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Mohamed, Ahmed Obaid – Physics Education, 2022
The Widlar current source is one of the basic current sources that undergraduate students encounter throughout their learning process on electronics courses. The Widlar current is actually given in terms of a transcendental equation. Although an analytical solution exists in terms of the Lambert W function it might not be that useful for students…
Descriptors: Science Instruction, Physics, College Science, Undergraduate Study
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De Luca, R.; Faella, O. – Physics Education, 2022
The static equilibrium properties of a spool, resting on an incline and subject to the tension exerted by a string wrapped around the core cylinder, are studied by means of Newtonian mechanics. The overall behaviour of this system is imagined to be similar to that of a doggie kept on a leash. Starting from the well-known mechanical properties of…
Descriptors: Science Instruction, Mechanics (Physics), Inquiry, Scientific Concepts
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Bissell, J. J.; Nagaitis, A. M. – Physics Education, 2022
Puzzles involving infinite networks of resistors are an engaging way for students to explore the idea of infinity and self-similarity in physics. Recently K Atkin has described one such puzzle, alongside a solution based on an equivalent finite network (2022 "Phys. Educ." 57 025015). Here we present a generalisation of this problem which…
Descriptors: Science Instruction, Physics, Puzzles, Scientific Concepts
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Maungchang, Rasimate; Dam-O, Punsiri – Physics Education, 2021
This paper demonstrates an experimental integrated lesson of physics and calculus in a topic of fluid force applying on different shapes of dams. This lesson was designed for the first year students in engineering program in an attempt to show them the connection between these two disciplines, as well as to introduce more advanced…
Descriptors: Physics, Calculus, Science Instruction, Scientific Concepts
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Romano, Paola; Mandrone, Mario – Physics Education, 2019
In this paper the muscular activity will be treated from a physical point of view, considering the main physical parameters that can be quantified. A brief and simple theoretical treatment will be followed by some homeworks for students. The problems have a difficulty degree typical of an undergraduate class, and the arguments have been chosen…
Descriptors: Biophysics, Muscular Strength, Homework, Human Body
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Parreira, Pedro; Yao, Eric – Physics Education, 2018
Being able to contextualise and solve complex problems is a highly valued skill in STEM graduates--a skill which we strive to nurture in our students. Since its introduction into undergraduate teaching, laboratory teaching has been used to consolidate students conceptual understanding, develop their practical skills and inculcate an evidence based…
Descriptors: STEM Education, Undergraduate Study, College Science, Secondary School Science
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Tabor-Morris, A. E. – Physics Education, 2015
How can physics teachers help students develop consistent problem solving techniques for both simple and complicated physics problems, such as those that encompass objects undergoing multiple forces (mechanical or electrical) as individually portrayed in free-body diagrams and/or phenomenon involving multiple objects, such as Doppler effect…
Descriptors: Science Instruction, Scientific Concepts, Problem Solving, Mechanics (Physics)
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Fiolhais, Miguel C. N.; Amor dos Santos, Susana – Physics Education, 2014
The technique of bump drafting, also known as two-car drafting in motorsports, is analysed in the framework of Newtonian mechanics and simple aerodynamic drag forces. As an apparent unnatural effect that often pleases the enthusiasts of car racing, bump drafting provides a unique pedagogical opportunity for students to gain insights into the…
Descriptors: Science Instruction, Motor Vehicles, Mechanics (Physics), Scientific Principles
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Robinson, A. W. – Physics Education, 2008
Fermi problems, or order of magnitude estimates, are often used in introductory physics courses. In this paper I will show that first year students studying physics at university do not arrive with the skill set to solve these problems, and they have to be actively taught how to solve them. Once they have been shown how to solve Fermi problems,…
Descriptors: Physics, Science Instruction, College Freshmen, College Science
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Burge, E. J. – Physics Education, 1971
Descriptors: College Science, Mathematical Applications, Methods, Physics
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Frank, F. C. – Physics Education, 1978
Explains the properties and gives the derivations of Airy's functions for simple example problems on stress such as the cantilever beam and the tensional cross-bow. (GA)
Descriptors: College Science, Force, Higher Education, Matter
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Moss, G. D. – Physics Education, 1980
Describes a study to investigate problem-solving skills of science students. An analysis was made of the examination questions to determine what proportion of examination questions was associated with the skills needed for solving problems. (SK)
Descriptors: College Science, Evaluation, Higher Education, Physics
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Robertson, I. S. – Physics Education, 1979
Presents a step-by-step approach to be used in solving different forms of physics problems, starting from familiar grounds and finding well known results on the way. Uses the rate of heat flow and the resulting changes of temperature with time of a copper block as an example. (GA)
Descriptors: Calorimeters, College Science, Heat, Higher Education
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Ntibi, J. Effiom-Edem – Physics Education, 1991
A static method of measuring the surface tension of a liquid is presented. Jaeger's method is modified by replacing the pressure source with a variable pressure head. By using this method, stationary air bubbles are obtained thus resulting in controllable external parameters. (Author/KR)
Descriptors: College Science, Higher Education, Mathematical Applications, Physics
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Isenberg, C. – Physics Education, 1975
Describes a theory concerning the formation of soap films which enables this technique to be applied to problems requiring the minimization of the surface area between fixed boundaries. (Author/CP)
Descriptors: Chemistry, College Science, Energy, Geometry
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