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Qiang Fu; Shiyuan Fu; Hui Yang; Jing Yu; Li Liu – Journal of Chemical Education, 2024
The double-indicator method is often used in the analysis of Na[subscript 2]CO[subscript 3], NaHCO[subscript 3], and NaOH mixtures (carbonate mixtures). In this method, the determination of the volumes at the first and second equivalence points plays a crucial role in analyzing the composition and content of the carbonate mixtures. Here, LabVIEW…
Descriptors: Science Instruction, Chemistry, Computer Simulation, Measurement
Henry Matovu; Mihye Won; Ricardo Bruno Hernandez-Alvarado; Dewi Ayu Kencana Ungu; David F. Treagust; Chin-Chung Tsai; Mauro Mocerino; Roy Tasker – Journal of Science Education and Technology, 2024
This study investigated how different learning tasks influence students' collaborative interactions in immersive Virtual Reality (iVR). A set of chemistry learning activities was designed with iVR, and 35 pairs of undergraduate students went through the activities. Videos of students' interactions were analysed to identify patterns in students'…
Descriptors: Cooperative Learning, Intention, Computer Simulation, Chemistry
Martin, Eli – ProQuest LLC, 2023
As the number of STEM opportunities and the need for a scientifically literate society increases, educators in STEM fields require tools that help support these needs. Chemistry is one STEM content area that would benefit from exploring educational technology that supports conceptual understanding. An action research study was conducted to…
Descriptors: Chemistry, Educational Technology, Concept Formation, Learner Engagement
Shimelis Kebede Kekeba; Abera Gure; Taklu Tafesse Olkaba – Open Education Studies, 2024
The objective of the study was to investigate the effect of computer simulation integrated with jigsaw learning strategy (CSIJLS) on students' attitudes towards chemistry. Additionally, it sought to determine whether the usage of CSIJLS resulted in any changes in attitudes between male and female students. Researchers employed a quantitative…
Descriptors: High School Students, Grade 10, Chemistry, Science Instruction
Yufang Cheng; Meng-Han Lee; Chung-Sung Yang; Pei-Yu Wu – Interactive Technology and Smart Education, 2024
Purpose: The purpose of this study was to develop the augmented reality (AR) educational program combined with the instructional guidance for supportive learning, which enhanced the thinking process cooperative discussion and problem-solving skills in chemistry subject. Design/methodology/approach: The method used the quasi-experimental research…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Physical Environment
Shimelis Kebede Kekeba; Abera Gure; Teklu Tafesse Olkaba – Interactive Technology and Smart Education, 2025
Purpose: The purpose of this study was to investigate the impact of using a jigsaw learning strategy integrated with computer simulation (JLSICS) on the academic achievement and attitudes of students, along with exploring the relationships between them in the process of learning about acids and bases. Design/methodology/approach: The research…
Descriptors: Teaching Methods, Learning Strategies, Computer Simulation, Technology Uses in Education
Minale Demelash; Dereje Andargie; Woldie Belachew – Pedagogical Research, 2024
Now days, the level of students' engagement in secondary school chemistry is low. The aim of this study was then to enhance student chemistry engagement through simulation-integrated 7E context-based instructional strategy and compared its efficacy with 7E context-based instructional strategy, simulation-integrated conventional teaching approach,…
Descriptors: Secondary School Students, Learner Engagement, Chemistry, Teaching Methods
Adam J. Jeffery; Steven L. Rogers; Jamie K. Pringle; Vladimir L. Zholobenko; Kelly L. A. Jeffery; Kristopher D. Wisniewski; Katherine J. Haxton; David W. Emley – Journal of Chemical Education, 2022
Access to laboratory facilities and associated instrumentation represents a major barrier to learning in physical science education, due to constraints introduced by limited time and financial resources, cost of acquisition, and health and safety requirements. Virtualized laboratories offer some mitigation of these problems but may also introduce…
Descriptors: Science Laboratories, Science Education, Computer Simulation, Program Effectiveness
Liu, Qingtang; Ma, Jingjing; Yu, Shufan; Wang, Qiyun; Xu, Suxiao – Journal of Science Education and Technology, 2023
The microscopic composition of substances is a piece of essential but abstract knowledge in chemistry. Junior high school students may experience difficulty in mental representation when learning micro concepts, which leads to problems such as unsatisfactory academic performance and low learning motivation. Augmented reality (AR) is an optimal…
Descriptors: Chemistry, Science Instruction, Grade 9, Scientific Concepts
Oluwafikayo Elizabeth Adewumi – ProQuest LLC, 2024
This study employed a qualitative case study design to explore participants' perspective on learning STEM subjects through immersive mobile technologies. Immersive mobile learning (IML) is the learning approach that provides learners with immersive experiences and access to educational content ubiquitously using portable electronic devices.…
Descriptors: Handheld Devices, Technology Uses in Education, Instructional Effectiveness, STEM Education
Qi-Fan Yang; Han Lin; Gwo-Jen Hwang; Pei-Yao Su; Jia-Hua Zhao – Interactive Learning Environments, 2024
In science education, chemistry is a discipline that involves macroscopic matter and microscopic particles. It is difficult for the traditional teaching approach to help learners comprehend abstract chemical knowledge. Researchers have attempted to use Virtual Reality (VR) to help learners realize meaningful knowledge via visualizing the learning…
Descriptors: Foreign Countries, Junior High School Students, Grade 9, Chemistry
Funkenbusch, LiLu Tian; Rivera-Jiménez, Sindia – Chemical Engineering Education, 2023
The continuous distillation experiment in the Unit Operations Lab was moved to a virtual platform. Students used old data and equipment specifications to simulate the column in Aspen HYSYS. Students experimented without the limitations of existing equipment. For example, they studied the number of trays in the virtual column, something that is…
Descriptors: Chemistry, Science Instruction, Feedback (Response), Student Attitudes
Minale Demelash; Woldie Belachew; Dereje Andargie – Pedagogical Research, 2023
The purpose of this study was to examine whether a simulation-integrated context-based 7E instructional strategy (SICBIS) could increase students' achievement in the chemistry of oxides, acids, bases, and salts (COABS) when compared to context-based 7E instructional strategy (CBIS), simulation-integrated conventional teaching approach (SICTA), and…
Descriptors: Science Instruction, Chemistry, Grade 10, High School Students
An, Jiwoo; Holme, Thomas A. – Journal of Chemical Education, 2021
Incorporation of previously reported AR technology (ARiEL) for a general chemistry laboratory was attempted for the second time, a replication effort designed to provide students with an option to read about the nature of instruments used in an experiment. Students' app usage was tracked to understand the type and amount of information accessed,…
Descriptors: Computer Simulation, Computer Uses in Education, Chemistry, Science Instruction
Yilmaz, Ozkan – Shanlax International Journal of Education, 2021
Effective usage of augmented reality (AR) depends on good integration into the learning environment. Based on a qualitative research approach, this study investigates the effects of using AR technologies in science education to support the effective use of AR. Students' experiences of AR were gathered using a prepared questionnaire form. Within…
Descriptors: Computer Simulation, College Science, Student Experience, College Students