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Ruiz, Michael J. – Physics Education, 2021
A spreadsheet plotting assignment of real-life data from a racecar is employed to help students master the relationships among speed, acceleration, and distance. The racecar application will capture the imagination and interest of the student. The data is obtained by reading speedometer values from a YouTube video for 40 s as a racecar accelerates…
Descriptors: Physics, Motion, Assignments, Spreadsheets
Sokolowski, Andrzej – Physics Education, 2019
This paper is a continuation of an earlier discussion in this journal about adhering to principles of mathematics while presenting function graphs in physics. As in the previous paper, the importance of the vertical line test was examined, this paper delves more in-depth, and it pinpoints a need for presenting graphs with a continuous rate of…
Descriptors: Graphs, Physics, Mathematics Education, Calculus
Fomunyam, Kehdinga George, Ed. – IntechOpen, 2020
Theorising STEM Education in the 21st Century is a book that captures the essence of Science, Technology, Engineering and Mathematics and the intricacies of STEM education in the contemporary society. It explores STEM as an interdisciplinary field as well as the individual disciplines that make up STEM. This ensures the field of STEM as a whole is…
Descriptors: STEM Education, Interdisciplinary Approach, Educational Theories, Cognitive Processes
Ng, Chiu-king – Physics Education, 2016
Instead of solving ordinary differential equations (ODEs), the damped simple harmonic motion (SHM) is surveyed qualitatively from basic mechanics and quantitatively by the instrumentality of a graph of velocity against displacement. In this way, the condition b ? [square root]4mk for the occurrence of the non-oscillating critical damping and…
Descriptors: Problem Solving, Calculus, Motion, Qualitative Research
Bollen, Laurens; De Cock, Mieke; Zuza, Kristina; Guisasola, Jenaro; van Kampen, Paul – Physical Review Physics Education Research, 2016
We have investigated whether and how a categorization of responses to questions on linear distance-time graphs, based on a study of Irish students enrolled in an algebra-based course, could be adopted and adapted to responses from students enrolled in calculus-based physics courses at universities in Flanders, Belgium (KU Leuven) and the Basque…
Descriptors: Mechanics (Physics), Motion, Graphs, Classification
Sadler, Philip M.; Garfield, Eliza N.; Tremblay, Alex; Sadler, Daniel J. – Physics Teacher, 2012
Those who come to Cambridge soon learn that the fastest route between Harvard and MIT is by the subway. For many students, this short ride is a quick and easy way to link physics and calculus. A simple, homemade accelerometer provides all the instrumentation necessary to produce accurate graphs of acceleration, velocity, and displacement position…
Descriptors: Physics, Mechanics (Physics), Motion, Calculus
Cory, Beth – Mathematics Teacher, 2010
National Council of Teachers of Mathematics' (NCTM's) (2000) Connections Standard states that students should "recognize and use connections among mathematical ideas; understand how mathematical ideas interconnect ...; [and] recognize and apply mathematics in contexts outside of mathematics" (p. 354). This article presents an in-depth…
Descriptors: Graphs, Physics, Calculus, Mathematics Instruction
Rabin, Jeffrey M. – Mathematics Teacher, 2008
This article presents a problem that can help high school students develop the concept of instantaneous velocity and connect it with the slope of a tangent line to the graph of position versus time. It also gives a method for determining the tangent line to the graph of a polynomial function at any point without using calculus. (Contains 1 figure.)
Descriptors: Mathematical Concepts, Calculus, Algebra, Physics
Farmaki, Vassiliki; Paschos, Theodorus – Educational Studies in Mathematics, 2007
The integration of history into educational practice can lead to the development of activities through the use of genetic "moments" in the history of mathematics. In the present paper, we utilize Oresme's genetic ideas--developed during the fourteenth century, including ideas on the velocity-time graphical representation as well as geometric…
Descriptors: Teaching Methods, Mathematical Models, Learning Activities, Geometric Concepts
Peer reviewedTylee, J. Louis – Mathematics Teacher, 1997
Presents two real world applications that use derivatives and are related to computing the distance required to stop an airplane. Examines the curve-fitting techniques used to develop an equation for braking force and develops equations for the deceleration and speed. (DDR)
Descriptors: Calculus, Classroom Techniques, Educational Strategies, Graphs
Peer reviewedBorlaug, Victoria A. – Mathematics Teacher, 1993
Discusses a classroom presentation using a Tonka toy truck's forward and backward motion that (1) develops a graphical representation of the truck's one-dimensional motion; (2) creates graphs representing constant velocity; (3) leads students to a definition of average velocity; and (4) introduces the concept of instantaneous velocity. (MDH)
Descriptors: Algebra, Calculus, Class Activities, Graphs
Hauger, Garnet Smith – 1997
Several studies have shown the difficulties students encounter in making sense of situations involving rate of change. This study concerns how students discover errors and refine their knowledge when working with rate of change. The part of the study reported here concerns the responses of four precalculus students to a task which asked them to…
Descriptors: Calculus, Error Correction, Graphs, Higher Education
Botzer, Galit; Yerushalmy, Michal – International Journal for Technology in Mathematics Education, 2006
This paper focuses on the cognitive processes that occur while students are exploring motion graphs. In a classroom experiment, we examine how high-school students (aged 17), with backgrounds in calculus and physics, interpret the graphs they create through drawing the path of the movement of their hand with a computer mouse. Based on recent, and…
Descriptors: Graphs, Physics, Motion, Cognitive Processes

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