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Thomas, Gregory P.; Chantharanuwong, Warawan – International Journal of Educational Methodology, 2022
The purpose of this study was to establish the factor structure and dimensionality of the Metacognitive Orientation Learning Environment Scale -- Science (MOLES-S) in the Thai context. The metacognitive orientation of a science classroom learning environment is defined as the extent to which psychosocial conditions that are known to enhance…
Descriptors: Foreign Countries, Factor Structure, Science Instruction, Teaching Methods
Thomas, Gregory P. – Chemistry Education Research and Practice, 2017
Concerns persist regarding high school students' chemistry learning. Learning chemistry is challenging because of chemistry's innate complexity and the need for students to construct associations between different, yet related representations of matter and its changes. Students should be taught to reason about and consider chemical phenomena using…
Descriptors: Science Instruction, Chemistry, Metacognition, Language Usage
Thomas, Gregory P.; McRobbie, Campbell J. – Journal of Science Education and Technology, 2013
Concerns regarding students' learning and reasoning in chemistry classrooms are well documented. Students' reasoning in chemistry should be characterized by conscious consideration of chemical phenomenon from laboratory work at macroscopic, molecular/sub-micro and symbolic levels. Further, students should develop metacognition in relation to such…
Descriptors: Science Instruction, Science Teachers, Secondary School Science, Science Experiments
Thomas, Gregory P.; Anderson, David – Learning Environments Research, 2014
Concerns persist regarding science classroom learning environments and the lack of development of students' metacognition and reasoning processes within such environments. Means of shaping learning environments so that students are encouraged to develop their metacognition are required in order to enhance students' reasoning and…
Descriptors: Metacognition, Chemistry, Science Instruction, Thinking Skills
Thomas, Gregory P. – International Journal of Science Education, 2013
Problems persist with physics learning in relation to students' understanding and use of representations for making sense of physics concepts. Further, students' views of physics learning and their physics learning processes have been predominantly found to reflect a "surface" approach to learning that focuses on mathematical aspects of…
Descriptors: Physics, Metacognition, Science Instruction, Scientific Concepts
Anderson, David; Nashon, Samson M.; Thomas, Gregory P. – Research in Science Education, 2009
This paper reports on the development, self-critique and evolution of research methods for interpreting and understanding students' metacognition that were developed through the Metacognition and Reflective Inquiry (MRI) collaborative study. The MRI collaborative was a multi-year, multi-case, research study that investigated the elusive nature and…
Descriptors: Research Methodology, Metacognition, Case Studies, High School Students
Anderson, David; Thomas, Gregory P.; Nashon, Samson M. – Science Education, 2009
This paper reports on a study that employed metacognition and social cognition theoretical frameworks to explore and interpret students' views of their cognitive roles and the nature of the mechanisms that they considered influenced and mediated their learning within small group contexts. An instrumental interpretive case study methodology was…
Descriptors: Foreign Countries, Metacognition, Social Cognition, Biology

Thomas, Gregory P.; McRobbie, Campbell J. – International Journal of Science Education, 1999
Investigated students' metaphors for themselves as learners in an 11th-grade chemistry classroom. Discovered that students' metaphors were congruent with their views of learning and learning processes as evidenced by multiple data sources. Argues that students' metaphors can provide valuable information for practicing teachers and researchers who…
Descriptors: Chemistry, Foreign Countries, Grade 11, High Schools