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Elizabeth Darko Agyei

· University of Cape Coast

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Elizabeth Darko Agyei is a registered researcher in their academic field.

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Recent Publications

4 research works linked to this profile

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Science Education and Pedagogy, Experimental Learning in Engineering, Innovative Teaching Methods · 2024 · Contemporary Mathematics and Science Education

Technology integration in science classrooms: Empowering student teachers for improved physics teaching with simulations

This study employed a descriptive case study design to examine the integration of technology in science education, focusing on the professional development of student teachers in Ghana. Using the technological pedagogical and content knowledge (TPACK) framework as a theoretical lens, the study aimed to address the gaps in existing teacher education programs. Through a technology integration training workshop, the progress of four student teachers in developing their competencies for integrating technology into the teaching of high school physics using simulations was tracked and examined. Drawing on a combination of quantitative (survey) and qualitative data (focus group discussions, semi-structured interviews, observations, and lesson artefacts) sources, findings revealed that the student teachers improved their teaching with technology, which was evident in their developed TPACK, improved content knowledge and developed competencies in the exploration of Physics Education Technology simulation environments. These outcomes suggest a transformative shift in student teacher's teaching approaches, transitioning from a teacher-centered paradigm to a learner-centered one, particularly within the context of simulation environments. Despite initial challenges associated with insufficient content knowledge, establishment of relationships among physics content, teaching strategies and the identified affordances of the simulation environment as well as the shift from traditional to learner-centered approach, the study underscores the pivotal role played by the professional training arrangement implemented for the research.

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Online and Blended Learning, Innovative Teaching and Learning Methods, Technology-Enhanced Education Studies · 2021 · International Journal of Interactive Mobile Technologies (iJIM)

Promoting Interactive Teaching with ICT: Features of Intervention for the Realities in the Ghanaian Physics Senior High School Classroom

<p>This research reports on the design aspect of a bigger project which sought to design and implement information and communication technology (ICT)-based interventions for the purpose of developing pre-service teachers’ ICT competency for teaching physics in an interactive manner using a three-stage (design stage, implementation and evaluation stage, and documentation and reflection stage) design-based research approach. Using literature as a lens, this research examines the interventions that we designed in the first stage of the project with the intent to determine its features that promote interactive teaching and fit the Ghanaian senior high school physics classroom context. Findings show that the intervention with inherent features comprising of: a readily available, sustainable, context- and content-specific ICT teaching and learning environment; an ICT-oriented knowledge base for teachers’ uptake of ICT; an underlining framework for defining interactive and learner-centred teaching approach with ICT; ICT-driven interactive lesson objectives; an inquiry-driven, activity- and ICT-based learning material; and a collaborative classroom arrangement is appropriate and sensitive to the needs of the Ghanaian physics classroom context and, hence, possess the potential for promoting interactive teaching. The features of the interventions, as situated in the specific context of the research and implications of the findings are discussed.<strong></strong></p><p><strong> </strong></p>

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Educational Games and Gamification, Mobile Learning in Education, Innovative Teaching Methods · 2021 · European Journal of Interactive Multimedia and Education

Enhancing Students’ Learning of Physics Concepts with Simulation as an Instructional ICT Tool

The dwindling interest and perceived difficulty experienced by science students in learning physics at the senior high school level of education in Ghana speak to the need for the creation of authentic instructional platforms that promote enhanced learning as well as motivate students’ interest in physics. This study used an explanatory case study design to examine the affordances of Physics Education Technology simulations (PhETs) as an instructional tool with the intent to explain how enhanced students’ learning of physics concepts with simulations through implementation processes are possible in the context of Ghana. Nine pre-service physics teachers were engaged as learners to mimic the role of senior high school science students in witnessing simulation-based physics lessons. Questionnaires, pre- and post-tests and focus group interviews were the data sources employed in this study. The results showed that the learners’ learning enhanced with the use of PhETs because their learning outcomes improved and also, they had positive experiences with the simulations. Consequently, the study advocates that enhanced learning of concepts in physics with simulations are possible through interactive implementation processes that are exploratory and demonstrative in nature and context-sensitive.

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Innovative Teaching and Learning Methods, Science Education and Pedagogy, Online and Blended Learning · 2019 · Journal of Baltic Science Education

EXAMINING THE EFFECTIVENESS OF SIMULATION-BASED LESSONS IN IMPROVING THE TEACHING OF HIGH SCHOOL PHYSICS: GHANAIAN PRE SERVICE TEACHERS’ EXPERIENCES

Teacher-dominated approach is still the most adopted teaching strategy in Ghanaian high schools despite the Government of Ghana’s initiatives to support technology-oriented, learner-centred and interactive teaching practices. This study examined the effectiveness of simulation-based lessons in improving the teaching of high school physics by adapting the five dimensions for meaningful learning with information and communication technology model by Howland, Jonassen and Marra (2012) as a theoretical lens. Using an explanatory case study design, eight pre-service physics teachers from the University of Cape Coast, Ghana were engaged to develop and design simulation-based physics lessons in design teams and enact these lessons among themselves in microteaching sessions. Results showed that the simulation-based lessons were effective in that the pre-service teachers’ teaching practices improved to be learner-centred and interactive. The results also suggested that although a combination of all the dimensions of meaningful learning was key to the effectiveness observed with each of the simulation-based lessons, the Cooperative dimension was found to possess a unique potential for sustaining the other dimensions in order to facilitate improvements in the teaching of physics with simulations. Keywords: high school physics, ICT, interactive teaching, pre-service teachers, simulation-based lessons.