Publication Date
| In 2026 | 0 |
| Since 2025 | 0 |
| Since 2022 (last 5 years) | 0 |
| Since 2017 (last 10 years) | 1 |
| Since 2007 (last 20 years) | 1 |
Descriptor
| Mathematical Formulas | 7 |
| Mathematical Models | 7 |
| Physics | 7 |
| High Schools | 6 |
| Science Instruction | 6 |
| Postsecondary Education | 5 |
| Problem Solving | 5 |
| Science Education | 5 |
| Motion | 4 |
| Scientific Concepts | 3 |
| Algebra | 2 |
| More ▼ | |
Source
| Physics Teacher | 7 |
Author
| Blakeslee, Daryl | 1 |
| Craig, T. W. | 1 |
| Flynn, Robert W. | 1 |
| Hoffman, Dale T. | 1 |
| Kiang, D. | 1 |
| Patterson, Jim | 1 |
| Sokolowski, Andrzej | 1 |
| Walkiewicz, Thomas A. | 1 |
| de Villiers, Michael D. | 1 |
Publication Type
| Journal Articles | 7 |
| Guides - Classroom - Teacher | 5 |
| Computer Programs | 1 |
| Opinion Papers | 1 |
| Reports - Evaluative | 1 |
Education Level
Audience
| Practitioners | 5 |
| Teachers | 5 |
Location
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Sokolowski, Andrzej – Physics Teacher, 2019
Research identifies two domains by which mathematics allows learning physics concepts: a technical domain that includes algorithmic operations that lead to solving formulas for an unknown quantity and a structural domain that allows for applying mathematical knowledge for structuring physical phenomena. While the technical domain requires…
Descriptors: Physics, Science Instruction, Mathematics Skills, Scientific Concepts
Peer reviewedPatterson, Jim – Physics Teacher, 2000
While it is most often the case that an understanding of physics can simplify mathematical calculations, occasionally mathematical precision leads directly to a better physical understanding of a situation. Presents an example of a mechanics problem in which careful mathematical derivation can lead directly to a deeper physical understanding of…
Descriptors: High Schools, Higher Education, Mathematical Formulas, Mathematical Models
Peer reviewedHoffman, Dale T. – Physics Teacher, 1991
Discusses a misconception about the cycloid that asserts the final point on the path of shortest time in the "Brachistochrone" problem is at the lowest point on the cycloid. Uses a BASIC program for Newton's method to determine the correct least-time cycloid. (MDH)
Descriptors: High Schools, Mathematical Formulas, Mathematical Models, Misconceptions
Peer reviewedFlynn, Robert W. – Physics Teacher, 1991
Addresses the problem that students balk at the notion velocities do not add algebraically. Offers a geometric model to verify the algebraic formulas that calculate velocity addition. Representations include Galilean relativity, Einstein's composition of velocities, and the inverse velocity transformation. (MDH)
Descriptors: High Schools, Kinetics, Light, Mathematical Formulas
Peer reviewedBlakeslee, Daryl; Walkiewicz, Thomas A. – Physics Teacher, 1991
Presents a motion problem that students in a college physics class are asked to solve and later asked to continue to analyze until they have stopped learning from the problem or the problem itself is finished. (MDH)
Descriptors: Divergent Thinking, High Schools, Learning Processes, Mathematical Applications
Peer reviewedCraig, T. W.; Kiang, D. – Physics Teacher, 1991
Presents a problem to determine conditions under which two identical masses, constrained to move along two perpendicular wires, would collide when positioned on the wires and released with no initial velocity. Offers a solution that utilizes the position of the center of mass and a computer simulation of the phenomenon. (MDH)
Descriptors: Computer Simulation, Enrichment Activities, Force, Geometry
Peer reviewedde Villiers, Michael D. – Physics Teacher, 1991
Presents a simple mathematical model in which resultant speed is the sum or difference between wind speed and runner speed and a more complex model that assumes that only a proportion of the wind's speed affects one's running speed to describe the time difference between running with and without wind. (MDH)
Descriptors: Algebra, High Schools, Integrated Activities, Interdisciplinary Approach

Direct link
