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Showing all 6 results Save | Export
M. Anwar H. Khan; Timothy G. Harrison; Magdalena Wajrak; Michele Grimshaw; Kathy G. Schofield; Alison J. Trew; Kulvinder Johal; Jeannette Morgan; Karen. L. Shallcross; Joyce D. Sewry; Michael T. Davies-Coleman; Dudley E. Shallcross – Journal of Chemical Education, 2023
All learners have a contribution to make to the development of the Chemical Sciences, be that in novel ways to teach, and their perspectives and contexts, but also in research, both in chemical education and the wider Chemical Sciences. Through four case studies, this paper explores interactions with diverse groups and how this has altered…
Descriptors: Equal Education, Science Education, Chemistry, Diversity
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Rost, Linda – Science Teacher, 2022
Students from marginalized populations may be less likely to engage in science education and form science identities. Thus, science education should include culturally responsive pedagogy to engage students from diverse cultural and ethnic backgrounds and promote science identity in every student (Mhakure and Otulaja 2017). The author is a high…
Descriptors: Science Education, Culturally Relevant Education, Minority Group Students, Secondary School Science
Hipkins, Rosemary; Tolbert, Sara; Cowie, Bronwen; Waiti, Pauline – New Zealand Council for Educational Research, 2022
Science education has an important role to play in supporting our young people to meet the complex challenges of the modern age. Students need a curriculum that can prepare them to work collaboratively, competently and confidently to address the wicked "glocal" problems of our time. Rangatahi themselves recognise this - those involved in…
Descriptors: Instructional Design, Curriculum Design, Science Education, Science Curriculum
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Govender, Nadaraj – Education as Change, 2019
Curricular innovation in the 21st century in education requires significant transformation with regards to political, economic, socio-cultural and environmental concerns such as climate change and sustainability, amongst others. A critical pedagogy approach that includes the hegemonic knowledge debates of Western and Indigenous Knowledge Systems…
Descriptors: Agricultural Occupations, Critical Theory, Curriculum Development, Indigenous Knowledge
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Li Sun, Editor; Cheng-Yao Lin, Editor – IGI Global, 2025
Many educators face the challenge of engaging students in science and mathematics, often struggling to bridge the gap between theoretical concepts taught in classrooms and their real-world applications. This disconnect can lead to disinterest and disengagement among students, hindering their learning outcomes. "Cases on Informal Learning for…
Descriptors: Informal Education, Science Education, Mathematics Education, Problem Solving
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Judith D. Lemus – Journal of STEM Outreach, 2018
Educational approaches that provide meaningful, relevant opportunities for place-based learning have been shown to be effective models for engaging indigenous students in science. The Laulima A?Ike Pono (LAIP) collaboration was developed to create a place-based inclusive learning environment for engaging local community members, especially Native…
Descriptors: Holistic Approach, Place Based Education, Internship Programs, Science Education