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Rees, Simon; Newton, Douglas – School Science Review, 2021
Creativity lies at the heart of science teaching and learning. However, stereotypically, creativity is more widely associated with the arts than the sciences. In this article, we challenge this perception and demonstrate how to teach for and with creativity in science. With developments in artificial intelligence, the need to foster students'…
Descriptors: Creativity, Science Instruction, Artificial Intelligence, STEM Education
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McLean, Natalie; Georgiou, Helen; Matruglio, Erika; Turney, Annette; Gardiner, Paul; Jones, Pauline; Groves, Christine Edwards – Australian Educational Researcher, 2023
Creativity is recognised as an essential twenty-first century skill. Despite the significant volume of research on creativity, there remains considerable ambiguity in the way it is conceptualised within education. This study uses a qualitative approach to explore primary educators' (n = 9) perceptions of creativity in English, science, and…
Descriptors: Elementary School Teachers, Creativity, English Instruction, History Instruction
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Ozlem Koray; Didem Boran – Science Insights Education Frontiers, 2023
This study examined the effect of using critical reading in scientific texts on students' academic achievement, sci-ence performance level and creativity. The study was conducted with 5th grade students in Eregli, Zonguldak during the 2017-2018 academic year. The study group consisted of a total of 34 students, 17 in the experimental group and 17…
Descriptors: Grade 5, Critical Reading, Science Instruction, Academic Achievement
Nadine El-Awar – ProQuest LLC, 2023
As schools continue to focus on outcome-based instructional practices, less emphasis is placed on the creativity and reasoning necessary for students to become effective critical thinkers. As a result, students struggle to demonstrate creative problem-solving skills in the classroom. This study examines how the facilitation of an instructional…
Descriptors: Grade 7, Middle School Students, Science Instruction, Problem Solving
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Tiryaki, Aydin; Adigüzel, Sibel – Journal of Science Learning, 2021
In the present study, the effects of STEM-based robotics applications on students' creativity and scientific attitudes in the Electricity Unit of 7th grade have been investigated using the mixed method's nested pattern. Sixty students, 30 of whom are the experimental group and the other 30 constitute the control group, attending a post-school…
Descriptors: STEM Education, Robotics, Instructional Effectiveness, Science Instruction
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Mengardon, Katherine – Primary Science, 2019
Ken Robinson (2006) once suggested that schools kill creativity and it is argued that in England, since the introduction of the most recent iteration of the National Curriculum (2013), creative subjects are in danger of being marginalised in favour of spending time preparing for high-stakes testing in maths and English. Meet Little Inventors! It…
Descriptors: Creativity, Science Instruction, National Curriculum, Teaching Methods
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Korsun, Igor – Physics Education, 2019
This article is aimed at justifying sensible use of inventive tasks in physics teaching. The justification will encourage teachers to form learners' creative thinking; in particular, the course of physics has the great potential for forming learners' creative thinking. Being adapted to the course of physics, the basic stages to solve inventive…
Descriptors: Science Interests, Physics, Science Instruction, Creative Thinking
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Karaca, Tulin; Koray, Ozlem – Eurasian Journal of Educational Research, 2017
Purpose: The purpose of this study is to examine the effects of the creative reversal act (CREACT) used in teaching ecosystems topics on the creativity levels of middle school students. Research Methods: The research was conducted using a quasi-experimental design, a quantitative research method, and a pretest-posttest control group design. The…
Descriptors: Middle School Students, Creativity, Statistical Analysis, Pretests Posttests
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Thompson, Taylor – Gifted Child Today, 2017
The experience that students gain through creative thinking contributes to their readiness for the 21st century. For this and other reasons, educators have always considered creative thinking as a desirable part of any curriculum. The focus of this article is on teaching creative thinking in K-12 science as a way to serve all students and,…
Descriptors: Creativity, Science Instruction, Inquiry, Active Learning
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Peilloux, Aurélien; Botella, Marion – Creativity Research Journal, 2016
Although creativity has drawn the attention of researchers during the past century, collaborative processes have barely been investigated. In this article, the collective dimension of a creative process is investigated, based on a dynamic and ecological approach that includes an affective component. "Dynamic" means that the creative…
Descriptors: Creativity, College Students, Higher Education, Foreign Countries
Wu, Chenglin – ProQuest LLC, 2018
Current education reform in both the United States and China promotes a reformed inquiry-based approach based on the constructivist learning theory. This study contributes to the research literature by exploring the relationship between reformed science teaching and students' creativity. Chinese education is often criticized for a lack of…
Descriptors: Creativity, Middle School Students, Mixed Methods Research, Semi Structured Interviews
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Ramankulov, Sherzod; Usembaeva, Indira; Berdi, Dinara; Omarov, Bakhitzhan; Baimukhanbetov, Bagdat; Shektibayev, Nurdaulet – International Journal of Environmental and Science Education, 2016
Information and communication technologies are an effective means of formation of the creative potential of future physics teachers, as with their science-based application in the educational process at the university they allow fully activating learning activities of students, and provide conditions for their creative self-realization in the…
Descriptors: Creativity, Foreign Countries, Science Teachers, Physics
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Thomas, Kelli, Ed.; Huffman, Douglas, Ed. – IGI Global, 2020
The addition of the arts to STEM education, now known as STEAM, adds a new dimension to problem-solving within those fields, offering students tools such as imagination and resourcefulness to incorporate into their designs. However, the shift from STEM to STEAM has changed what it means for students to learn within and across these disciplines.…
Descriptors: STEM Education, Art Education, Educational Change, Barriers
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Yang, Kuay-Keng; Lin, Shu-Fen; Hong, Zuway-R; Lin, Huann-shyang – Creativity Research Journal, 2016
The purposes of this study were to (a) develop and validate instruments to assess elementary students' scientific creativity and science inquiry, (b) investigate the relationship between the two competencies, and (c) compare the two competencies among different grade level students. The scientific creativity test was composed of 7 open-ended items…
Descriptors: Elementary School Students, Elementary School Science, Creativity, Comparative Analysis
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Klieger, Aviva; Sherman, Guy – Physics Education, 2015
Creativity can be viewed from different perspectives, such as the creative thinking process, the product, the creative environment and the individual. The physics domain, which is based on experiments, research, hypotheses and thinking outside the box, can serve as an excellent grounding for creativity development. This article focuses on creative…
Descriptors: Science Instruction, Physics, Textbooks, Creativity
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