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Avraham Merzel; Efraim Yehuda Weissman; Nadav Katz; Igal Galili – Physical Review Physics Education Research, 2024
Teaching quantum physics (QP) to high school (HS) students is gaining momentum, necessitating the exploration of various effective methods. Specifically, the research on quantitative teaching methods is still in its early stages. Understanding the power of Dirac notation (DN) in teaching is crucial for grasping the complexities of QP, as it…
Descriptors: High School Students, Secondary School Science, Science Education, Physics
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Livni-Alcasid, Gur A.; Haskel-Ittah, Michal; Yarden, Anat – Education Sciences, 2018
In genetics education, symbols are used for alleles to visualize them and to explain probabilities of progeny and inheritance paradigms. In this study, we identified symbol systems used in genetics textbooks and the justifications provided for changes in the symbol systems. Moreover, we wanted to understand how students justify the use of…
Descriptors: Genetics, Science Instruction, Grade 9, Problem Solving
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Mualem, Roni; Eylon, Bat Sheva – Journal of Research in Science Teaching, 2010
Students at the junior high school (JHS) level often cannot use their knowledge of physics for explaining and predicting phenomena. We claim that this difficulty stems from the fact that explanations are multi-step reasoning tasks, and students often lack the qualitative problem-solving strategies needed to guide them. This article describes a new…
Descriptors: Mechanics (Physics), Grade 9, Junior High Schools, Secondary School Science
Zoller, Uri – Online Submission, 2011
Given the current striving for "sustainability" and the corresponding paradigms shift in science, technology, R&D, environment perception, economy and politics; e.g., from unlimited growth-to-sustainable development, correction-to-prevention and passive consumption of "goods", culture and education--to active participation,…
Descriptors: Foreign Countries, Educational Strategies, Sustainable Development, Science Education
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Kolikant, Y. Ben-David; Mussai, M. – Computer Science Education, 2008
We studied students' conceptions of correctness and their influence on students' correctness-related practices by examining how 159 students had analyzed the correctness of error-free and erroneous algorithms and by interviewing seven students regarding their work. We found that students conceptualized program correctness as the sum of the…
Descriptors: Misconceptions, Computer Science Education, Science Instruction, Programming
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Tamir, P.; Glassman F. – Journal of Research in Science Teaching, 1971
Examples of scoring protocols, reliability data, and the relationship between components of a laboratory examination are reported. Differences between BSCS and non-BSCS biology students are examined. (AL)
Descriptors: Achievement, Biology, Laboratory Procedures, Problem Solving
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Dreyfus, A.; Jungwirth, E. – Science Education, 1980
Compares critical thinking ability of pupils in scientific situations and in real-life situations by administering multiple choice tests to Israeli ninth graders (N=344). Results confirm that students do not react similarly when confronted with equivalent situations presented in different contexts. (CS)
Descriptors: Critical Thinking, Logical Thinking, Problem Solving, Science Education
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Yerushalmi, Edit; Magen, Esther – Physics Education, 2006
Students frequently misconceive the process of problem-solving, expecting the linear process required for solving an exercise, rather than the convoluted search process required to solve a genuine problem. In this paper we present an activity designed to foster in students realization and appreciation of the nature of the problem-solving process,…
Descriptors: Problem Solving, Cognitive Processes, Learning Processes, Physics
Zohar, Anat; Tamir, Pinchas – 1991
This study describes the rationale and activities developed and tested by a project in Israel entitled Biology Critical Thinking (BCT). The BCT project aims at developing a pool of activities that can be incorporated within the regular course of study without investing too much extra time. The purposes of the study are: (1) to present the…
Descriptors: Biology, Critical Thinking, Curriculum Development, Decision Making
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Gorodetsky, Malka; And Others – Science Education, 1986
Describes a hierarchical system of problem-solving strategies employed for the solution of a specific kind of problem about speed. Presents the results of 563 high school students tested with problems relating to distance, speed, and time. Provides a rationale for the methods used. (TW)
Descriptors: Algebra, Cognitive Processes, Learning Strategies, Mathematics Education
International Association for Development of the Information Society, 2012
The IADIS CELDA 2012 Conference intention was to address the main issues concerned with evolving learning processes and supporting pedagogies and applications in the digital age. There had been advances in both cognitive psychology and computing that have affected the educational arena. The convergence of these two disciplines is increasing at a…
Descriptors: Academic Achievement, Academic Persistence, Academic Support Services, Access to Computers