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Hassi, Marja-Liisa; Laursen, Sandra L. – Journal of Transformative Education, 2015
This article introduces the concept of personal empowerment as a form of transformative learning. It focuses on commonly ignored but enhancing elements of mathematics learning and argues that crucial personal resources can be essentially promoted by high engagement in mathematical problem solving, inquiry, and collaboration. This personal…
Descriptors: Transformative Learning, Student Empowerment, Mathematics Education, Semi Structured Interviews
Rodríguez-Arteche, In~igo; Martínez-Aznar, M. Mercedes – Journal of Chemical Education, 2016
In this paper, the characteristics of an initial training program for secondary school physics and chemistry teachers are presented. This program is based on the resolution of professional problems, in order to develop preservice teachers' competencies for integrating inquiry-based science education (IBSE) into their future teaching. With this…
Descriptors: Inquiry, Secondary School Teachers, Science Instruction, Physics
Dejonckheere, Peter J. N.; De Wit, Nele; Van de Keere, Kristof; Vervaet, Stephanie – International Electronic Journal of Elementary Education, 2016
This study tested and integrated the effects of an inquiry-based didactic method for preschool science in a real practical classroom setting. Four preschool classrooms participated in the experiment (N= 57) and the children were 4-6 years old. In order to assess children's attention for causal events and their understanding at the level of…
Descriptors: Science Instruction, Early Childhood Education, Inquiry, Teaching Methods
Leikin, Roza; Grossman, Dorith – Educational Studies in Mathematics, 2013
We explored transformations that teachers made to modify geometry proof problems into investigation problems and analyzed how these transformations differ in teachers who use a dynamic geometry environment (DGE) in their classes and those who do not. We devised a framework for the analysis of problem transformations and types of teacher-generated…
Descriptors: Geometry, Mathematics Instruction, Validity, Mathematical Logic
Roesch, Frank; Nerb, Josef; Riess, Werner – International Journal of Science Education, 2015
Our study investigated whether problem-oriented designed ecology lessons with phases of direct instruction and of open experimentation foster the development of cross-domain and domain-specific components of "experimental problem-solving ability" better than conventional lessons in science. We used a paper-and-pencil test to assess…
Descriptors: Foreign Countries, Problem Solving, Middle School Students, Grade 6
Ozverir, Ildeniz; Osam, Ulker Vanci; Herrington, Jan – Educational Technology & Society, 2017
Achieving communicative competency in English classes has been a key goal in contexts where English is taught as a foreign language (EFL). During this process, however, integrating the difficulty and complexity of real life tasks into classroom teaching has often been disregarded. Lack of opportunities for authentic language use often results in…
Descriptors: Second Language Learning, English (Second Language), Second Language Instruction, Communicative Competence (Languages)
Wilson, David; Cope, Bill; Peters, Michael A. – Policy Futures in Education, 2012
This reproduces, for fun, a conversation between three professors at the University of Illinois, that originated at a dinner party over a couple of bottles of good red wine.
Descriptors: Postmodernism, Ethics, Logical Thinking, Convergent Thinking
Cross Francis, Dionne I.; Hudson, Rick A.; Lee, Mi Yeon; Rapacki, Lauren; Vesperman, Crystal Marie – Teaching Children Mathematics, 2014
Statistical literacy is essential in everyone's personal lives as consumers, citizens, and professionals. To make informed life and professional decisions, students are required to read, understand, and interpret vast amounts of information, much of which is quantitative. To develop statistical literacy so students are able to make sense of…
Descriptors: Mathematics Instruction, Statistics, Mathematical Logic, Problem Solving
Piunno, Paul A. E.; Boyd, Cleo; Barzda, Virginijus; Gradinaru, Claudiu C.; Krull, Ulrich J.; Stefanovic, Sasa; Stewart, Bryan – Journal of Chemical Education, 2014
The advanced interdisciplinary research laboratory (AIRLab) represents a novel, effective, and motivational course designed from the interdisciplinary research interests of chemistry, physics, biology, and education development faculty members as an alternative to the independent thesis project experience. Student teams are assembled to work…
Descriptors: Science Instruction, Science Laboratories, Teaching Methods, Chemistry
Kösem, Sule Dönertas; Özdemir, Ömer Faruk – Science & Education, 2014
This study describes the possible variations of thought experiments in terms of their nature, purpose, and reasoning resources adopted during the solution of conceptual physics problems. A phenomenographic research approach was adopted for this study. Three groups of participants with varying levels of physics knowledge--low, medium, and high…
Descriptors: Physics, Science Instruction, Phenomenology, Problem Solving
Herczog, Michelle M. – Social Education, 2014
The College, Career, and Civic Life (C3) Framework for Social Studies State Standards calls upon social studies teachers to enhance the rigor of civics, economics, geography, history and the other social studies disciplines while building the critical thinking, problem solving, and participatory skills of students to help them become actively…
Descriptors: Social Studies, State Standards, Critical Thinking, Problem Solving
Miller, Bridget; Doughty, Teresa; Krockover, Gerald – Education and Training in Autism and Developmental Disabilities, 2015
This study investigated the use of guided science inquiry methods with self-monitoring checklists to support problem-solving for students and increased autonomy during science instruction for students with moderate intellectual disability. Three students with moderate intellectual disability were supported in not only accessing the general…
Descriptors: Science Education, Problem Solving, Standards, Science Activities
Ardasheva, Yuliya; Norton-Meier, Lori; Hand, Brian – Studies in Science Education, 2015
In this review, we explore the notion of teaching science to English language learners (ELLs) as a balancing act between simultaneously focusing on language and content development, on the one hand, and between structuring instruction and focusing on student learning processes, on the other hand. This exploration is conducted through the lens of a…
Descriptors: Science Instruction, English Language Learners, Teaching Methods, Heuristics
Gillies, Robyn M.; Carroll, Annemaree; Cunnington, Ross; Rafter, Mary; Palghat, Kelsey; Bednark, Jeff; Bourgeois, Amanda – Australian Journal of Education, 2016
Teaching students to use and interpret different representational tools is critically important if they are to be scientifically literate, to understand how scientific ideas and concepts are represented and to appreciate how scientists think and act. Moreover, students not only need to be competent at using and explaining representations and…
Descriptors: Foreign Countries, Inquiry, Problem Solving, Science Process Skills
Kurth, Laurie L.; Kurth, Mark J. – Journal of Chemical Education, 2014
Organic chemistry problems that interrelate and integrate synthesis with spectroscopy are presented. These synthesis-spectroscopy roadmap (SSR) problems uniquely engage second-year undergraduate organic chemistry students in the personal discovery of organic chemistry. SSR problems counter the memorize-or-bust strategy that many students tend to…
Descriptors: Spectroscopy, Synthesis, Organic Chemistry, Integrated Activities

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