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Tan, Michael; Koh, Teck Seng – Science Education, 2023
In considering goals for science education, it is conventional to make arguments for the utility of scientific knowledge for a variety of purposes. Less prominent are rationales based on the beauty or truth of science. In this paper, we examine how an approach to science education might be different if we shift the goals of communication to an…
Descriptors: Science Education, Classroom Communication, Knowledge Level, Evidence
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Reiss, Michael J.; Sheldrake, Richard; Lodge, Wilton – Canadian Journal of Science, Mathematics and Technology Education, 2023
One of the ways in which students can be taught science is by doing science, the intention being to help students understand the nature, processes, and methods of science. Investigative research projects may be used in an attempt to reflect some aspects of science more authentically than other teaching and learning approaches, such as confirmatory…
Descriptors: Affordances, Research Projects, Student Projects, Science Education
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Dah, Norsyazwani Muhamad; Noor, Mohd Syafiq Aiman Mat; Kamarudin, Muhammad Zulfadhli; Ibrahim, Mohd Mokhzani – Asia-Pacific Science Education, 2023
This study developed the Investigable Questioning Formulation Technique (IQFT) protocol to formulate investigable questions by following the procedures of design-based research. As guiding heuristics, the protocol used two provisional design principles based on teaching experience and previous studies that have applied tools for formulating…
Descriptors: Foreign Countries, Secondary School Science, Secondary School Students, Questioning Techniques
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Cullinane, Alison; Hillier, Judith; Childs, Ann; Erduran, Sibel – Research in Science Education, 2023
This article utilizes a framework for classifying different scientific methods suggested by a philosopher of science (Brandon "Synthese," 99, 59-73, 1994) called Brandon's Matrix. It presents findings from teachers who took part in a funded project in England that looked at the nature of scientific methods in science investigations.…
Descriptors: Teacher Attitudes, Matrices, Science Instruction, Teaching Methods
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Priyanka Parekh; Joseph L. Polman; Shaun Kane; R. Benjamin Shapiro – Journal of the Learning Sciences, 2023
Background: Natureculture (Fuentes, 2010; Haraway, 2003) constructs offer a powerful framework for science education to explore learners' interactions with and understanding of the natural world. Technologies such as Augmented Reality (AR) designed to reveal pets' sensory worlds and companionship with pets can facilitate learners' harmonious…
Descriptors: Science Education, Caring, Inquiry, Summer Programs
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Chaonan Liu; Dayna L. Dreger; Shiyao Liu; Ala Samarapungavan; Stephanie M. Gardner; Kari L. Clase; Nancy Pelaez – Journal of Biological Education, 2024
Recent emphasis on learning biology through scientific investigations has focused instruction on understanding and using scientific evidence. To unpack the complexities of evidentiary reasoning, here we present a novel laboratory investigation for teaching the Hardy Weinberg Equilibrium (HWE) in an introductory biology laboratory course that was…
Descriptors: Science Education, Science Instruction, Teaching Methods, Science Process Skills
Robert Hayes – ProQuest LLC, 2023
As college biology educators we want students learning how to conduct their own scientific investigations. This means designing laboratory curricula in which students exercise control and responsibility over the knowledge building actions of an investigation--that is, in which they exercise "epistemic agency." Our current understanding…
Descriptors: College Freshmen, College Science, Science Education, Biology
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Clegg, Amanda; Collins, Karen – School Science Review, 2022
A pilot study, funded by the Gatsby Charitable Foundation, supported 10 secondary schools across England to plan and deliver open-ended investigative practical work within science curriculum time. This enabled all students to experience the benefits of investigative work, rather than just those attending extracurricular STEM enrichment activities.…
Descriptors: Foreign Countries, Secondary School Science, Science Education, Science Curriculum
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Paz, Giovanni Scataglia Botelho; Locatelli, Solange Wagner – International Baltic Symposium on Science and Technology Education, 2019
Practices that take into account youth and adult education (YAE) are still rare in the literature.The present work applied an investigative activity with YAE students from the last year of middle education, in the discipline of sciences, about the methods of construction of science and tests of variables. From the categorization of metacognitive…
Descriptors: Metacognition, Incidence, Adult Education, Investigations
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DeLisi, Jacqueline; Kook, Janna F.; Levy, Abigail Jurist; Fields, Erica; Winfield, Lukas – Journal of Research in Science Teaching, 2021
Science fairs have a long history in the United States and internationally. Their implementation varies greatly (Kook et al, 2020), yet few empirical studies have examined the outcomes of these experiences for student learning. Research indicates that authentic scientific inquiry that focus on students' agency in investigations can contribute to…
Descriptors: Science Fairs, Hands on Science, Active Learning, Inquiry
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Wang, Hsin-Hui; Wilson, Kimberley; VanRooy, Wilhelmina; Lin, Huann-shyang – Research in Science Education, 2023
Competencies for designing and evaluating scientific inquiries are a key emphasis in national curriculums worldwide and a focus of international large-scale assessment. Teachers globally are encouraged to provide learning opportunities for their students to explore and practice asking and conducting researchable questions. This study focused on…
Descriptors: Preservice Teachers, Elementary School Teachers, Teacher Competencies, Scientific Literacy
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Jones, Verity – Primary Science, 2018
In many schools following the National Curriculum for England the teaching of science has been overshadowed by the demands of literacy and numeracy, with the focus on statutory testing (SATs) and emphasis on national targets. This has often led to increasing concerns around teachers' subject knowledge, the sapping of teacher confidence and…
Descriptors: Science Education, Poetry, Scientific Methodology, Investigations
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Bellocchi, Alberto; Davis, James; Mills, Reece; Arthars, Natasha; Appanna, Subhashni – Teaching Science, 2022
Science curriculum and pedagogy offer ideal avenues for teaching young people the critical thinking skills they need to live in a post-truth world. Drawing on the theory of epistemic cognition, we present a selection of research-based pedagogies that have been shown to be effective in developing school students' understanding of knowledge and how…
Descriptors: Foreign Countries, Science Education, Science Instruction, Teaching Methods
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Burgin, Stephen Randall – International Journal of Science Education, 2020
Authenticity is a term that has become ubiquitous within the field of science education, particularly when it relates to the practices of science. These practices are a key feature of science education reform documents in the US. However, a common definition of just what makes for the authentic doing of science is hard to come by and certainly…
Descriptors: Authentic Learning, Active Learning, Inquiry, Science Teachers
Fila, Nicholas David – ProQuest LLC, 2017
Innovation has become an important phenomenon in engineering and engineering education. By developing novel, feasible, viable, and valued solutions to complex technical and human problems, engineers support the economic competitiveness of organizations, make a difference in the lives of users and other stakeholders, drive societal and scientific…
Descriptors: Phenomenology, Engineering Education, Educational Innovation, Engineering
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