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Showing all 12 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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Omilani, Nathaniel A.; Akinyele, S. Akin; Durowoju, Tunde S.; Obideyi, Ebenezer Ifeoluw – Education 3-13, 2019
Basic Science and Technology is a subject that is based on the broad field curriculum which is the foundation for science education in Nigeria at the basic level of education. Pupils learning outcomes is usually limited to the assessment of their achievement in paper pencil test. Pupils' skills in carrying out scientific investigation and the…
Descriptors: Foreign Countries, Elementary School Students, Problem Solving, Elementary School Science
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Redman, Christine – Theory Into Practice, 2017
The main focus here is to examine the benefits of defining and developing an engineering curriculum for elementary schools. Like many other international educational systems, Australian educational settings have been seeking to effectively implement science, technology, engineering, and mathematics (STEM) education. However, current assumptions…
Descriptors: STEM Education, Engineering, Engineering Education, Science Education
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Reiser, Brian J.; Berland, Leema K.; Kenyon, Lisa – Science Teacher, 2012
"A Framework for K-12 Science Education" identifies eight science and engineering practices for K-12 classrooms. These practices, along with core ideas and crosscutting concepts, define the nation's learning goals for science. An important advance from earlier standards (AAAS 1993, NRC 1996), these practices are clearly identified "not" as…
Descriptors: Thinking Skills, Elementary School Science, Secondary School Science, Science Education
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Dianovsky, Michael T.; Wink, Donald J. – Science Education, 2012
This paper describes research on the use of journals in a general education chemistry course for elementary education majors. In the journals, students describe their understanding of a topic, the development of that understanding, and how the topic connects to their lives. In the process, they are able to engage in reflection about several…
Descriptors: Grade Point Average, Prior Learning, Chemistry, Learning Activities
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Lee, Chwee Beng – Computers & Education, 2010
This study examines the interactions between problem solving and conceptual change in an elementary science class where students build system dynamic models as a form of problem representations. Through mostly qualitative findings, we illustrate the interplay of three emerging intervening conditions (epistemological belief, structural knowledge…
Descriptors: Elementary School Science, Learning Strategies, Problem Solving, Systems Approach
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Chessin, Debby – Science and Children, 2007
Science centers can engage students; accommodate different learning styles and individual interests; help students become independent and confident learners; and encourage social skills among students. In this article, the author worked with third-grade students as they completed activities at learning centers during a week-long unit on simple…
Descriptors: Teaching Methods, Investigations, Problem Solving, Learning Centers (Classroom)
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Hickey, Daniel T.; Ingram-Goble, Adam A.; Jameson, Ellen M. – Journal of Science Education and Technology, 2009
This study used innovative assessment practices to obtain and document broad learning outcomes for a 15-hour game-based curriculum in Quest Atlantis, a multi-user virtual environment that supports school-based participation in socio scientific inquiry in ecological sciences. Design-based methods were used to refine and align the enactment of…
Descriptors: Feedback (Response), Test Items, Student Evaluation, Achievement Tests
Leiberman, Gerald A. – Environmental Education Report and Newsletter, 1985
Discusses development, goals, and phases of the Resources Management Education Program. The program, designed to create a basic awareness of conservation and natural resources management issues for primary schools in Latin America, is taught in conjunction with the life and physical sciences. (DH)
Descriptors: Conservation Education, Curriculum Development, Elementary Education, Elementary School Science
Tasker, Ross; And Others – 1979
The first (exploratory) phase of the Learning in Science Project focused on science teaching/learning in the Form 1 to 4 level (ages 10 to 14) and sought to identify problems and difficulties in several areas. Provided in this paper are comments obtained during structured/unstructured interviews (from students, ex-students, teachers, headmasters,…
Descriptors: Academic Achievement, Curriculum Development, Elementary School Science, Elementary Secondary Education
Classroom Computer Learning, 1988
Provides reviews of four educational software packages which deal with problem solving, mathematics, history, and reading comprehension. Includes information about appropriate hardware, grade level, the publisher and purchasing. Contains comments about the strengths and weaknesses of each program. (TW)
Descriptors: Computer Assisted Instruction, Computer Software Reviews, Computer Uses in Education, Courseware
Blank, Rolf K.; Kim, Jason J.; Smithson, John – 2000
This report presents results from four 1999 Urban Systemic Initiative (USI) school district surveys. The Survey of Enacted Curriculum is the study component of a grant from the National Science Foundation to examine how reform works in USI districts. The study explores the impact of USI programs on student achievement and the learning…
Descriptors: Academic Achievement, Classroom Techniques, Curriculum Development, Educational Change