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Electric Fields and Potential
K8-46: Radio Waves & Faraday Cage
Category:
K8 Electromagnetic Waves and Sources
Purpose
:
Demonstrates that radio waves do not penetrate a Faraday cage
J4-24: FORCE ON DIELECTRIC IN ELECTRIC FIELD
Category:
J4 Capacitance and Polarization
Purpose
:
Demonstrate the force on a dielectric in an electric field.
J4-13: MATCHSTICK ON NICKLE UNDER GLASS
Category:
J4 Capacitance and Polarization
Purpose
:
A simple trick easily solved with the application of electrostatic force and the polar nature of water molecules.
J4-12: ELECTROSTATIC FORCE - MOVING LUMBER
Category:
J4 Capacitance and Polarization
Purpose
:
Demonstrate polarization of water molecules.
J3-22: FARADAY CAGE - ELECTROSCOPE
Category:
J3 Electric Fields and Potential
Purpose
:
Demonstrate that the electric field within a closed surface is zero.
J3-11: EQUIPOTENTIALS/LINES OF FORCE - ONE CHARGE
Category:
J3 Electric Fields and Potential
Purpose
:
Aid in visualization of equipotentials and lines of force.
J3-07: VAN DE GRAAFF - DISCHARGE TO VARIOUS RADII
Category:
J3 Electric Fields and Potential
Purpose
:
Demonstrate that for a charged conductor a smaller radius produces a higher electric field.
J3-05: VAN DE GRAAFF - INDUCTION WITH SPHERES AND NEON BULB
Category:
J3 Electric Fields and Potential
Purpose
:
Demonstrate the existence of electric fields and to identify the polarity of the charge on a sphere.
J3-04: ELECTRIC FIELD LINES - SOAP BUBBLES
Category:
J3 Electric Fields and Potential
Purpose
:
Show the shape of electric field lines for a large dipole by observing soap bubbles move along the lines.
J3-01: EXISTENCE OF ELECTRIC FIELDS
Category:
J3 Electric Fields and Potential
Purpose
:
Demonstrate the existence of electric fields and to map them semi-quantitatively.
J2-16: ELECTRODELESS DISCHARGE
Category:
J2 Electrostatic Devices and Applications
Purpose
:
Demonstrate electrostatic discharge.
P4-51: MILLIKAN OIL DROP MODEL
Category:
P4 Nuclei and Particles
Purpose
:
Demonstrate geometry for the Millikan oil drop experiment.
P4-41: RUTHERFORD SCATTERING MODEL
Category:
P4 Nuclei and Particles
Purpose
:
Show difference in scattering from the Thompson and Rutherford models of the nucleus.
P4-05: PHOTOMULTIPLIER TUBE - LARGE
Category:
P4 Nuclei and Particles
Purpose
:
Show them what a large photomultiplier tube looks like.
A2-17: CLOSED CURVES AND CAPPING SURFACES
Category:
A2 Mathematics
Purpose
:
Illustrate various complicated closed curves
A2-16: SADDLE POINT MODEL
Category:
A2 Mathematics
Purpose
:
Illustrate the geometry of a saddle point
J3-02: ELECTRIC FIELD OF RING OF CHARGE - MODEL
Category:
J3 Electric Fields and Potential
Purpose
:
Aid in the visualization of the electric field of a ring of charge
J4-04 PARALLEL PLATE CAPACITOR - IONIZATION OF AIR
Category:
J4 Capacitance and Polarization
Purpose
:
Demonstrates the mobility of ions
J3-23 FARADAY CAGE - RADIOWAVES
Category:
J3 Electric Fields and Potential
Purpose
:
Demonstrates that radio waves cannot penetrate a Faraday cage
J3-21 FARADAY CAGE
Category:
J3 Electric Fields and Potential
Purpose
:
Demonstrates that the electric field within a closed conducting surface is zero
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A General Materials and Mathematics
A1 Basic Materials and Measurement
A2 Mathematics
B Statics
B1 Center of Mass Statics
B2 Equilibrium of Forces and Torques
B3 Simple Machines
B4 Elasticity
C Kinematics and Dynamics
C1 Center of Mass Motion
C2 Kinematics in One and Two Dimensions
C3 First Law of Motion
C4 Second Law of Motion
C5 Third Law of Motion
C6 Friction
C7 Collisions
C8 Mechanical Energy and Power
D Rotational Mechanics
D1 Rotational Kinematics and Dynamics
D2 Moment of Inertia
D3 Angular Momentum
D4 Gyroscopes
D5 Rotational Esoterica
E Gravitation and Astronomy
E1 Gravitation and Orbits
E2 Astronomy
F Fluid Mechanics
F1 Pressure in Static Fluids
F2 Buoyancy
F3 Surface Tension
F4 Fluid in Motion
F5 Forces in Moving Fluids
G Vibrations and Mechanical Waves
G1 Simple Harmonic Motion
G2 Resonance and Coupled Oscillations
G3 Mechanical Waves - One Dimensional
G4 Mechanical Waves - Two Dimensional
H Sound
H1 Nature of Sound
H2 Wave Properties of Sound
H3 Standing Sound Waves
H4 Music
H5 The Ear
H6 The Voice
I Thermodynamics
I1 Thermal Properties of Matter
I2 Transfer of Heat
I3 Gases
I4 Changes of State
I5 Laws of Thermodynamics
I6 Kinetic Theory and Statistical Mechanics
I7 Solid State and Low Temperature Physics
J Electostatics and Magnetostatics
J1 Electrostatic Charge and Force
J2 Electrostatic Devices and Applications
J3 Electric FIelds and Potential
J4 Capacitance and Polarization
J5 Magnetostatics
J6 Electromagnets
J7 Magnetic Materials
K Electromagnetic Principles
K1 Forces on Moving Charges
K2 Electromagnetic Induction
K3 Transformers
K4 Motors and Generators
K5 Electrical Properties of Matter
K6 Electric Circuits and Instruments
K7 RLC Circuits
K8 Electromagnetic Waves and Sources
L Geometrical Optics
L1 Light Sources and Light Rays
L2 Plane Mirrors
L3 Curved Mirrors
L4 Refraction
L5 Total Internal Reflection
L6 Lenses
L7 Optical Instruments
M Wave Optics
M1 Interference and Diffraction - Slits and Gratings
M2 Diffraction - Circular
M3 Interferometers
M4 Thin Film Interference
M5 Interference and Diffraction Esoterica
M6 Holograms
M7 Linear Polarization and Scattering
M8 Optical Activity and Birefringence
M9 Circular Polarization
N Spectra and Color
N1 Continuous Spectra
N2 Line Spectra
N3 Color
O Vision
O1 Image Production
O2 Visual Latency
O3 Color Vision
O4 Optical Illusions
P Modern Physics
P1 Relativity
P2 Quantum Mechanics
P3 Atoms and Molecules
P4 Nuclei and Particles
Q Biophysics
Q1 Musculoskeletal Systems
Q2 Organs
Q3 Genetics and Molecular Biology
J3-01: EXISTENCE OF ELECTRIC FIELDS
Demonstrate the existence of electric fields and to map them semi-quantitatively
Read More
J3-02: ELECTRIC FIELD OF RING OF CHARGE - MODEL
Aid in the visualization of the electric field of a ring of charge
Read More
J3-04: ELECTRIC FIELD LINES - SOAP BUBBLES
Show the shape of electric field lines for a large dipole by observing soap bubbles move along the lines
Read More
J3-05: VAN DE GRAAFF - INDUCTION WITH SPHERES AND NEON BULB
Demonstrate the existence of electric fields and to identify the polarity of the charge on a sphere
Read More
J3-06 ELLIPSOIDAL CONDUCTOR
Demonstrates that charge distribution on a conductor depends on the surface curvature
Read More
J3-07: VAN DE GRAAFF - DISCHARGE TO VARIOUS RADII
Demonstrate that for a charged conductor a smaller radius produces a higher electric field
Read More
J3-08 VAN DE GRAAFFS - INTERACTING FIELDS
Shows field lines for two identical charges
Read More
J3-11: EQUIPOTENTIALS/LINES OF FORCE - ONE CHARGE
Aid in visualization of equipotentials and lines of force
Read More
J3-13 POTENTIAL SURFACE MODEL WITH E FIELD VECTORS
Illustrates the relationship between the electrostatic potential and the electric field
Read More
J3-14 FLUX MODEL - ELECTROSTATICS
Aid in visualizing flux at an angle through a surface
Read More
J3-21 FARADAY CAGE
Demonstrates that the electric field within a closed conducting surface is zero
Read More
J3-22: FARADAY CAGE - ELECTROSCOPE
Demonstrate that the electric field within a closed surface is zero
Read More
J3-23 FARADAY CAGE - RADIOWAVES
Demonstrates that radio waves cannot penetrate a Faraday cage
Read More
J3-24 HOLLOW CONDUCTING SPHERE
Demonstrates that charge resides on the outside surface of a conductor
Read More
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