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Pascal Kaneza; Jean Baptiste Nkurunziza; Innocent Twagilimana – African Journal of Research in Mathematics, Science and Technology Education, 2024
The main objective of this intervention study was to investigate the effect of three teaching approaches, namely the traditional teaching method (TTM), a teacher-based demonstration experiment (TBDE) and a student hands-on experiment (SHE), on students' academic performance. A total number of 324 senior five students studying chemistry as one of…
Descriptors: Instructional Effectiveness, Active Learning, Science Experiments, Teaching Methods
Elizabeth B. Vaughan; Saraswathi Tummuru; Jack Barbera – Chemistry Education Research and Practice, 2025
Students' expectations for their laboratory coursework are theorized to have an impact on their learning experiences and behaviors, such as engagement. Before students' expectations and engagement can be explored in different types of undergraduate chemistry laboratory courses, appropriate measures of these constructs must be identified, and…
Descriptors: Undergraduate Students, Organic Chemistry, Chemistry, Science Instruction
Smallwood, Zoe M.; Campbell, Craig D.; Worrall, Andrew F.; Cahill, Samuel T.; Stewart, Malcolm I. – Journal of Chemical Education, 2021
A practical focusing on the synthesis, isolation, and hydrolysis of ammonia borane (AB), H[subscript 3]N·BH[subscript 3], was developed for first-year undergraduate students. By requiring students to propose their own experimental setup to measure the amount of gas produced upon hydrolysis, experimental design skills were introduced and developed…
Descriptors: Science Experiments, College Science, Undergraduate Study, Measurement
Irby, Stefan M.; Borda, Emily J.; Haupt, Justin – Journal of Chemical Education, 2018
Here, we describe the implementation a hybrid general chemistry teaching laboratory curriculum that replaces a portion of a course's traditional "wet lab" experiences with online virtual lab modules. These modules intentionally utilize representations on all three levels of the chemistry triplet-macroscopic, submicroscopic, and symbolic.…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Learning Modules
Hu-Au, Elliot; Okita, Sandra – Journal of Science Education and Technology, 2021
Recent global events and educational trends have led schools to heavily rely on digital media to educate their students. Science classes, in particular, stand to lose substantial learning opportunities without the ability to provide physical laboratory experiences. Virtual reality (VR) technology has the potential to resolve this issue, but little…
Descriptors: Chemistry, Computer Simulation, Simulated Environment, Science Education
Enneking, Kory M.; Breitenstein, Graham R.; Coleman, Amelia F.; Reeves, James H.; Wang, Yishi; Grove, Nathaniel P. – Journal of Chemical Education, 2019
The laboratory has occupied an important place in the general chemistry curriculum for well over a century, despite the fact that many have voiced concern about its value and utility. In an effort to potentially increase capacity in our general chemistry courses, we developed and implemented a hybrid laboratory curriculum that consisted of…
Descriptors: Science Laboratories, Chemistry, Science Instruction, College Science
Posthuma-Adams, Erica – Journal of Chemical Education, 2014
As advanced placement (AP) teachers strive to implement the changes outlined in the AP chemistry redesign, they will have the opportunity to reflect on and evaluate their current practices. For many AP teachers, the new focus on conceptual understanding, reasoning, inquiry, and critical thinking over memorization and algorithmic problem solving…
Descriptors: Chemistry, Science Instruction, Science Curriculum, Advanced Placement
Wooster, Mike – School Science Review, 2011
This article outlines the reasons why practical work is declining in schools. Microscale chemistry is put forward as a sustainable way of remedying this. The advantages of its use are outlined, including a description of some practical techniques that can be used to illustrate these advantages. There is also a description of how you can make the…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Conventional Instruction
Badeleh, Alireza – Journal on School Educational Technology, 2011
The present study aimed at finding the effectiveness of the Laboratory Training Model of Teaching (LTM) and comparing it with the traditional methods of teaching chemistry to seventh standard students. It strived to determine whether the (LTM) method in chemistry would be significantly more effective than the Traditional method in respect to the…
Descriptors: Chemistry, Laboratory Training, Teaching Methods, Comparative Analysis
Bopegedera, A. M. R. P. – Journal of Chemical Education, 2007
Gas laws are taught in most undergraduate general chemistry courses and even in some high school chemistry courses. This article describes the author's experience of using the laboratory to allow students to "discover" gas laws instead of the conventional approach of using the lecture to teach this concept. Students collected data using Vernier…
Descriptors: Chemistry, Laboratory Experiments, Scientific Principles, Teaching Methods

Cruickshank, A. J. Bruce – Computers and Education, 1983
Discusses consequences of using computer-assisted learning (CAL) packages for experiment planning in undergraduate physical chemistry laboratories and examines textbook presentations and syllabus criticism. An approach to syllabus reconstruction that combines operational research with experiences of CAL development program is demonstrated through…
Descriptors: Case Studies, Chemistry, Computer Assisted Instruction, Conventional Instruction