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Hull, Michael M.; Jansky, Alexandra; Hopf, Martin – Studies in Science Education, 2021
In this literature review, we survey student naïve ideas (frequently referred to as 'misconceptions') that plausibly relate, at least in part, to difficulty in understanding probability. We collected diverse naïve ideas from a range of topics in physics: Non-linear Dynamics; Cosmology; Thermal Physics; Atomic, Nuclear, and Particle Physics;…
Descriptors: Probability, Science Instruction, Physics, Misconceptions
Nita, Laurentiu; Mazzoli Smith, Laura; Chancellor, Nicholas; Cramman, Helen – Research in Science & Technological Education, 2023
Background: Knowledge of quantum computing is arguably inaccessible to many, with knowledge of the complex mathematics involving a particular barrier to entry, creating difficulty in terms of teaching and inclusive learning for those without a high level of mathematics. Meanwhile, it is increasingly important that the knowledge of quantum…
Descriptors: Quantum Mechanics, Physics, Science Instruction, Interdisciplinary Approach
Neidorf, Teresa; Arora, Alka; Erberber, Ebru; Tsokodayi, Yemurai; Mai, Thanh – International Association for the Evaluation of Educational Achievement, 2020
The International Association for the Evaluation of Educational Achievement (IEA) Research for Education series represents a further effort by IEA to capitalize on it's unique datasets, so as to provide powerful information for policymakers and researchers. Each report focuses on a specific topic and is produced by a dedicated team of leading…
Descriptors: Misconceptions, Mathematical Concepts, Scientific Concepts, Mathematics Instruction
Krause, Eduard; Dilling, Frederik; Kraus, Simon Friedrich; Chi, Nguyen Phuong; Chat, Tran Ngoc; Van Bien, Nguyen – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This article presents a possible framework for the cooperation of mathematics and physics education research domains. Moreover, the potential topics for such a scientific collaboration are explained by means of a structuring qualitative content analysis of current handbooks and conference proceedings in Germany and Vietnam. These topics can form a…
Descriptors: Interdisciplinary Approach, Mathematics Education, Physics, Educational Research
Triantafillou, Chrissavgi; Spiliotopoulou, Vasiliki; Potari, Despina – North American Chapter of the International Group for the Psychology of Mathematics Education, 2014
This study aims to explore how undergraduate students in mathematics and engineering professions make sense out of graphs representing periodic and repeated but non-periodic motions. In this study, making sense out of graphs means interpreting graphical features and describing a situation that could be represented by them. The data was collected…
Descriptors: Undergraduate Students, Graphs, Motion, Mathematics Education
West, John B. – Advances in Physiology Education, 2008
The mechanics of breathing has always been a difficult topic for some medical and graduate students. The subject is very quantitative and contains a number of concepts that some students have trouble with, including physical principles such as pressure, flow, volume, resistance, elasticity, and compliance. Apparently, present-day students find the…
Descriptors: Graduate Students, Mathematical Models, Molecular Biology, Misconceptions

Aubrecht, Gordon J., II – School Science and Mathematics, 2004
Many years ago, Arons pointed out the incomprehension science students exhibit of the basic mathematical operations multiplication and division and the need to address the problem in physics classes to assure student understanding of the physical world. McDermott et al.'s Physics by Inquiry program does address this need directly and in detail (by…
Descriptors: Physics, Science Instruction, Science Teachers, Teacher Education

Brown, Nathan – Physics Teacher, 1993
Discusses the teaching of vectors and the inadequate and inappropriate examples given in many textbooks. Suggests using the motion of a sailboat or the motion of a car moving on the Earth's surface as possible examples. Details a proper vector teaching example. (MVL)
Descriptors: Force, Higher Education, Mathematical Concepts, Misconceptions

Lombardi, Olimpia – Science and Education, 1999
In science teaching, Aristotelian physics is often presented in a fragmentary and oversimplified way which distorts the true meaning of Aristotelian concepts. Discusses some mistakes that originate from a partial reading of Aristotle's work. Contains 32 references. (Author/WRM)
Descriptors: Astronomy, Concept Formation, Higher Education, Mathematical Concepts