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2020-01-26T17:09:14-08:00Portfolios Wiki
http://sites.science.oregonstate.edu/portfolioswiki/
http://sites.science.oregonstate.edu/portfolioswiki/lib/images/favicon.icotext/html2015-08-11T21:59:03-08:00topic:bridge
http://sites.science.oregonstate.edu/portfolioswiki/topic:bridge?rev=1439355543
Bridge Project Activities
Which Way is North?
Acceleration
Finding $d\rr$
The Hill
The Pretzel
The Valley
The Wire
Potential Functions
The Grid
The Cone
The Fishing Net
Stokes' Theorem
Divergence and Curl
Change of Variables
The complete Bridge Project materials, consisting of the student handouts, the instructor's guide for each activity, and an extensive discussion of our general approach, can be downloaded from the Bridge Project website.text/html2012-08-10T18:34:37-08:00topic:classical
http://sites.science.oregonstate.edu/portfolioswiki/topic:classical?rev=1344648877
Classical Mechanics Activities
sample syllabussequence
Survivor: Outer Space
Central Forces on an Air Table
Reduced Mass-Assumptions
Position Vectors
Undoing Reduced Mass
Angular Momentum-Classical Definitions
Degrees of Freedom
Velocity and Acceleration in Polar Coordinates
Polar Plots of Conic Sections
Exploring the Effective Potential
Interpreting Effective Potential Plots
Orbits and Effective Potential
Orbits: Java
Angular Momentum in Polar Coordinatestext/html2014-10-03T15:42:06-08:00topic:electromagnetism
http://sites.science.oregonstate.edu/portfolioswiki/topic:electromagnetism?rev=1412376126
E & M Activities
sample syllabussequence activities
Charge/Current Density
Acting Out Charge DensitiesTotal ChargeActing Out Current Density
Electric Fields and Potential ($V$, $\vec E$)
Activities to help students learn how to calculate or visualize electrostatic fields and their potentials:text/html2012-08-10T16:51:31-08:00topic:fourier
http://sites.science.oregonstate.edu/portfolioswiki/topic:fourier?rev=1344642691
sample syllabussequence activities
Fourier Series Activities
Guessing the Fourier Expansion of a Functiontext/html2012-08-10T16:51:13-08:00topic:linearalgebra
http://sites.science.oregonstate.edu/portfolioswiki/topic:linearalgebra?rev=1344642673
Linear Algebra Activities
sample syllabussequence activities
Linear Transformations
Eigenvectors and Eigenvalues
Diagonalizing Matricestext/html2017-05-02T15:49:50-08:00topic:mathbits
http://sites.science.oregonstate.edu/portfolioswiki/topic:mathbits?rev=1493765390
sample syllabussequence activities
New Math Bits Activities
Fourier Transform of a Delta Function
Parseval's Identitytext/html2015-08-08T16:59:08-08:00topic:multivariable
http://sites.science.oregonstate.edu/portfolioswiki/topic:multivariable?rev=1439078348
Multivariable Calculus Activities
sample syllabussequence activitiesvector calculus textbookmultivariable calculusDouble IntegralsThe CylinderCurvilinear CoordinatesThe TetrahedronLines and PlanesPartial DerivativesClimbing a HillChange of VariablesCalculating a Total Differential
Constant Lines in the u-v planeFixed Partial DifferentialsThe HeaterThe ParkChop, Multiply, and AddThe CylinderThe CakeCross ProductSurfacesDouble IntegralsThe TriangleCurvilinear CoordinatesThe Conethis versionThe He…text/html2012-08-10T16:49:59-08:00topic:powerseries
http://sites.science.oregonstate.edu/portfolioswiki/topic:powerseries?rev=1344642599
sample syllabussequence activities
Power Series Activities
Calculating Coefficients for a Power Series
Approximating Functions with a Power Series (visualization)text/html2015-01-08T10:33:32-08:00topic:qmtext
http://sites.science.oregonstate.edu/portfolioswiki/topic:qmtext?rev=1420742012
Quantum Mechanics Activities
These quantum mechanics activities are ordered by chapters of the textbook Paradigms in Physics:Quantum Mechanics. You can also find the QM activities organized by concepts.
Chapter 1: Stern-Gerlach Experiments
SPINS is a java program that simulates Stern-Gerlach experiments with spin 1/2 and spin 1 particles. The software runs on all platforms and can be downloaded from
the SPINS home page.text/html2019-06-20T22:20:41-08:00topic:quantum
http://sites.science.oregonstate.edu/portfolioswiki/topic:quantum?rev=1561094441
Quantum Activities
sample syllabussequence activitiesParadigms in Physics:Quantum Mechanicsorganized by textbook chapter
Operators
Projection Operators
Matrix Representation of Spin Operators
Operators and Functions
Eigenstates
Eigenstates of a Particle Confined to a Ring
Guessing the Legendre Polynomial Expansion of a Function
Finding Legendre Coefficients
Harmonic Oscillator Basis States
Probability Densities
Particle Confined to a Ring
Particle Confined to a Sphere
Linear Combina…text/html2015-08-15T13:28:06-08:00topic:relativity
http://sites.science.oregonstate.edu/portfolioswiki/topic:relativity?rev=1439670486
sample syllabus
sequence activities
Special Relativity Activities
Spacetime diagrams and hyperbolic trigonometry
Galilean Spacetime DiagramsTrigonometryRight TrianglesLength ContractionCosmic RaysSGA
Doppler effectSGA
Paradoxes in special relativity
Paradoxes ISGA
Paradoxes IISGA
Relativistic energy and momentum
Energy, Mass, Momentum
Mass is not ConservedSGA
Energy-Momentum in Different FramesSGA
Relativistic electromagnetism
Lorentz Transformations for ElectromagnetismSGAtext/html2015-08-15T13:28:25-08:00topic:rotating
http://sites.science.oregonstate.edu/portfolioswiki/topic:rotating?rev=1439670505
sample syllabus
sequence activities
Rotating Frames Activities
Inertial frames
Inertial Frames
Linear AccelerationSGA
Merry-Go-Round
Coriolis and Centrifugal AccelerationsSGA
Turntable Hockey
Forces on the Earth's surface due to rotation
East is not East
Rocket from the North PoleSGAEarth Hockey (orig)
Earth Hockey I
Earth hockey IItext/html2017-04-28T10:30:44-08:00topic:start
http://sites.science.oregonstate.edu/portfolioswiki/topic:start?rev=1493400644
Table of Contents for Individual Activities
On this portion of the site you can find complete instructions for each activity, starting with an advertising-style splash page that will give a short description of the activity, a short description of the motivation, links to any student handouts, and a place where developers and users (including you!) can reflect on their experience. Each activity has a link to Instructor's Guide type materials: information based on our experience about typical st…text/html2013-06-12T14:45:45-08:00topic:thermodynamics
http://sites.science.oregonstate.edu/portfolioswiki/topic:thermodynamics?rev=1371073545
Thermodynamics & Statistical Mechanics Activities
sample syllabussequence activities
Labs
Ice calorimetry lab
Melting ice lab
Rubber band lab
Small group activities
Name the Experiment, Introduction
Name the Experiment: Changing Entropy
Name the Experiment: Maxwell Relations
Name the Experiment: More Maxwell Relations
Constant lines of U and V
Calculating a Total Differential
The Isothermal Bulk Modulus
Introducing Legendre Transform
Comparing System and Surroundings
Comparing The…text/html2019-01-24T18:56:48-08:00topic:vectorcalculus
http://sites.science.oregonstate.edu/portfolioswiki/topic:vectorcalculus?rev=1548385008
Vector Calculus Activities
sample syllabussequence activities
See also the Vector Calculus Bridge Project for information and materials specific to vector calculus, especially materials that are appropriate for mathematics courses.
Curvilinear Basis Vectors (Kinesthetic)
Velocity and Acceleration in Polar Coordinates
Visualizing Gradient
Visualizing Flux
Visualizing Divergence
Visualizing Curl
Navigating a Hill
Vector Line Integrals
Angles between Vectors
Related Mathematical Ideas
…text/html2012-08-10T16:37:55-08:00topic:wavesoscillations
http://sites.science.oregonstate.edu/portfolioswiki/topic:wavesoscillations?rev=1344641875
Oscillations & Waves Activities
sample syllabussequence activities
Anharmonic Oscillations
Forced Oscillations
Standing and Traveling Waves
Using Initial Conditions to Specify Analytic Wave Solutions
Dispersion Relations
Dispersion Relation for Waves on a String
Reflection & Transmission
Wave Propagation in a Coaxial Cable
Energy in a Wave
Energy Density of Waves on a String
Plane Waves
Fourier Analysis
Guessing the Fourier Expansion of a Function
Quantum: Particle in a Box