Search results for " Physics Education"

showing 10 items of 24 documents

A mechanical model of the smartphone’s accelerometer

2015

To increase the attention of students, several physics experiments can be performed at school, as well at home, by using the smartphone as laboratory tools. In the paper we describe a mechanical model of the smartphone's accelerometer, which can be used in classroom to allow students to better understand the principle of the accelerometer even by students at the beginning of the study in physics.

Physics educationPhysics Education (physics.ed-ph)Human–computer interactionSettore FIS/08 - Didattica E Storia Della FisicaComputerSystemsOrganization_MISCELLANEOUSPhysics - Physics EducationComputingMilieux_COMPUTERSANDEDUCATIONFOS: Physical sciencesGeneral Physics and AstronomyComputerApplications_COMPUTERSINOTHERSYSTEMSAccelerometerEducationPhysics Education
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Bose-Einstein condensation of two interacting particles

2000

We investigate the notion of Bose-Einstein condensation of interacting particles. The definition of the condensate is based on the existence of the dominant eigenvalue of the single-particle density matrix. The statistical properties and the characteristic temperature are computed exactly in the soluble models of two interacting atoms.

PhysicsDensity matrixCondensed Matter::Quantum GasesQuantum PhysicsCondensed Matter::OtherAtomic Physics (physics.atom-ph)CondensationCondensed Matter (cond-mat)Physics - Physics EducationInstitut für Physik und AstronomieFOS: Physical sciencesCondensed MatterCondensed Matter PhysicsAtomic and Molecular Physics and OpticsPhysics - Atomic Physicslaw.inventionlawPhysics Education (physics.ed-ph)Quantum mechanicsQuantum Physics (quant-ph)Bose–Einstein condensateEigenvalues and eigenvectors
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An inquiry-based approach to Maxwell distribution: a case study with engineering students

2013

The concept of distribution is a fundamental component of statistical thinking. This paper describes a teaching approach for it that uses a specific activity related to the field of statistical mechanics. The concept of the velocity distribution of a particle system is dealt with using an inquiry-based approach involving an experimental examination of Maxwell’s distribution. Some outcomes of a teaching experiment held at the Faculty of Engineering of the University of Palermo, Italy are described.

PhysicsDistribution (number theory)Research in physics education Teaching methods and strategies Laboratory experiments and apparatus Laboratory course design organization and evaluationClassical statistical mechanicsSettore FIS/08 - Didattica E Storia Della Fisica05 social sciences050301 educationGeneral Physics and AstronomyStatistical mechanics01 natural sciencesMaxwell–Boltzmann distributionField (geography)symbols.namesakeTheoretical physicsStatistical thinkingComponent (UML)0103 physical sciencessymbolsMathematics education010306 general physics0503 educationEuropean Journal of Physics
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An educational path for the magnetic vector potential and its physical implications

2013

We present an educational path for the magnetic vector potential A aimed at undergraduate students and pre-service physics teachers. Starting from the generalized Ampere–Laplace law, in the framework of a slowly varying time-dependent field approximation, the magnetic vector potential is written in terms of its empirical references, i.e. the conduction currents. Therefore, once the currents are known, our approach allows for a clear and univocal physical determination of A, overcoming the mathematical indeterminacy due to the gauge transformations. We have no need to fix a gauge, since for slowly varying time-dependent electric and magnetic fields, the ‘natural’ gauge for A is the Coulomb o…

PhysicsField (physics)Physics - Physics EducationClassical Physics (physics.class-ph)FOS: Physical sciencesGeneral Physics and AstronomyPhysics - Classical PhysicsGauge (firearms)Indeterminacy (literature)Magnetic fieldInterpretation (model theory)Theoretical physicsPhysics Education (physics.ed-ph)Path (graph theory)CoulombMagnetic potential
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The amazing graphene: an educational bridge connecting different Physics concepts

2017

The purpose of this work is to present a learning workshop covering various physics concepts aimed at strengthening physics/engineering student understanding about the remarkable properties of two dimensional materials, graphene in particular. At the basis of this learning experience is the idea of blending and interconnecting separate pieces of knowledge already acquired by undergraduates in different courses and to help them visualize and link the concepts lying beyond separate chunks of information or equations. Graphene represents an appropriate unifying framework to achieve this task in view of its monatomic structure and various exotic processes peculiar to this and some other two dim…

PhysicsGrapheneSettore FIS/08 - Didattica E Storia Della FisicaGeneral Physics and AstronomyNanotechnology02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesBridge (interpersonal)Engineering physicsSettore FIS/03 - Fisica Della MateriaSettore FIS/07 - Fisica Applicata(Beni Culturali Ambientali Biol.e Medicin)law.inventiongraphene physics education Hall effect group theorylaw0103 physical sciences010306 general physics0210 nano-technology
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An investigation of environmental temperature effects on energy exchange by thermal radiation

2013

The radiative heating or cooling of a body placed in an environment, whose temperature is considered constant is described by Stefan's law. In this paper, an analysis is made of how a time-dependent environmental temperature influences the heating/cooling process. We compare experimental results for a resistor first heated by the Joule effect inside a glass vacuum tube and then cooled under two different conditions: in a bath at a constant temperature and in air. We also discuss a model that describes how the time-dependent tube temperature influences the radiative resistor cooling by identifying the properties of the environment that make the resistor cooling rate linear.

PhysicsRadiative coolingSettore FIS/08 - Didattica E Storia Della FisicaJoule effectVacuum tubeGeneral Physics and AstronomyThermodynamicsMechanicslaw.inventionThermal radiationlawRadiative transferLaboratory procedures Thermal radiation Physics educationTube (fluid conveyance)ResistorConstant (mathematics)American Journal of Physics
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A transfer matrix method for the analysis of fractal quantum potentials

2005

The scattering properties of quantum particles on fractal potentials at different stages of fractal growth are obtained by means of the transfer matrix method. This approach can be easily adopted for project assignments in introductory quantum mechanics for undergraduates. The reflection coefficients for both the fractal potential and the finite periodic potential are calculated and compared. It is shown that the reflection coefficient for the fractal has a self-similar structure associated with the fractal distribution of the potential.

PhysicsScatteringTransfer-matrix method (optics)Structure (category theory)Physics - Physics EducationGeneral Physics and AstronomyFOS: Physical sciencesReflection (mathematics)FractalDistribution (mathematics)Physics Education (physics.ed-ph)Statistical physicsReflection coefficientQuantum
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Exploring Gravitational Lensing

2019

In this article, we discuss the idea of gravitational lensing, from a systematic, historical and didactic point of view. We show how the basic lensing equation together with the concepts of geometrical optics opens a space of implications that can be explored along different dimensions. We argue that Einstein explored the idea along different pathways in this space of implication, and that these explorations are documented by different calculational manuscripts. The conceptualization of the idea of gravitational lensing as a space of exploration also shows the feasibility of discussing the idea in the classroom using some of Einstein's manuscripts.

PhysicsSecondary educationGeometrical opticsConceptualization05 social sciencesPhysics - History and Philosophy of PhysicsPhysics - Physics EducationFOS: Physical sciences050301 educationGeneral Physics and AstronomySpace (mathematics)01 natural sciencesTheoretical physicssymbols.namesakeGravitational lensPhysics Education (physics.ed-ph)0103 physical sciencessymbolsHistory and Philosophy of Physics (physics.hist-ph)Point (geometry)History of physicsEinstein010306 general physics0503 education
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Teaching/Learning Physics: Integrating Research into Practice

2015

The GIREP-MPTL International conference on Teaching/Learning Physics: Integrating Research into Practice [GIREP-MPTL 2014] was held from 7 to 12 July 2014 at the University of Palermo, Italy. The conference has been organised by the Groupe International de Recherche sur l’Enseignement de la Physique [GIREP] and the Multimedia in Physics Teaching and Learning [MPTL] group and it has been sponsored by the International Commission on Physics Education [ICPE] – Commission 14 of the International Union for Pure and Applied Physics [IUPAP], the European Physical Society – Physics Education Division [EPS-PED], the Latin American Physics Education Network [LAPEN] and the Società Italiana di Fisica …

Research in Physics EducationSettore FIS/08 - Didattica E Storia Della FisicaGIREP
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Video-analysis of flight of a model aircraft

2010

In recent years, many research studies have pointed out that modelling environments, based on Information Technology, can supply effective pedagogical strategies dealing with complex real-world systems and everyday problem solutions. At the same time, physics teachers have discovered that video analysis is a relatively inexpensive and 188 worthwhile method of studying «real world» examples of phenomena. This kind of approach is often adopted to analyze sports physics. The study of physics of aircraft flight can be considered a real-world topic belonging to the everyone’s common experience. For this reason, here, we use a video-analysis software in order to measure the main dynamic variables…

Settore FIS/08 - Didattica E Storia Della FisicaSimulation TIC Physics Education
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