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Osman, Ali; Kriek, Jeanne – African Journal of Research in Mathematics, Science and Technology Education, 2021
Problem-based learning (PBL) is considered to be an effective teaching and learning strategy as it leads to longer retention of concepts learnt, improves problem-solving skills and enhances critical thinking. However, teachers often find it difficult to implement as they do not receive guidance during their initial training. A professional…
Descriptors: Science Teachers, High School Teachers, Physical Sciences, Problem Based Learning
Abushkin, Haris K. H.; Kharitonova, Anna A.; Khvastunov, Nikolay N.; Gorshunov, Maksim V. – Cypriot Journal of Educational Sciences, 2018
Problem-based learning is one of the promising innovative technologies for the educational process in the school. The study is based on system-activity and technological approaches. The study was based on the survey, which was attended by 185 teachers of physics, mathematics and computer science at general education schools of Mordovia. This…
Descriptors: Problem Based Learning, Secondary School Teachers, Secondary School Students, Problem Solving
Karakas, Aytaç; Bag, Hüseyin – Online Submission, 2017
Taking into account the Science, Technology, Engineering, Mathematics (STEM) integration, it is important to investigate teachers' understandings, perceptions about STEM and how STEM practices should be incorporated into the classroom in order to explore the perceptions of science teachers on this subject and provide important information to…
Descriptors: Science Teachers, Teacher Attitudes, Classroom Techniques, STEM Education
Qureshi, Sheila; Bradley, Katherine; Vishnumolakala, Venkat Rao; Treagust, David F.; Southam, Daniel C.; Mocerino, Mauro; Ojeil, Joseph – Science Education International, 2016
The Qatari government has made significant changes in the organization and staffing of schools over the past decade in an effort to improve the academic performance of school-aged citizens. Of interest is the need to encourage teachers to move from a didactic teacher-led mode of instruction to one that is more student-centred, but also…
Descriptors: Educational Change, Student Centered Learning, Critical Thinking, College Science
Bellová, Renata; Melichercíková, Danica; Tomcík, Peter – Research in Science & Technological Education, 2018
Background: The results of international studies have concluded the low level of science literacy in natural science subjects of Slovak students. These studies also showed that this state can be positively influenced by various innovations, which are implemented into the teaching process of above-mentioned subjects. Purpose: The aim of this study…
Descriptors: Foreign Countries, Scientific Literacy, Natural Sciences, Secondary School Students
Siegel, Marcelle A. – Journal of Science Education and Technology, 2012
While a body of research exists on individual metacognition, research on reflective communities is just beginning. This study generated a framework for conceptualizing metacognition in groups by describing likely components of group metacognition. I focused on a group of five preservice science teachers engaged in problem-based learning (PBL). The…
Descriptors: Expertise, Video Technology, Education Courses, Group Discussion

Singletary, James R. – Science Teacher, 2000
Uses a hypothetical ecology problem in which students need to apply problem based learning for a town government. Explains how to evaluate student results. (YDS)
Descriptors: Ecology, Evaluation, Inquiry, Internet
Field, Patrick – Journal of College Science Teaching, 2006
The National Inquiry Standard for Science Education Preparation requires science teachers to introduce students to scientific inquiry to solve problems by various methods, including active learning in a collaborative environment. In order for science teachers to comply with this inquiry standard, activities must be designed for students to…
Descriptors: Teaching Methods, Science Teachers, Problem Based Learning, Physiology

Jones-Wilson, T. Michelle – Journal of College Science Teaching, 2005
In traditional science teaching, teachers expect the average student to implicitly learn and apply subtle concepts and to connect seemingly disjointed information. Teachers expect them to actively assemble the building blocks of critical thinking, often without example (Meyers 1986). The critical analysis of issues and problems is second nature to…
Descriptors: Course Content, Problem Solving, Teaching Methods, Science Instruction