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Hicks, Marianne; Tham, Melissa; Brookes, Rowan – British Journal of Educational Technology, 2017
e-learning practitioners have long recognised the benefits of using online training to achieve knowledge transfer, less is understood about facilitating the sharing of values, attitudes, critical thinking, and localisation using online platforms. In this article an online learning platform in the context of an international scientific program was…
Descriptors: International Education, Science Programs, Electronic Learning, Critical Thinking
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Oliver, Mary; Venville, Grady – Research in Science Education, 2017
"Thinking Science" is a 2-year program of professional development for teachers and thinking lessons for students in junior high school science classes. This paper presents research on the effects of "Thinking Science" on students' levels of cognition in Australia. The research is timely, with a general capability focused on…
Descriptors: Foreign Countries, Secondary School Teachers, Junior High School Students, Faculty Development
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Chun, Man-Seog; Kang, Kwang Il; Kim, Young H.; Kim, Young Mee – Universal Journal of Educational Research, 2015
This case study aims to verify the benefits of theme-based project learning for convergent science experiments. The study explores the possibilities of enhancing creative, integrated and collaborative teaching and learning abilities in science-gifted education. A convergent project-based science experiment program of physics, chemistry and biology…
Descriptors: Student Projects, Active Learning, Science Experiments, Thematic Approach
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Jones, Alister; Buntting, Cathy; Hipkins, Rose; McKim, Anne; Conner, Lindsey; Saunders, Kathy – Research in Science Education, 2012
Futures thinking involves a structured exploration into how society and its physical and cultural environment could be shaped in the future. In science education, an exploration of socio-scientific issues offers significant scope for including such futures thinking. Arguments for doing so include increasing student engagement, developing students'…
Descriptors: Learner Engagement, Critical Thinking, Cultural Context, Thinking Skills
Longo, Christopher M. – ProQuest LLC, 2012
This study investigated the impact of an inquiry-based science program on the critical thinking skills, science process skills, creativity, and science fair achievement of middle school students. Although research indicates the connection between inquiry and achievement, there is limited empirical research relating specific inquiry-based programs…
Descriptors: Middle School Students, Secondary School Science, Grade 7, Grade 8
McAda, Harleen W.; Hedley, Carolyn Neal – Sci Educ, 1969
Descriptors: Comprehension, Critical Thinking, Instruction, Instructional Materials
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Denniston, Erin – Science and Children, 2002
Recommends the use of puzzles to help elementary school children sharpen their problem solving skills. Describes the use of a Puzzle Day to promote problem solving. (DDR)
Descriptors: Concept Formation, Critical Thinking, Educational Games, Elementary Education
Repa, J. Theodore; Miller, LaMar P. – 1990
More than half the minority group students who completed the 1988/89 Science and Technology Entry Program (STEP) at Manhattanville College (New York) scored in the 90-95 percentile on tests of critical thinking, suggesting ability to do well in mathematics, science, and other studies. STEP comprises the following goals: (1) enable students to…
Descriptors: Black Students, College Preparation, Conferences, Critical Thinking
Rhoton, Jack, Ed.; Bowers, Patricia, Ed. – 2001
This book focuses on the professional development of teachers and discusses issues related to science education reform. The content of the book is divided into two parts. Part 1, Professional Development: Implications for Science Leadership, chapters include: (1) "The Role of the Science Leader in Implementing Standards-Based Science Programs"…
Descriptors: Critical Thinking, Diversity (Student), Educational Change, Elementary Secondary Education
Muller, Carol B.; Collier, John P. – 1995
This paper describes a program sponsored by Dartmouth's Thayer School of Engineering for high school science and mathematics teachers that includes an intensive summer workshop, post-workshop consultation and communication with the Thayer School staff and other past participants, and materials development. The program offers teachers a framework…
Descriptors: Communication Skills, Course Content, Critical Thinking, Educational Change