Kaschula – Journal of Chemical Education, 2023
Organic chemistry is notorious for being difficult to learn. Herein we describe a two-pronged approach to engage students in the ability to afford successful knowledge building. We have drawn on focus group interviews with students to show that the approach is appreciated by the students. The two prongs comprise peer learning in small groups and…
Descriptors: Learner Engagement, Organic Chemistry, Science Instruction, Student Attitudes
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Dominik Diermann; Jenna Koenen – Journal of Chemical Education, 2024
Most chemistry students struggle with interpreting and understanding NMR (nuclear magnetic resonance) spectra and the general concepts of NMR spectroscopy. NMR spectroscopy seems to be difficult to both teach and learn. Therefore, the corresponding courses should be investigated in more detail. We conducted a survey with N = 39 German university…
Descriptors: Chemistry, Science Instruction, Spectroscopy, Nuclear Energy
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Lorena Atare´s; Maria Jose´ Canet; Asuncio´n Pe´rez-Pascual; Macarena Trujillo – Journal of Chemical Education, 2024
The alternative conceptions that students hold put a brake on subsequent meaningful learning, and therefore, the identification of these wrong ideas is crucial for effective teaching and academic success. Undergraduate STEM students often perceive Chemical Thermodynamics as a difficult subject, in which entropy has been pointed out as a threshold…
Descriptors: Undergraduate Students, Scientific Concepts, Fundamental Concepts, Chemistry
Broden Bunnell; Lauren LeBourgeois; James Doble; Brian Gute; Jacob W. Wainman – Journal of Chemical Education, 2023
General chemistry II is often a challenging course for first-year STEM students, and many students rely on partial credit to achieve success in the course. However, assigning liberal partial credit to students' work can also disincentivize developing proficiency with the material. Here, we present an alternative specifications-based grading scheme…
Descriptors: Flipped Classroom, Chemistry, Science Instruction, Difficulty Level
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Charles E. Jakobsche; Anh-Vy Le – Journal of Chemical Education, 2023
This report describes an activity that helps organic chemistry students to better understand organic molecules as 3-dimensional objects. To accomplish this goal, the activity employs a unique three-way combination of analyzing computer-generated 3-dimensional renditions of open access X-ray crystallography data, building physical 3-dimensional…
Descriptors: Organic Chemistry, Molecular Structure, Instructional Materials, Manipulative Materials
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Long, Shirley; Andreopoulos, Stavroula; Patterson, Sian; Jenkinson, Jodie; Ng, Derek P. – Journal of Chemical Education, 2021
Metabolism, including cellular respiration, encompasses a large component of the topics covered in foundational biochemistry and life science undergraduate courses. The difficulty in instruction and student retention of this topic lies in the conceptualization of the numerous enzymatic reactions involving various substrates/products and their…
Descriptors: Metabolism, Biochemistry, College Science, Scientific Concepts
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Torrecilla, José S.; Gutiérrez-de-Rozas, Belén; Cancilla, John C. – Journal of Chemical Education, 2021
The teaching methodology known as thinking-based learning (TBL) is presented here in the scope of a chemical engineering class. This method has been tested experimentally for the past six years within a chemical engineering class which belongs to the chemistry bachelor's degree in the Complutense University of Madrid (Spain). Specifically, TBL was…
Descriptors: Chemical Engineering, Engineering Education, Teaching Methods, Instructional Effectiveness
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Hrubes?, Jan; Tywoniak, Adam; Balouch, Martin; Chvi´la, Stanislav; Hrabovsky´, Jan – Journal of Chemical Education, 2021
Identification and further motivation of gifted students are widely discussed among the science education community. In the context of the educational system of the Czech Republic, competitions serve as one of the main ways to identify those gifted in precollege education. In this article, we report the foundation of a team-based open-book…
Descriptors: Gifted Education, Science Instruction, Teaching Methods, Teamwork
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Baldock, Brandi L.; Blanchard, Joanna D.; Fernandez, Anthony L. – Journal of Chemical Education, 2021
General chemistry students need to understand the concept of intermolecular forces and use them to predict the properties of materials. To do this, they must create symbolic representations of molecules, relate these to physical observations, and explain them using submicroscopic theoretical constructs. When these concepts are taught separately,…
Descriptors: Prediction, Molecular Structure, Laboratory Experiments, Hazardous Materials
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Sharma, A.; Kopkau, H.; Swanson, D. – Journal of Chemical Education, 2018
A laboratory experiment was designed for upper-level undergraduate students in a bioanalytical course to demonstrate the concept of isoelectric point (pI) and the theoretical and practical applications of isoelectric focusing (IEF). This simple and inexpensive IEF procedure requires the same minigel SDS-PAGE equipment that is already available in…
Descriptors: Undergraduate Students, Science Instruction, Scientific Concepts, Biochemistry
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Clent, Bethanie A.; Wang, Yuhang; Britton, Hugh C.; Otto, Frank; Swain, Christopher J.; Todd, Matthew H.; Wilden, Jonathan D.; Tabor, Alethea B. – Journal of Chemical Education, 2021
In response to the closure of many university laboratories due to the COVID-19 pandemic in 2020, a handbook and remote webinar approach designed to support students in the use of software tools for computer-aided drug design has been developed. Specifically, the course has been designed for chemistry and pharmacy students who have little or no…
Descriptors: Science Laboratories, Pharmacology, Drug Therapy, School Closing
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Cranwell, Philippa B.; Whiteside, Karin L. – Journal of Chemical Education, 2020
Language in chemistry is highly specialized, and for students, transitions in language complexity from high school to university can be extremely challenging. With an increasingly diverse cohort of students enrolled in UK chemistry degree programs, better understanding the linguistic challenges students face is becoming a greater pedagogical…
Descriptors: Semantics, Science Instruction, Teaching Methods, Language Role
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Fatemah, Amal; Rasool, Shahzad; Habib, Uzma – Journal of Chemical Education, 2020
Students undertaking courses in the field of chemistry need to integrate their spatial skills and conceptual knowledge. However, model perception along with the understanding of spatial processes and spatial structures of molecules has been a cause of difficulty for students as conventional teaching methods cannot fully aid student comprehension.…
Descriptors: Chemistry, Telecommunications, Handheld Devices, Spatial Ability
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