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Carraher, Jack M.; Curry, Sarah M.; Tessonnier, Jean-Philippe – Journal of Chemical Education, 2016
Teaching complex chemistry concepts such as kinetics using inquiry-based learning techniques can be challenging in a high school classroom setting. Access to expensive laboratory equipment such as spectrometers is typically limited and most reaction kinetics experiments have been designed for advanced placement (AP) or first-year undergraduate…
Descriptors: High School Students, Secondary School Science, Hands on Science, Science Instruction
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Jenna Marks; Deena Bernett; Catherine C. Chase – International Journal of Designs for Learning, 2016
This design case describes the development of the Invention Coach, an intelligent exploratory learning environment (ELE) for the constructivist activity of Invention. The Invention Coach scaffolds students as they invent mathematical formulas to describe contrasting cases. In this paper, we detail our process and rationale for three key design…
Descriptors: Intelligent Tutoring Systems, Constructivism (Learning), Mathematics Instruction, Scaffolding (Teaching Technique)
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Mangiaracina, Mike – Science and Children, 2017
This 5E cycle of lessons takes students through a fun and thorough study of Silly Putty's properties, progressing from an initial observation of a "melting snowman" toy in the Engage phase to making and "marketing" their own homemade putty in the Evaluate phase. Along the way, students use evidence to construct their own…
Descriptors: Elementary School Students, Elementary School Science, Grade 2, Water
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Abrahamson, Dor; Kapur, Manu – Instructional Science: An International Journal of the Learning Sciences, 2018
Whereas some educational designers believe that students should learn new concepts through explorative problem solving within dedicated environments that constrain key parameters of their search and then support their progressive appropriation of empowering disciplinary forms, others are critical of the ultimate efficacy of this discovery-based…
Descriptors: Discovery Learning, Educational Research, Instructional Design, Educational Philosophy
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Flora; Raja, Patuan; Mahpul – International Journal of Education and Practice, 2020
This research aimed at finding out the students' writing language accuracy and their experience (perception) after learning how to use the integration of Think-Pair-Share (TPS) and Teacher's Corrective Feedback (TCF) within discovery learning strategy. A quantitative study in the form of pre-experimental design was conducted which involved 24…
Descriptors: Discovery Learning, Cooperative Learning, Teaching Methods, Second Language Learning
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Moli, Lemuel; Delserieys, Alice Pedregosa; Impedovo, Maria Antonietta; Castera, Jeremy – Education and Information Technologies, 2017
This paper presents a study on discovery learning of scientific concepts with the support of computer simulation. In particular, the paper will focus on the effect of the levels of guidance on students with a low degree of experience in informatics and educational technology. The first stage of this study was to identify the common misconceptions…
Descriptors: Computer Simulation, High School Students, Discovery Learning, Scientific Concepts
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Druckman, Daniel; Ebner, Noam – Journal of Management Education, 2018
Two approaches to the process of guided discovery learning are compared for their impacts on concept understanding. One, referred to as design, emphasizes invention and draws on the simulation literature. The other, referred to as case analysis, focuses on discovery and draws on the case-based reasoning literature. Following a lecture on four…
Descriptors: Discovery Learning, Administrator Education, Instructional Design, Case Method (Teaching Technique)
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van Schijndel, Tessa J. P.; Jansen, Brenda R. J.; Raijmakers, Maartje E. J. – International Journal of Science Education, 2018
This study investigates how individual differences in 7- to 9-year-olds' curiosity relate to the inquiry-learning process and outcomes in environments differing in structure. The focus on curiosity as individual differences variable was motivated by the importance of curiosity in science education, and uncertainty being central to both the…
Descriptors: Individual Differences, Personality Traits, Active Learning, Inquiry
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Morrissey, Dorothy – International Journal of Qualitative Studies in Education (QSE), 2014
In this inquiry, the author inquires into her shifting "self" as a researcher/teacher educator in teacher professional development. The "self" in question is acknowledged as being historically, culturally and locally specific. It is also acknowledged as unfixed or unstable; constructed from and in response to various, and often…
Descriptors: Foreign Countries, Teacher Researchers, Teacher Educators, Vignettes
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Mistry, Nimesh; Fitzpatrick, Christopher; Gorman, Stephen – Journal of Chemical Education, 2016
A guided-inquiry experiment was designed and implemented in an introductory organic chemistry laboratory course. Students were given a mixture of compounds and had to isolate two of the components by designing a viable workup procedure using liquid-liquid separation methods. Students were given the opportunity to apply their knowledge of chemical…
Descriptors: Introductory Courses, Science Instruction, Teaching Methods, Problem Solving
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Tompo, Basman; Ahmad, Arifin; Muris, Muris – International Journal of Environmental and Science Education, 2016
The main objective of this research was to develop discovery inquiry (DI) learning model to reduce the misconceptions of Science student level of secondary school that is valid, practical, and effective. This research was an R&D (research and development). The trials of discovery inquiry (DI) learning model were carried out in two different…
Descriptors: Discovery Learning, Inquiry, Active Learning, Misconceptions
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Ashbrook, Peggy – Science and Children, 2016
For young children, a found acorn, stone, or lichen-covered branch can be a touchstone of an experience in nature. Children, however, should also be taught to "leave no trace." As the National Park Service advocates, visitors to natural areas should "Preserve the sense of discovery for others by leaving all natural and cultural…
Descriptors: Young Children, Early Childhood Education, STEM Education, Art Education
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Stanford, Angela; Wilson, Connie; Barker, Emily – Science and Children, 2018
One plausible method for ensuring students are truly understanding science fundamentals beyond being actively and intellectually engaged is to consider how informal learning environments can provide meaningful relevancy by connecting to real-world instances. Transforming traditional science centers into informal learning centers will ensure that…
Descriptors: Science Teaching Centers, Science Education, Informal Education, Educational Change
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Cattaneo, Kelsey Hood – Journal of New Approaches in Educational Research, 2017
Designing learning environments to incorporate active learning pedagogies is difficult as definitions are often contested and intertwined. This article seeks to determine whether classification of active learning pedagogies (i.e., project-based, problem-based, inquiry-based, case-based, and discovery-based), through theoretical and practical…
Descriptors: Active Learning, Theory Practice Relationship, Student Projects, Problem Based Learning
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Ndemo, Zakaria; Zindi, Fred; Mtetwa, David – Journal of Curriculum and Teaching, 2017
This contribution aimed at developing an understanding of student teachers' conceptions of guided discovery teaching approaches. A cross-sectional survey design involving eleven secondary mathematics teachers who had enrolled for an in-service mathematics education degree was used to address the research question: What are undergraduate student…
Descriptors: Foreign Countries, Mathematics Teachers, Undergraduate Students, Student Teachers
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