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Serik Polatuly; Sherzod Ramankulov; Indira Usembayeva; Danakul Kazakhbayeva; Nurdaulet Shektibayev; Bakytzhan Kurbanbekov; Elmurat Dosymov – Cogent Education, 2024
The research study concentrates on the incorporation of case technology to augment the enhancement of research competencies among future physicists. The study scrutinizes the influence of case technology on students' research capabilities and their aptitude to apply theoretical knowledge to practical situations. The main objective was to identify…
Descriptors: Student Empowerment, Occupational Aspiration, Physics, Scientists
Warren, Clare – Primary Science, 2015
When the author took on the role of primary science advisory teacher at Centre for Industry Education Collaboration (CIEC) she thought it would be a really interesting role that would give her room to develop her skills as a teacher, but she had not appreciated just how powerful the links to industry can be for children. One example of how such an…
Descriptors: Elementary School Science, Science Instruction, Industry, School Business Relationship
Carson, Beverly – Science and Children, 2016
This article describes an interdisciplinary project that created awareness of female scientists in a public Montessori classroom. Every spring, the author's sixth-grade students write an educational play in which the entire class participates. Following an underwhelming response to asking students who are their favorite female scientists, the…
Descriptors: Science Instruction, Montessori Method, Scientific Concepts, Scientists
Gilbert, Amy V.; Johns, Katherine E. – Science and Children, 2014
In supporting students toward literacy, teachers must provide experiences that support the formation of informed understandings of the nature of science (NOS), as well as a structure for developing evidence-based explanations. In this article the authors describe how they guided their students through this learning cycle to answer the essential…
Descriptors: Grade 4, Elementary School Science, Elementary School Students, Science Instruction
Huber, Daniel; Jones, Leslie; Helminski, Christine – Australian Mathematics Teacher, 2015
The use of collaborative problem solving within mathematics education is imperative in this day and age of integrative science. The formation of interdisciplinary teams of mathematicians and scientists to investigate crucial problems is on the rise, as greater insight can be gained from an interdisciplinary perspective. Mathematical modelling, in…
Descriptors: Problem Solving, Mathematics, Mathematics Education, Mathematical Models
Caleon, I. S.; Wui, Ma. G. Lopez; Regaya, Ma. H. P. – Science Education International, 2015
The movement towards the use of the history of science and problem-based approaches in teaching serves as the impetus for this paper. This treatise aims to present and examine episodes in the lives of prominent scientists that can be used as resources by teachers in relation to enhancing students' interest in learning, fostering skills about…
Descriptors: Beliefs, Problem Based Learning, Science Education History, Scientists
Seker, Hayati; Guney, Burcu G. – Science & Education, 2012
Although history of science is a potential resource for instructional materials, teachers do not have a tendency to use historical materials in their lessons. Studies showed that instructional materials should be adaptable and consistent with curriculum. This study purports to examine the alignment between history of science and the curriculum in…
Descriptors: Science History, Physics, Instructional Materials, Content Analysis
Herman, Geoffrey L.; Loui, Michael C.; Kaczmarczyk, Lisa; Zilles, Craig – ACM Transactions on Computing Education, 2012
The ability to reason with formal logic is a foundational skill for computer scientists and computer engineers that scaffolds the abilities to design, debug, and optimize. By interviewing students about their understanding of propositional logic and their ability to translate from English specifications to Boolean expressions, we characterized…
Descriptors: Interviews, Logical Thinking, Computer Science, Scientists
Hong, Huang-Yao; Lin-Siegler, Xiaodong – Journal of Educational Psychology, 2012
How does learning about scientists' struggles during their scientific knowledge building affect students' science learning? Two hundred and seventy-one high school students were randomly assigned to 1 of 3 conditions: (a) the struggle-oriented background information (n = 90) condition, which presented students with stories about 3 scientists'…
Descriptors: Foreign Countries, High School Students, Grade 10, Physics
Tweney, Ryan D. – Science & Education, 2011
James Clerk Maxwell "translated" Michael Faraday's experimentally-based field theory into the mathematical representation now known as "Maxwell's Equations." Working with a variety of mathematical representations and physical models Maxwell extended the reach of Faraday's theory and brought it into consistency with other…
Descriptors: Foreign Countries, Physics, Long Term Memory, Equations (Mathematics)
Pruneau, Diane; Freiman, Viktor; Barbier, Pierre-Yves; Langis, Joanne – Applied Environmental Education and Communication, 2009
Grade 3 students were asked to solve a sedimentation problem in a local river. With scientists, students explored many aspects of the problem and proposed solutions. Graphic representation tools were used to help students to better pose the problem. Using questionnaires and interviews, researchers observed students' capacity to pose the problem…
Descriptors: Problem Solving, Grade 3, Scientific Concepts, Scientists
Mesmer, Karen – Science Scope, 2006
Genetics is often a fascinating but difficult subject for middle level students. They can see the results of genes in every organism, but trying to visualize what happens at the level of genes is challenging for concrete thinkers. The author discusses an approach that helps students understand how genotypes can translate into phenotypes, then…
Descriptors: Genetics, Science Activities, Mathematics Instruction, Science Instruction
Peer reviewedHackling, Mark W.; Lawrence, Jeanette A. – Journal of Research in Science Teaching, 1988
Compares experts', advanced students', and novice students' use of genetics knowledge to generate and test hypotheses while solving genetic pedigree problems. Reports that experts identified more critical cues, tested more hypotheses, were more rigorous in the falsification of alternative hypotheses, and were more flexible to their solving…
Descriptors: College Science, Genetics, Higher Education, Hypothesis Testing
Peer reviewedKoss, Jordan; Hartt, Kenneth – Physics Teacher, 1988
Answers a student's question about the emission of a positron from a nucleus. Discusses the problem from the aspects of the uncertainty principle, beta decay, the Fermi Theory, and modern physics. (YP)
Descriptors: Atomic Structure, Nuclear Physics, Physics, Problem Solving
Clement, John – 1988
Some central issues in discussions of creative processes in science are: (1) the mechanism(s) by which hypothesis formation takes place; (2) the sources of new knowledge during hypothesis formation; and (3) the "Eureka" versus steady accumulation (accretion) issue concerning the pace of change during hypothesis formation. This paper…
Descriptors: Cognitive Processes, Creative Thinking, Hypothesis Testing, Models
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