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William D. Riihiluoma; Zeynep Topdemir; John R. Thompson – Physical Review Physics Education Research, 2024
One expected outcome of physics instruction is for students to be capable of relating physical concepts to multiple mathematical representations. In quantum mechanics (QM), students are asked to work across multiple symbolic notations, including some they have not previously encountered. To investigate student understanding of the relationships…
Descriptors: Quantum Mechanics, Mathematical Concepts, Knowledge Level, College Students
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William D. Riihiluoma; Zeynep Topdemir; John R. Thompson – Physical Review Physics Education Research, 2025
The ability to relate physical concepts and phenomena to multiple mathematical representations--and to move fluidly between these representations--is a critical outcome expected of physics instruction. In upper-division quantum mechanics, students must work with multiple symbolic notations, including some that they have not previously encountered.…
Descriptors: Undergraduate Students, College Faculty, Physics, Science Instruction
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Garimella, Umadevi; Sahin, Nesrin – Science Teacher, 2021
One way to develop a cross-curricular lesson is to select the most common mathematical formulas used in science and carefully develop and implement tasks that allow students to make connections between the mathematical representations and theoretical/physical science concepts. The slope-intercept formula, which is used to study relationships…
Descriptors: Science Instruction, Thermodynamics, Mathematical Formulas, Mathematical Concepts
Julian Drake Gifford – ProQuest LLC, 2021
The use and understanding of mathematics is a crucial component of the physical sciences. Much work has been done in physics education research and science education more broadly to determine persistent difficulties with mathematics. This work has led to the development of numerous problem solving strategies aimed at helping learners approach…
Descriptors: Physics, Science Instruction, Mathematics Skills, Mathematics Achievement
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Park, Eun-Jung; Choi, Kyunghee – International Journal of Science and Mathematics Education, 2013
In general, mathematical representations such as formulae, numbers, and graphs are the inseparable components in science used to better describe or explain scientific phenomena or knowledge. Regardless of their necessity and benefit, science seems to be difficult for some students, as a result of the mathematical representations and problem…
Descriptors: Scientific Concepts, Science Education, Science Interests, Mathematical Concepts
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Bajracharya, Rabindra R.; Thompson, John R. – Physical Review Physics Education Research, 2016
Problem solving, which often involves multiple steps, is an integral part of physics learning and teaching. Using the perspective of the epistemic game, we documented a specific game that is commonly pursued by students while solving mathematically based physics problems: the "analytical derivation" game. This game involves deriving an…
Descriptors: Mathematics, Epistemology, Games, Problem Solving
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Smith, William R.; Missen, Ronald W. – Journal of Chemical Education, 1989
Describes two easily applied mathematical theorems, Budan's rule and Rolle's theorem, that in addition to Descartes's rule of signs and intermediate-value theorem, are useful in chemical equilibrium. Provides examples that illustrate the use of all four theorems. Discusses limitations of the polynomial equation representation of chemical…
Descriptors: Chemical Equilibrium, Chemistry, College Science, Higher Education
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Science Teacher, 1989
Describes two software programs for the Apple II series and TRS-80 Models III and IV: (1) "Personal Energy Inventory" (grades 9-12, records and manages data, not considered user friendly); (2) "Energy Conservation" (grades 7-12, aids in converting and problem solving, uses drill and practice). (MVL)
Descriptors: Computer Software Reviews, Computer Uses in Education, Data Collection, Drills (Practice)