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Zhao, Yanlu; Lim, Minyoung; Choi, Sungmoon; Yu, Junhua – Journal of Biological Education, 2022
The attractive photophysical properties of luminescent nanoparticles have prompted numerous studies on their synthesis and biological applications. Due to the complexity of components, sizes, morphologies, and strong light scattering of the nanoparticles the absorption spectrum alone is not enough for characterising and analysing the real…
Descriptors: Spectroscopy, Cytology, Light, Science Instruction
Qianfu Luo; Chenyu Shi; Zhaoxia Wang; Meng Chen; Da-Hui Qu – Journal of Chemical Education, 2022
Given the importance of self-healing polymers for chemistry education, herein, we introduce our latest research results in self-healing materials based on thioctic acid into undergraduate chemistry laboratory. In this experiment, a natural small molecule, thioctic acid (TA), and a few other commercially-available reagents have been used to make a…
Descriptors: Chemistry, Plastics, Undergraduate Study, College Science
José Nunes da Silva Júnior; José Mariano de Sousa Oliveira; Jean-Yves Winum; Antonio José Melo Leite Junior; Francisco Serra Oliveira Alexandre; David Macedo do Nascimento; Ulisses Silva de Sousa; Antônia Torres Ávila Pimenta; André Jalles Monteiro – Journal of Chemical Education, 2024
The educational game Interactions 500 was extensively used remotely during the COVID-19 Pandemic as an activity at the Federal University of Ceará (Brazil) to help students review intermolecular forces. In the postpandemic years, the game was also used face-to-face in the classroom. However, Apple Store and Google Play Store removed it from their…
Descriptors: Chemistry, Science Activities, Educational Games, COVID-19
Truhlar, Donald G. – Journal of Chemical Education, 2019
Dispersion forces are ubiquitous in chemistry, yet they are often misunderstood. This article provides background into why they are called dispersion forces and explains how to describe them in terms of time-independent quantum mechanics. The article also describes the breakdown of the multipole series that is often used to describe dispersion…
Descriptors: Chemistry, Science Instruction, Quantum Mechanics, Molecular Structure
Allred, Zahilyn D. Roche; Bretz, Stacey Lowery – Chemistry Education Research and Practice, 2019
Multiple chemistry education research studies at the secondary level have characterized students' difficulties regarding a conceptual understanding of the quantum model of the atom. This research explores undergraduate students' interpretations of multiple representations of the atom. Semistructured interviews were conducted with first-year…
Descriptors: Science Instruction, Chemistry, Undergraduate Students, College Science
Ross, Keith – School Science Review, 2019
This article argues that we need to make use of our everyday experiences when introducing concepts in chemistry that are often obscure. It uses reaction rates as an example and explores a common misconception related to the explanation of the effect of rising temperature on the rate of slow reactions.
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Heat
Patron, Emelie; Linder, Cedric; Wikman, Susanne – Science Education, 2021
Since visual representations play a particularly important role in the teaching and learning of chemistry, the exploration described in this article focuses on them. This is an explorative study of the qualitatively different ways that visual representations can be unpacked by Swedish upper secondary school chemistry teachers dealing with…
Descriptors: Science Instruction, Secondary School Science, Visual Aids, Molecular Structure
Juszczak, Laura J. – Journal of Chemical Education, 2021
One of the more difficult concepts introduced in the first-year undergraduate course, general chemistry, is that of chirality. Typically, left and right hands are the common, macroscopic objects of reference used to demonstrate the quality of being nonsuperimposable, followed by the use of a mirror and molecular models, to illustrate molecular…
Descriptors: Undergraduate Students, College Science, Scientific Concepts, Science Instruction
Rattanapirun, Narapat; Laosinchai, Parames – Journal of Chemical Education, 2021
Molecular symmetry is a topic that requires mental manipulation of molecules when searching for symmetry elements and their corresponding symmetry operations. Such mental activities are difficult for students in a traditional classroom where only definitions and demonstrations are provided. Therefore, an exploration-based activity was developed to…
Descriptors: Chemistry, Molecular Structure, College Science, College Students
Allbee, Quinn; Barber, Robert – Biochemistry and Molecular Biology Education, 2021
Biology is a data-driven discipline facilitated greatly by computer programming skills. This article describes an introductory experiential programming activity that can be integrated into distance learning environments. Students are asked to develop their own Python programs to identify the nature of alleles linked to disease. This activity…
Descriptors: Genetics, Science Instruction, Programming Languages, Biology
VanVeller, Brett – Journal of Chemical Education, 2021
When organic students are asked to design a total synthesis of a molecule, they are often overwhelmed by the multitude of possible transformations. A decision tree is a useful tool to break complex problems up into simpler steps and scaffold the thinking process that many seasoned chemists take for granted. While many comprehensive resources…
Descriptors: Decision Making, Science Instruction, Molecular Structure, Problem Solving
Stowe, Ryan L.; Scharlott, Leah J.; Ralph, Vanessa R.; Becker, Nicole M.; Cooper, Melanie M. – Journal of Chemical Education, 2021
What we emphasize and reward on assessments signals to students what matters to us. Accordingly, a great deal of scholarship in chemistry education has focused on defining the sorts of performances worth assessing. Here, we unpack observations we made while analyzing what "success" meant across three large-enrollment general chemistry…
Descriptors: Science Tests, Chemistry, Science Education, Large Group Instruction
Brannon, Jacob P.; Ramirez, Isaac; Williams, DaShawn; Barding, Gregory A., Jr.; Liu, Yan; McCulloch, Kathryn M.; Chandrasekaran, Perumalreddy; Stieber, S. Chantal E. – Journal of Chemical Education, 2020
Experimental methods for determining 3-D atomic structures, such as crystallography, are rarely taught in the undergraduate curriculum, yet are considered to be the norm for 3-D structure determination in a research setting. Although a fully physical understanding of crystallography takes years of practice, practical applications and basic…
Descriptors: Science Instruction, College Science, Inorganic Chemistry, Molecular Structure
Rasmawan, Rahmat – International Journal of Instruction, 2020
The purpose of this research was to develop a multi-representation based e-book on the concept of intermolecular forces that is valid and feasible for use. The form of research used was Research and Development (R&D), which refers to the ADDIE development model consisting of five stages, namely analysis, design, development, implementation and…
Descriptors: Textbook Preparation, Multimedia Materials, Electronic Publishing, Molecular Structure
Punnoose, Jibin Abraham; Halvorsen, Ken; Chandrasekaran, Arun Richard – Journal of Chemical Education, 2020
There is a disconnect between the cutting-edge research done in academic laboratories, such as nanotechnology, and what is taught in undergraduate laboratories. In the current undergraduate curriculum, very few students get a chance to do hands-on experiments in nanotechnology-related fields, most of which are through selective undergraduate…
Descriptors: Undergraduate Students, Science Instruction, Genetics, Teaching Methods

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