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Jingyu Wang; Jiangjiexing Wu; Xiaowei Luo; Xiyang Han; Hao Tian; Rongxin Su – Journal of Chemical Education, 2023
A comprehensive laboratory-style teaching activity involving the synthesis, characterization, and analysis of structure-activity relationships of metal-organic framework (MOF) nanozymes was developed specifically for undergraduates at Tianjin University. The students acquired familiarity with the general approach in synthesizing MOFs by…
Descriptors: Foreign Countries, Undergraduate Students, Chemistry, Science Instruction
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H. Martin; E. Eisner; J. K. Klosterman – Journal of Chemical Education, 2023
3D printers have facilitated a wealth of 3D printed molecular models illustrating key structural concepts for student learning. However, general adoption of 3D printed models in the organic chemistry classroom proceeds slowly as the majority of consumer-grade 3D (fused deposition modeling (FDM) and resin) printers are inherently monochromatic,…
Descriptors: Printing, Computer Peripherals, Molecular Structure, Organic Chemistry
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Soule`re, Laurent – Journal of Chemical Education, 2021
We report a molecular modeling study for undergraduate students aimed at carrying out an analysis of small molecules using a systematic conformational search with VEGA ZZ, a freely available software program. Conformational analyses were performed using a systematic search based on variations of torsion angles. First, the conformations of n-butane…
Descriptors: Computer Assisted Instruction, Computer Software, Open Source Technology, Undergraduate Students
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Lisa Smith; D. M. Nirosh Udayanga; Xiaolin Qian; Lauren Adams; Sarah Sims; Charles Nettles; Xue Xu; Xin Cui; Deb Mlsna – Journal of Chemical Education, 2022
Catalysis and catalytic cycles are widely used in both research and industry. The addition of a catalysis experiment into the undergraduate laboratory curriculum is important and necessary training to expand student learning. Here, an experiment demonstrating iron-based tandem catalysis was developed and implemented in an organic chemistry course…
Descriptors: Organic Chemistry, Science Laboratories, College Science, Science Instruction
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Danielle A. Guarracino; Joseph L. Baker; J. Lynn Gazley – Journal of College Science Teaching, 2025
Having a deeper understanding of molecules in their structural forms allows students to grasp biochemical and general chemical concepts in a more profound manner. Through the use of visualization software, we have shown that students gain confidence and insight into the chemical workings of molecular structure and can then utilize this knowledge…
Descriptors: Science Education, Undergraduate Students, Biochemistry, Molecular Structure
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Ina Zaimi; Amber J. Dood; Ginger V. Shultz – Chemistry Education Research and Practice, 2024
Asking students to explain why phenomena occur at a molecular level is vital to increasing their understanding of chemistry concepts. One way to elicit students' mechanistic reasoning and guide construction of knowledge is through Writing-to-Learn (WTL), which is a promising approach for students in organic chemistry courses. In the design of WTL…
Descriptors: Writing Assignments, Teaching Methods, Science Instruction, Scientific Concepts
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Chloe Wasendorf; Joshua W. Reid; Rebecca Seipelt-Thiemann; Z. T. Grimes; Brock Couch; Nick T. Peters; Julia Massimelli Sewall; Audrey L. McCombs; Patrick I. Armstrong; Nancy Boury – Journal of Biological Education, 2024
Most biology undergraduates learn about mutations in multiple classrooms throughout their college career. Understanding personalised genome test results, genome editing controversies, and the appearance of new variants of viruses or antibiotic resistant bacteria all require foundational knowledge about mutations. However, the abstract nature of…
Descriptors: Test Construction, Test Validity, Criterion Referenced Tests, Biology
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Raviolo, Andrés; Farré, Andrea S.; Schroh, Nayla Traiman – Chemistry Education Research and Practice, 2021
This article presents and discusses the results of a study that investigates university students' comprehension of the concept of molar concentration, following teaching and evaluation of the subject. The specific problems underlying learning of this concept have not yet been focused on in sufficient detail or depth. A "Reasoning with…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, College Freshmen
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Balabanoff, Morgan; Kaur, Simreen; Barbera, Jack; Moon, Alena – International Journal of Science Education, 2022
Across science disciplines, light is a common tool for measuring, characterizing, and catalysing molecules and molecular processes. Despite the ubiquity of light-based tools, little research has been done to investigate how students understand light and light-matter interactions (LMI). This topic is typically first introduced in first-year…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Light
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Peikos, Giorgos; Spyrtou, Anna; Pnevmatikos, Dimitris; Papadopoulou, Penelope – International Journal of Science Education, 2022
It is widely argued that Nanoscience and Nanotechnology (NST) is going to affect several aspects of our life. Therefore, students need to develop their nanoliteracy to cope with the everyday issues related to NST. Although there is an increasing interest in introducing NST content to primary school students, the theoretical frameworks for…
Descriptors: Science Instruction, Molecular Structure, Technology, Elementary School Students
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Erlina; Dylan P. Williams; Chris Cane; Hairida; Maria Ulfah; Azwa F. Wafiq – Chemistry Education Research and Practice, 2024
The range of abstract concepts encountered when learning chemistry and the inability of students to make connections between the macroscopic, sub-microscopic, and symbolic representations, used in chemistry teaching, are believed to be the main reasons for students' difficulty when learning chemistry. Prediction and determination of molecular…
Descriptors: Foreign Countries, College Freshmen, Chemistry, Science Instruction
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Juan Torras – Journal of Chemical Education, 2023
Modeling an inter-ring torsional profile of a simple2,2'-bithiophenemolecule has been used to illustrate the main concepts associated with basic molecular modeling within an introductory course in a master's degree on computational modeling. The methodology proposed in the activity has been used to guide and train the student along the classical…
Descriptors: Chemistry, Molecular Structure, Models, Scientific Concepts
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Han, Jianwei; Chen, Huangguan; An, Guoqiang; Sun, Xiaoya; Li, Xiangyu; Liu, Yiwu; Zhao, Sijia; Wang, Limin – Journal of Chemical Education, 2021
Iodonium zwitterions are hypervalent iodine compounds in which the iodine center binds to two substituents and carries a positive formal charge which is compensated by a negative charge within the same molecule. Under thermodynamic conditions, iodonium zwitterion sallow concerted nucleophilic aromatic substitutions to be performed, followed by…
Descriptors: Organic Chemistry, Thermodynamics, Science Experiments, Science Process Skills
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Michailidi, Emily; Stavrou, Dimitris – International Journal of Science Education, 2022
This study focuses on post-induction mentoring as a vehicle for science teachers' training in implementing a nanotechnology teaching-learning sequence. Five mentors and 15 mentee-teachers participated in a 9-months long mentoring programme. Qualitative methods of analysis were used to examine the content of the mentoring conversations and the…
Descriptors: Mentors, Science Teachers, Molecular Structure, Technology
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Lisensky, George; McFarland-Porter, Ross; Paquin, Weltha; Liu, Kangying – Journal of Chemical Education, 2020
Nanoparticle Zn[subscript 2x] Cu[subscript 1-x] In[subscript 1-x] S[subscript 2] is a promising and safer alternative to lead- and cadmium-containing quantum dots. Students prepare Zn[subscript 0.44] Cu[subscript 0.78] In[subscript 0.78] S[subscript 2] quantum dots in a one-pot synthesis without an inert atmosphere and investigate how the color,…
Descriptors: Science Instruction, Chemistry, Metallurgy, Molecular Structure
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