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Wong, Kin Son; Wong, Hang – Physics Teacher, 2022
The law of conservation of momentum is a fundamental law of nature. It states that the momentum of an isolated system is conserved. In high school or introductory-level physics courses, for simplicity, teachers and textbooks always use collisions in one dimension as the examples to introduce the concept of conservation of momentum. To solve simple…
Descriptors: Scientific Principles, Kinetics, Motion, Scientific Concepts
Mungan, Carl E. – Physics Teacher, 2021
A common homework problem in many introductory physics courses is similar to the following. "A car drives at constant speed over a hill on a road in the shape of a vertical circular arc. What is the maximum speed the car can have and not lose contact with the road at the crest of the hill?" Unfortunately this problem is flawed, because…
Descriptors: Homework, Introductory Courses, Motion, Problem Solving
Joseph, Toby – Physics Education, 2021
Problems involving rotating systems analysed from an inertial frame, without invoking fictitious forces, is something that freshman students find difficult to understand in an introductory mechanics course. In this article we try to see what could be the factors that lead to this difficulty and propose a set of arguments that could be used to…
Descriptors: Mechanics (Physics), Motion, Scientific Concepts, Introductory Courses
Geske, Matthew – Physics Teacher, 2019
Many introductory physics courses begin with the teaching of motion and kinematics. This naturally leads to the use of constant acceleration equations to solve various problems involving common motions (free fall being a notable example). Students can sometimes get the impression that these equations are the only thing they need to remember in…
Descriptors: Physics, Science Instruction, Scientific Concepts, Introductory Courses
Frank, Brian W. – Physics Teacher, 2018
The goal of this paper is to illustrate different ways that cardsorting activities (or "card stacks") can be implemented in the introductory physics classroom, along with various tips and resources for getting started. My first attempt at developing a card stack came about from simply wanting to try out a fun way to change student…
Descriptors: Task Analysis, Problem Sets, Introductory Courses, Physics
Milbourne, Jeff; Lim, Halson – Physics Teacher, 2015
The velocity selector is a classic first-year physics problem that demonstrates the influence of perpendicular electric and magnetic fields on a charged particle. Traditionally textbooks introduce this problem in the context of balanced forces, often asking for field strengths that would allow a charged particle, with a specific target velocity,…
Descriptors: Motion, Physics, Science Instruction, Introductory Courses
Rebilas, Krzysztof – Physics Teacher, 2013
Consider a skier who goes down a takeoff ramp, attains a speed "V", and jumps, attempting to land as far as possible down the hill below (Fig. 1). At the moment of takeoff the angle between the skier's velocity and the horizontal is [alpha]. What is the optimal angle [alpha] that makes the jump the longest possible for the fixed magnitude of the…
Descriptors: Problem Solving, Motion, Science Instruction, Introductory Courses
Rave, Matthew; Sayers, Marcus – Physics Teacher, 2013
The following kinematics problem was given to several students as a project in conjunction with a first-semester calculus-based physics course. The students were asked to keep a journal of all their work and were encouraged to keep even their scrap paper. The goal of the project was to expose the students to the process of doing theoretical…
Descriptors: Science Instruction, Physics, Introductory Courses, Calculus
Gates, Joshua – Physics Teacher, 2014
Newton's second law is one of the cornerstones of the introductory physics curriculum, but it can still trouble a large number of students well after its introduction, hobbling their ability to apply the concept to problem solving and to related concepts, such as momentum, circular motion, and orbits. While there are several possibilities for…
Descriptors: Science Experiments, Scientific Principles, Scientific Concepts, Science Education
Berge, Maria; Weilenmann, Alexandra – European Journal of Engineering Education, 2014
In educational research, it is well-known that collaborative work on core conceptual issues in physics leads to significant improvements in students' conceptual understanding. In this paper, we explore collaborative learning in action, adding to previous research in engineering education with a specific focus on the students' use of free body…
Descriptors: Foreign Countries, Engineering Education, Group Dynamics, Cooperative Learning
Coelho, Ricardo Lopes – Science & Education, 2013
It is generally accepted nowadays that History and Philosophy of Science (HPS) is useful in understanding scientific concepts, theories and even some experiments. Problem-solving strategies are a significant topic, since students' careers depend on their skill to solve problems. These are the reasons for addressing the question of whether problem…
Descriptors: Logical Thinking, Introductory Courses, Scientific Concepts, Problem Solving
Kunkel, William; Harrington, Randal – Physics Teacher, 2010
Problems on the dynamics of changing mass systems often call for the more general form of Newton's second law Fnet = dp/dt. These problems usually involve situations where the mass of the system decreases, such as in rocket propulsion. In contrast, this experiment examines a system where the mass "increases" at a constant rate and the net force…
Descriptors: Introductory Courses, Models, Scientific Concepts, Science Instruction

Tompson, C. W.; Wragg, J. L. – Physics Teacher, 1991
A quantitative application of magnetic braking performed with an air track is described. The experimental measurement of the position of the glider as a function of time is calculated. (KR)
Descriptors: Electricity, Graphs, Higher Education, Introductory Courses