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Manassawee Wannomai; Prasart Nuangchalerm; R. Ahmad Zaky El Islami – Journal of Education and Learning (EduLearn), 2024
The goals of the study were as follows: i) to design an active science learning activity on stoichiometry for grade 10 students, ii) to evaluate the academic achievement of grade 10 students after receiving an active science learning activity on stoichiometry, and iii) to investigate the perspectives of grade 10 students regarding an active…
Descriptors: High School Students, Secondary School Science, Science Education, Active Learning
Çelikkiran, Aysegül Tarkin – International Journal of Progressive Education, 2020
The aim of this qualitative case study was to explore secondary students' ability to transfer among representation levels in relation to stoichiometry. In the study, 40 students in the 11th grade from two classes of an Anatolian high school in the east part of Turkey were selected as sample group. The data were collected by using a questionnaire…
Descriptors: Chemistry, Stoichiometry, High School Students, Secondary School Science
Ramesh, Vinay Bapu; Selvam, Athavan Alias Anand; Kulkarni, Surabhi; Manganahalli, Anusha Dattatreya; Bettadapur, Kiran R. – Journal of Chemical Education, 2020
High school students find reaction stoichiometry and the concept of the mole hard to comprehend. Teachers are well aware of the importance of teaching the mole concept and also the difficulty associated with it. In an attempt to improve the understanding of the mole concept with reduced difficulty, an atomic model kit that provides a hands-on…
Descriptors: Stoichiometry, Chemistry, Secondary School Science, High School Students
Stott, Angela Elisabeth – Chemistry Education Research and Practice, 2021
Stoichiometry calculation competence tends to be particularly poor in the developing world, even among teachers. Various methods, including the unit factor method, have the potential to be effective in developing such competence. To evaluate the likelihood of such a generic proportion method, which downplays traditional formula usage, succeeding…
Descriptors: Stoichiometry, Science Teachers, Teacher Competencies, Knowledge Level
Boesdorfer, Sarah B.; Arias, Anna Maria; Mull, Bayleigh; Lieberum, Kyle – School Science and Mathematics, 2020
Curriculum materials can play a major role in shaping teachers' thinking about instruction and content as well as serve as a support for teachers' learning. With the inclusion of engineering in NGSS, many teachers may be turning to existing curriculum materials to help them infuse engineering into their science classroom, especially when they do…
Descriptors: Instructional Materials, Engineering Education, Chemistry, Science Instruction
Davis, T. A.; Athey, S. L.; Vandevender, M. L.; Crihfield, C. L.; Kolanko, C. C. E.; Shao, S.; Ellington, M. C. G.; Dicks, J. K.; Carver, J. S.; Holland, L. A. – Journal of Chemical Education, 2015
This activity allows students to visualize the electrolysis of water in a microfluidic device in under 1 min. Instructional materials are provided to demonstrate how the activity meets West Virginia content standards and objectives. Electrolysis of water is a standard chemistry experiment, but the typical laboratory apparatus (e.g., Hoffman cell)…
Descriptors: Science Instruction, Secondary School Science, Science Laboratories, Chemistry
Journal of Chemical Education, 2015
This paper presents the design and practical application of a laboratory inquiry at high school chemistry level for systematic chemistry learning, as exemplified by a thermochemical approach to the reaction stoichiometry of neutralization using Job's method of continuous variation. In the laboratory inquiry, students are requested to propose the…
Descriptors: Secondary School Science, Science Instruction, Inquiry, Active Learning
de Lima, Kassio M. G.; da Silva, Amison R. L.; de Souza, Joao P. F.; das Neves, Luiz S.; Gasparotto, Luiz H. S. – Journal of Chemical Education, 2014
Stoichiometry has always been a puzzling subject. This may be partially due to the way it is introduced to students, with stoichiometric coefficients usually provided in the reaction. If the stoichiometric coefficients are not given, students find it very difficult to solve problems. This article describes a simple 4-h laboratory experiment for…
Descriptors: Science Instruction, Chemistry, Stoichiometry, Secondary School Science
Geyer, Michael J. – Journal of Chemical Education, 2014
A modified technique for demonstrating the magnitude of Avogadro's number using a new Raspberry Pi computer and the Python language is described. The technique also provides students the opportunity to review dimensional analysis.
Descriptors: Technology Uses in Education, Teaching Methods, Courseware, Stoichiometry
Ange´lica M. Gonza´lez-Sa´nchez; Edgardo L. Ortiz-Nieves; Zuleikra Medina – Journal of Chemical Education, 2014
Many students share the common belief that the limiting reactant in a chemical reaction is the reactant in the smallest quantity of material. To help students overcome this difficulty a hands-on activity for the limiting reactant concept was developed. The activity incorporates the three levels of representation (macroscopic, submicroscopic, and…
Descriptors: Science Instruction, Chemistry, Scientific Principles, Teaching Methods
Tang, Hui; Kirk, John; Pienta, Norbert J. – Journal of Chemical Education, 2014
This paper includes two experiments, one investigating complexity factors in stoichiometry word problems, and the other identifying students' problem-solving protocols by using eye-tracking technology. The word problems used in this study had five different complexity factors, which were randomly assigned by a Web-based tool that we developed. The…
Descriptors: Science Instruction, Science Experiments, Eye Movements, Stoichiometry
Cotes, Sandra; Cotuá, José – Journal of Chemical Education, 2014
This article describes a method of instruction using an active learning strategy for teaching stoichiometry through a process of gradual knowledge building. Students identify their misconceptions and progress through a sequence of questions based on the same chemical equation. An infrared device and software registered as the TurningPoint Audience…
Descriptors: Science Instruction, Active Learning, Chemistry, Stoichiometry
Baranski, Andrzej – Journal of Chemical Education, 2012
Numerous articles have been published that address problems encountered in teaching basic concepts of chemistry such as the atomic mass unit, Avogadro's number, and the mole. The origin of these problems is found in the concept definitions. If these definitions are adjusted for teaching purposes, understanding could be improved. In the present…
Descriptors: Chemistry, Definitions, Science Instruction, College Science
Zhilin, Denis M. – Journal of Chemical Education, 2012
A simple, effective demonstration of the concept of limiting and excess reagent is presented. Mixtures of either air/methane (from a gas line) or air/butane (from a disposable cigarette lighter) contained in a plastic 2 L soda bottles are ignited. The mixtures combust readily when air/fuel ratios are stoichiometric, but not at a 2-fold excess of…
Descriptors: Stoichiometry, Science Instruction, College Science, Undergraduate Study
Sostarecz, Michael C.; Sostarecz, Audra Goach – Journal of Chemical Education, 2012
A solid foundation of chemistry principles is only gained through a true comprehension of the material as opposed to pure memorization. One of the most fundamental concepts in chemistry is that of determining the amount of product formed in a chemical reaction when one of the reactants is limiting. To increase students' comprehension of this…
Descriptors: Chemistry, Fundamental Concepts, Science Instruction, College Science