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Mirjam Ndaimehafo Asilevi; Sirpa Kärkkäinen; Kari Sormunen; Sari Havu-Nuutinen – International Journal of Education in Mathematics, Science and Technology, 2024
This paper describes and compares primary school students' perceptions of science learning skills in a teacher-centered approach (TCA) and in inquiry-based science fieldwork (IBSF). This comparison was prompted by primary school students' perceptions of science learning skills, which has recently gained momentum, and the Namibian primary schools'…
Descriptors: Foreign Countries, Science Education, Elementary School Students, Science Process Skills
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Park, Eunju; Ha, Minsu – Asia-Pacific Science Education, 2022
To effectively employ inquiry-based learning to enhance students' inquiry practices and encourage them to think and act like scientists, science teachers must have a deeper understanding of the factors that influence scientific research and attitudes about scientist practice. This research contains the experience of two postdoctoral researchers in…
Descriptors: Scientific Research, Scientific Attitudes, Ambiguity (Context), Doctoral Students
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Tornee, Niwat; Bunterm, Tassanee; Lee, Kerry; Muchimapura, Supaporn – Pedagogies: An International Journal, 2019
The purpose of this study was to examine the effectiveness of traditional versus guided inquiry (with problem-solving process and cognitive function training) on high school chemistry knowledge, science process skills, scientific attitudes, and problem-solving competency. Two classes of students were recruited from three classes of Grade 11…
Descriptors: Foreign Countries, High School Students, Secondary School Science, Chemistry
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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
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Allen, J. B.; And Others – Journal of Chemical Education, 1986
Advocates the use of discovery or guided inquiry experiments for developing critical thinking in problem solving. Provides a stepwise method for creating inquiry experiments and provides an example by comparing the two methods for a freezing point experiment. (JM)
Descriptors: Chemistry, College Science, Critical Thinking, Discovery Learning
Stahl, Robert J.; Ring, Mary – 1973
The ideas and theories of Immanuel Velikovsky are introduced to social studies teachers and a nine-week minicourse designed to investigate his theories is reported. The contradictions and inconsistencies that Velikovsky found between the events as recorded in original records of the ancient Middle East and the chronological timetable of this…
Descriptors: Ancient History, Course Objectives, Critical Thinking, Historical Criticism
Torbert, William R. – 1981
Educational research has thus far failed to greatly improve education because it is based on a model of reality that emphasizes unilateral control in both research and practice. Efforts to gain unilateral control presume that researchers or practitioners know what is significant from the outset, that they are essentially outside the situation they…
Descriptors: Cooperation, Discovery Learning, Educational Improvement, Educational Practices
Education Development Center, Inc., Newton, MA. – 1975
Increasing interdisciplinary learning in high school by basing curriculum on problem solving is the topic of this book. It is based on the proceedings of a conference held in Estes Park, Colorado, January 2-14, 1973. The major objective of the problem-solving approach is to increase individuals' skills in making decisions that will affect their…
Descriptors: Achievement Tests, Adolescents, Conference Reports, Curriculum Development