Demo used for 8B-fall/Catherine Bordel/2014

Provides the Demo List.
UCB IndexTitlesort ascendingDate
D+35+14 YBaCuO pellet with magnet in liquid nitrogen on TV camera.2014-12-04
D+35+14 YBaCuO pellet with magnet in liquid nitrogen on TV camera.2014-12-05
D+0+12 Visual charge/discharge of a capacitor through a load.2014-09-25
D+0+12 Visual charge/discharge of a capacitor through a load.2014-09-26
D+0+2 Various capacitors to show.2014-09-19
D+0+2 Various capacitors to show.2014-09-18
D+10+20 Van de Graaff generator.2014-09-02
D+10+20 Van de Graaff generator.2014-09-03
E+10+40 Two points of light diffract through an iris, shown with T.V. camera.2014-11-18
B+25+0 Transverse wave model, hand-cranked.2014-10-16
B+25+0 Transverse wave model, hand-cranked.2014-10-17
D+10+2 Transparency: Mapping of an electric field.2014-09-05
D+10+2 Transparency: Mapping of an electric field.2014-09-16
D+10+2 Transparency: Mapping of an electric field.2014-09-17
E+60+5 Total internal reflection/critical angle: Nakamura water tank.2014-10-20
E+60+5 Total internal reflection/critical angle: Nakamura water tank.2014-10-21
E+60+5 Total internal reflection/critical angle: Nakamura water tank.2014-10-22
D+30+22 Torque on coil suspended between two magnets.2014-10-03
D+30+22 Torque on coil suspended between two magnets.2014-10-02
E+25+25 Thin film interference with optical flats and sodium lamp.2014-11-18
E+10+0 Single slit diffraction using laser beam through adjustable slit.2014-11-12
E+10+0 Single slit diffraction using laser beam through adjustable slit.2014-11-13
D+75+1 Same as above: Secondary used for spot-welding.2014-10-13
D+75+1 Same as above: Secondary used for spot-welding.2014-10-14
D+55+18 Resistor analog: Marbles cascading down pin board.2014-09-22
D+55+18 Resistor analog: Marbles cascading down pin board.2014-09-23
E+40+30 Reflections from concave and convex mirrors with lighted arrow.2014-10-28
E+40+30 Reflections from concave and convex mirrors with lighted arrow.2014-10-27
E+30+15 Real images: Lighted arrow image and various lenses.2014-10-28
E+30+15 Real images: Lighted arrow image and various lenses.2014-10-29
E+40+10 Phantom lightbulb: Image in a plane mirror.2014-10-27
E+40+10 Phantom lightbulb: Image in a plane mirror.2014-10-23
E+40+10 Phantom lightbulb: Image in a plane mirror.2014-10-24
E+25+42 Oil film interference on water.2014-11-17
E+25+30 Newton's rings by transmission or reflection on arc bench.2014-11-19
E+30+65 Model of the eye, with near/far sight lenses, using arc lamp.2014-10-31
E+30+65 Model of the eye, with near/far sight lenses, using arc lamp.2014-11-03
E+30+65 Model of the eye, with near/far sight lenses, using arc lamp.2014-11-04
E+15+10 Mercury spectrum using slit and grating, includes UV lines.2014-11-17
E+15+10 Mercury spectrum using slit and grating, includes UV lines.2014-11-18
F+20+20 Mechanical models of the hydrogen atom.2014-11-21
E+45+10 Malus experiment: Polarization by reflection off glass surface.2014-10-23
E+45+10 Malus experiment: Polarization by reflection off glass surface.2014-10-24
D+30+14 Magnetic field around a solenoid with pivoting probe magnet.2014-10-06
D+30+14 Magnetic field around a solenoid with pivoting probe magnet.2014-10-07
E+10+45 Limit of resolution: Two small lamps on adjustable slide.2014-11-13
E+10+45 Limit of resolution: Two small lamps on adjustable slide.2014-11-14
E+10+45 Limit of resolution: Two small lamps on adjustable slide.2014-11-17
F+15+5 Light through different filters into phototube changes current.2014-11-19
F+15+5 Light through different filters into phototube changes current.2014-11-20
D+15+24 Levitator: Aluminum dish floats four inches off platform.2014-12-04
D+15+24 Levitator: Aluminum dish floats four inches off platform.2014-12-05
E+25+15 Laser beam through various slit and grating combinations.2014-11-06
E+25+15 Laser beam through various slit and grating combinations.2014-11-10
E+30+30 Large lens shows chromatic aberration on screen using arc lamp.2014-10-30
D+30+10 Iron filings around a high current vertical wire on OHP to show field.2014-10-02
D+30+10 Iron filings around a high current vertical wire on OHP to show field.2014-10-06
D+30+12 Iron filings around a current carrying coil on OHP to show field.2014-10-07
D+55+4 High current melts the fuse wire.2014-09-22
D+55+4 High current melts the fuse wire.2014-09-23
D+55+4 High current melts the fuse wire.2014-09-24
D+55+4 High current melts the fuse wire.2014-09-25
D+15+10 Hand-cranked AC alternator powers 120 volt lamp.2014-10-10
D+15+10 Hand-cranked AC alternator powers 120 volt lamp.2014-10-14
D+30+28 Hall effect: Magnetic field induces a voltage in a neon plasma.2014-09-29
D+30+28 Hall effect: Magnetic field induces a voltage in a neon plasma.2014-09-30
D+30+28 Hall effect: Magnetic field induces a voltage in a neon plasma.2014-10-01
D+30+18 Force on a current carrying wire in a magnetic field.2014-09-29
D+30+18 Force on a current carrying wire in a magnetic field.2014-09-30
D+20+0 Energy stored in large coil with soft iron core flashes bulb.2014-10-16
D+20+0 Energy stored in large coil with soft iron core flashes bulb.2014-10-15
D+15+2 Elementary generator: Bar moved in magnetic field.2014-10-09
F+10+0 Electron diffraction by aluminum and graphite on CRT.2014-11-21
F+10+0 Electron diffraction by aluminum and graphite on CRT.2014-11-20
D+10+0 Electric fields: Lines of force shown on an OHP.2014-09-04
D+10+0 Electric fields: Lines of force shown on an OHP.2014-09-05
D+15+28 Eddy currents: Neodymium Magnet Drop.2014-12-04
D+15+28 Eddy currents: Neodymium Magnet Drop.2014-12-05
E+60+0 Displacement of a beam passing through a thick plate of glass.2014-10-22
E+10+15 Diffraction about pinhead, razorblade, wood screw using laser.2014-11-14
E+30+55 Compound microscope is assembled from lenses.2014-11-04
E+30+55 Compound microscope is assembled from lenses.2014-11-05
E+30+55 Compound microscope is assembled from lenses.2014-11-06
E+45+25 Commercial Polaroid filters on an OHP.2014-10-20
E+45+25 Commercial Polaroid filters on an OHP.2014-10-21
D+10+12 Charge resides on the outside of a conductor.2014-09-11
D+10+12 Charge resides on the outside of a conductor.2014-09-12
D+10+8 Braun and Leaf electroscopes.2014-08-28
D+10+8 Braun and Leaf electroscopes.2014-08-29
D+10+8 Braun and Leaf electroscopes.2014-09-02
D+10+8 Braun and Leaf electroscopes.2014-09-03
E+40+5 Blackboard optics: Light sources with plane and curved mirrors.2014-10-20
E+40+5 Blackboard optics: Light sources with plane and curved mirrors.2014-10-21
E+30+10 Blackboard optics: Light sources with lucite lenses.2014-10-29
E+30+10 Blackboard optics: Light sources with lucite lenses.2014-10-30
D+15+0 Bar magnet induces current in a coil, shown on galvanometer.2014-10-08
D+15+0 Bar magnet induces current in a coil, shown on galvanometer.2014-10-09
D+0+0 Attraction between horizontal plates of a charged capacitor.2014-09-19
D+10+6 Attraction and repulsion of charged styrofoam balls.2014-08-28
D+10+6 Attraction and repulsion of charged styrofoam balls.2014-08-29
E+30+45 Astronomical telescope: Using objective and eyepiece lenses.2014-11-07
E+10+10 Airy's disk: Pinhole diffraction using laser beam.2014-11-14
D+20+4 AC dimmer: Soft iron core in coil dims lamps.2014-10-13
D+20+4 AC dimmer: Soft iron core in coil dims lamps.2014-10-14
Provides the Special Request Demo List.
UCB IndexTitlesort ascendingDate
-same Gauss's law material again, more specifically the plane and hemisphere + needles. Thanks, Cathy2014-09-10
-Is there any demo/applet showing the motion of an electric dipole in an electric field? Thanks, Cathy2014-09-18
-I'd like to show some electric field lines and equipotential surfaces. I've used an applet last semester but I can't remember what it is...2014-09-15
-I'd like the home-made Gauss's law demo again (tube + needles).2014-09-09
-Can I just get the material to show the application of Gauss's law (cardboard cylinder, needles, etc)? Thanks2014-09-08
-Can I have the H lamp and diffraction gratings to observe the emission spectrum? Pimentel, 12:30pm2014-11-25
-Can I get the applet showing the electric equipotential surfaces and field lines for a distribution of point charges? I remember you can place them in space wherever you want and then draw the lines.2014-09-16
-Can I also get the material for the home-made Gauss's law demo (cardboard tube, needles, etc...)?2014-09-04