TOTAL DEMO USE Summer 2002 through Spring 2005 by Index Number
| Demonstration |
Uses |
| A1-01 MASSES - KILOGRAM AND POUND |
148 |
| A1-02 MASSES - CHROME-PLATED |
15 |
| A1-03 DENSITY - VARIOUS BRICKS |
33 |
| A1-11 LENGTHS - METER AND YARD |
92 |
| A1-12 METRIC TAPE |
7 |
| A1-21 METRONOME |
23 |
| A1-22 HOURGLASS |
7 |
| A1-31 VOLUME MEASURE DEMONSTRATION |
65 |
| A1-32 VOLUMES - SPHERICAL VS CYLINDRICAL |
7 |
| A1-41 DRAWING PUZZLE - INTERSECTING RODS |
2 |
| A1-51 SKATEBOARD |
5 |
| A2-01 CARTESIAN COORDINATE AXES |
84 |
| A2-02 XYZ AXES ON EXTENDED HANDLE |
9 |
| A2-11 CIRCUMFERENCE AND DIAMETER - CHAIN ON CYLINDER |
1 |
| A2-12 SLATED SPHERE |
1 |
| A2-13 ELLIPSE DRAWING BOARD |
39 |
| A2-14 DISSECTIBLE CONE |
10 |
| A2-21 MAGNETIC VECTOR BOARD |
7 |
| A2-22 MAGNETIC VECTORS - LECTURE HALL |
95 |
| A2-23 VECTOR PRODUCT |
27 |
| A2-24 TWO-DIMENSIONAL VECTOR ALGEBRA |
11 |
| A2-31 TRIGONOMETRIC FUNCTIONS FOR MATH REVIEW |
4 |
| A2-32 HEIGHT MEASUREMENT BY TRIGONOMETRY |
1 |
| A2-33 DIRECTION COSINES MODEL |
5 |
| A2-51 PROBABILITY BOARD - PROJECTION |
5 |
| A2-52 PROBABILITY DEMONSTRATOR |
3 |
| A2-53 DICE - LARGE |
5 |
| A2-61 EXPONENTIAL INCREASE - CHESSBOARD AND RICE |
2 |
| A2-71 TOPOLOGY OF A STRING |
1 |
| B1-01 CENTER OF MASS - DISC SECTION |
47 |
| B1-02 CENTER OF MASS - LEANING TOWER |
18 |
| B1-04 CENTER OF MASS - BRASS BARBELL |
23 |
| B1-05 CENTER OF MASS - PLUMBER'S HELPER |
37 |
| B1-06 DOUBLE CONE - LARGE |
9 |
| B1-07 DOUBLE CONE - SMALL |
1 |
| B1-08 STATES OF EQUILIBRIUM - CONE |
2 |
| B1-09 CENTER OF MASS - TRIANGLE |
19 |
| B1-11 BALANCE MAN |
27 |
| B1-12 CENTER OF MASS - HINGED STICK PARADOX |
7 |
| B1-13 CENTER OF MASS - FORK AND SPOON ON |
30 |
| B1-14 CENTER OF MASS - BOTTLE |
18 |
| B1-15 TOPPLING CYLINDERS |
2 |
| B1-16 CORBELED ARCH |
5 |
| B1-17 CENTER OF MASS - STICKS |
16 |
| B1-21 BALANCE BEAM - VARIATION ON THE TIGHTROPE |
2 |
| B1-22 CENTER OF GRAVITY USING TEETER-TOTTER |
6 |
| B1-24 CENTER OF MASS - CARTS ON BALANCE |
9 |
| B2-01 SUM OF FORCES IN A LINE |
1 |
| B2-02 SUM OF FORCES - SPRING SCALES |
12 |
| B2-03 EQUILIBRIUM OF FORCES - INCLINED PLANE |
14 |
| B2-04 VERTICAL FORCES - FOUR SPRING SCALES |
4 |
| B2-12 EQUILIBRIUM OF FORCES - BOARD BACKGROUND |
18 |
| B2-14 SUM OF FORCES - LARGE ROPE VERSION |
16 |
| B2-15 ADDITION OF NON-LINEAR FORCES |
1 |
| B2-16 VECTOR ADDITION WITH ROPE AND STUDENTS |
8 |
| B2-21 CONCEPT OF TORQUE - TORSIONAL CHAIR |
4 |
| B2-22 TORQUE - PHYSICAL DEFINITION |
11 |
| B2-23 TORQUE CONDITION FOR EQUILIBRIUM |
4 |
| B2-31 EQUILIBRIUM OF TORQUES - WHEELS AND AXLES |
8 |
| B2-32 EQUILIBRIUM OF TORQUES - LARGE |
21 |
| B2-33 EQUILIBRIUM OF TORQUES - SMALL |
10 |
| B2-35 EQUILIBRIUM OF TORQUES ON METER STICK |
10 |
| B2-41 ROBERVAL BALANCE |
3 |
| B2-42 ARM MODEL |
6 |
| B2-43 CRANE BOOM |
1 |
| B2-44 STABLE EQUILIBRIUM - COMPOUND SYSTEM |
3 |
| B3-01 LEVER AND LOADED WAGON |
3 |
| B3-02 LEVERS - THREE CLASSES |
5 |
| B3-03 LEVERS - WRECKING BAR |
5 |
| B3-11 PULLEY - HUMAN LIFT |
6 |
| B3-12 PULLEY - MECHANICAL ADVANTAGE |
5 |
| B3-13 PULLEY VS NO PULLEY |
3 |
| B3-14 EQUILIBRIUM PARADOX - SCALES AND PULLEY |
5 |
| B3-15 FOOL'S TACKLE |
3 |
| B3-21 CHISEL AS WEDGE |
4 |
| B3-23 ENDLESS SCREW |
2 |
| B4-01 HOOKE'S LAW |
36 |
| B4-02 HOOKE'S LAW - COMPRESSING A SPRING |
19 |
| B4-03 SPRINGS IN SERIES AND PARALLEL |
2 |
| B4-04 SPRING AND STRING THING |
2 |
| B4-11 ELASTIC LIMIT OF RUBBER BAND |
7 |
| B4-12 ELASTIC LIMIT OF SOLDER SPRING |
3 |
| B4-14 ELASTIC LIMIT OF WIRE |
1 |
| B4-21 DEFLECTION OF BEAM - OPTICAL LEVER |
8 |
| B4-31 FAILURE OF WOOD IN COMPRESSION |
1 |
| B4-32 CAN CRUSHER - WALL STABILITY |
1 |
| B4-33 EGG CRUSHER |
17 |
| C1-01 CENTER OF MASS MOTION - BARBELL |
20 |
| C1-02 CENTER OF MASS MOTION - PLUMBER'S HELPER |
27 |
| C1-03 CENTER OF MASS MOTION - CLOWN |
7 |
| C1-04 CENTER OF MASS - BEAR ON TIGHT ROPE |
24 |
| C1-11 AIR TRACK - CENTER OF MASS PENDULUM |
10 |
| C1-12 AIR TRACK - CENTER OF MASS OF COUPLED GLIDERS |
6 |
| C1-21 AIR TABLE - TOPPLING STICK |
9 |
| C2-01 AIR TRACK - CONSTANT VELOCITY AND UNIFORM ACCELERATION |
92 |
| C2-02 AIR TRACK - DIRECT MEASUREMENT OF ACCELERATION |
5 |
| C2-03 AIR TRACK - UNIFORM ACCELERATION - INCLINED |
6 |
| C2-04 FREE FALL WITH PHOTOCELL GATES |
14 |
| C2-05 FREE FALL - USING FILMLOOP |
2 |
| C2-06 BALL DROP ON ROPE - EQUAL AND UNEQUAL INTERVALS |
38 |
| C2-07 FREE FALL - EQUAL TIME INTERVALS |
37 |
| C2-09 FREE FALL WITH STROBE |
23 |
| C2-10 CONSTANT VELOCITY - GALILEO'S EXPERIMENT |
26 |
| C2-11 RACING BALLS |
78 |
| C2-21 BALLS DROPPED AND SHOT |
87 |
| C2-22 MONKEY AND HUNTER |
122 |
| C2-23 TRAJECTORY OF BALL - MODEL |
62 |
| C2-24 WATER DROP PARABOLA |
32 |
| C2-25 FUNNEL CART |
111 |
| C2-26 FUNNEL CART WITH MASS OVER PULLEY |
68 |
| C2-27 FUNNEL CART ON INCLINE |
50 |
| C2-28 TRAJECTORY OF BALL DROPPED BY WALKER |
9 |
| C2-41 VECTOR ADDITION OF VELOCITIES |
35 |
| C2-42 VELOCITY ADDITION WITH FILM LOOP |
5 |
| C2-43 |
1 |
| C2-51 KINEMATICS WITH ULI AND ULTRASONIC RANGER |
37 |
| C3-01 INERTIA - SMALL STEEL BALL |
29 |
| C3-02 INERTIA - TABLE CLOTH TRICK |
105 |
| C3-03 INERTIA - MASSES HANGING IN SERIES |
28 |
| C3-04 INERTIA - LEAD BRICK AND HAND |
103 |
| C3-05 INERTIA - PEN IN BOTTLE |
31 |
| C3-06 INERTIA - JENGA |
2 |
| C3-11 STRAW AND POTATO |
31 |
| C3-12 PENCIL AND PLYWOOD |
74 |
| C3-21 INERTIAL MASS CART |
4 |
| C4-01 AIR TRACK - NEWTON'S SECOND LAW |
18 |
| C4-02 AIR TRACK - A eq F/M |
9 |
| C4-03 ACCELERATION BY ITERATED BLOWS |
8 |
| C4-04 F eq MA WITH ULI AND FORCE PROBE |
3 |
| C4-11 ACCELEROMETER - BALL IN WATER |
6 |
| C4-12 ACCELEROMETER ON INCLINED PLANE |
7 |
| C4-13 ACCELEROMETER ON ROTATOR |
6 |
| C4-14 AIR TRACK - ACCELEROMETER |
2 |
| C4-15 HELIUM BALLOON IN ACCELERATED BOX |
21 |
| C4-21 ATWOOD MACHINE |
19 |
| C4-22 HORIZONTAL ATWOOD MACHINE |
6 |
| C4-23 ATWOOD MACHINE WITH HEAVY PULLEY |
4 |
| C4-32 FREE FALL IN VACUUM - GUINEA AND FEATHER |
13 |
| C4-33 FREE FALL IN VACUUM - FEATHER AND BALL |
104 |
| C4-34 GALILEO'S EXPERIMENT - MASSES IN FREE FALL |
49 |
| C4-41 TERMINAL VELOCITY - BOTTLE IN TUBE |
14 |
| C4-42 TERMINAL VELOCITY - FEATHER |
10 |
| C4-43 TERMINAL VELOCITY - STACKED COFFEE FILTERS |
17 |
| C4-51 WEIGHTLESSNESS IN FREE FALL - MASS IN BEAKER |
24 |
| C4-52 WEIGHTLESSNESS IN FREE FALL - MASS IN CUP ON POLE |
55 |
| C4-53 WEIGHTLESSNESS IN FREE FALL - MASS ON SPRING |
25 |
| C4-54 WEIGHTLESSNESS IN FREE FALL - MAGNET AND KEEPER |
7 |
| C4-61 ACCELERATION ON A SCALE |
11 |
| C4-62 DROPPED SLINKY |
22 |
| C5-01 NEWTON'S THIRD LAW - STATIC DYNAMOMETERS |
40 |
| C5-02 SPRING AND PULLEY PARADOX |
14 |
| C5-11 AIR TRACK - ACTION-REACTION PAIRS |
62 |
| C5-12 BALLISTIC CANNON CARTS |
69 |
| C5-13 WATER ROCKET |
93 |
| C5-14 ROCKET TRIKE |
94 |
| C5-15 REACTION FORCE ON AIR BLOWER |
29 |
| C5-16 HERO'S ENGINE |
15 |
| C5-17 ROCKET BOTTLE |
33 |
| C5-18 FAN CART |
83 |
| C5-19 ACTION AND REACTION - INSTRUCTOR AND CART |
31 |
| C5-20 PUTT PUTT STEAM BOAT |
2 |
| C5-31 AIR TRACK - SAILING UPWIND |
6 |
| C5-41 HOURGLASS PROBLEM |
5 |
| C6-01 INCLINED PLANE - FRICTION BOX AND WEIGHTS |
36 |
| C6-02 INCLINED PLANE - FRICTION BLOCK |
28 |
| C6-03 INCLINED PLANE - FRICTION WITH 3 BLOCKS |
44 |
| C6-04 FRICTION DIRECTION ON INCLINED PLANE |
12 |
| C6-05 AIR TRACK - INCLINED PLANE FRICTION |
1 |
| C6-06 |
1 |
| C6-11 SLIDING FRICTION - LECTURE TABLE AND FELT |
70 |
| C6-12 SKIDDING AUTOMOBILE |
34 |
| C6-13 FRICTION BETWEEN GLASS SURFACES |
2 |
| C6-14 SOCIAL CLIMBER |
13 |
| C6-15 SOCIAL DESCENDER - FRICTION TOY |
5 |
| C6-16 SLIDING AND STATIC FRICTION |
19 |
| C6-17 FRICTION VS. PULLING ANGLE |
19 |
| C6-21 SUSPENDED ROD ON WATER |
2 |
| C7-01 AIR TRACK - ELASTIC COLLISIONS |
64 |
| C7-02 AIR TRACK - INELASTIC COLLISIONS |
52 |
| C7-03 AIR TRACK - SCATTERING WITHOUT CONTACT |
9 |
| C7-04 AIR TRACK - COLLISION VELOCITY MULTIPLIER |
11 |
| C7-11 COLLISIONS OF BALLS - EQUAL MASSES |
86 |
| C7-12 COLLISIONS OF BALLS - ONE LIGHTER MASS |
38 |
| C7-13 COLLISIONS OF BALLS - GRADUATED MASSES |
39 |
| C7-14 COLLISIONS OF BALLS WITH FLOOR |
46 |
| C7-15 COLLISIONS OF BALLS - 3 TO 1 MASS RATIO |
25 |
| C7-16 HAPPY AND UNHAPPY BALLS |
19 |
| C7-17 SUPERBALL |
22 |
| C7-18 COLLISIONS OF BALLS - ASTROBLASTER |
36 |
| C7-21 ENERGY AND MOMENTUM - COLLISION AND PROJECTILE |
5 |
| C7-22 COLLISION OF BALL WITH STUDENT |
1 |
| C7-23 MEDICINE BALL AND SKATEBOARD |
20 |
| C7-24 SILLY PUTTY |
2 |
| C7-25 SUPERBALL, VACUUM MUD AND WOOD BLOCK COLLISIONS |
16 |
| C7-42 AIR TABLE - COLLISIONS OF PUCKS |
23 |
| C7-43 AIR TABLE - SMALL - COLLISIONS OF PUCKS |
2 |
| C7-51 BALLISTIC PENDULUM - PELLET GUN |
17 |
| C7-52 BALLISTIC PENDULUM - LAB MODEL |
24 |
| C7-53 AIR TRACK - SPEED OF AIR GUN PELLET |
10 |
| C7-54 BALLISTIC PENDULUM - BOW AND ARROW |
9 |
| C8-01 GIANT PENDULUM |
66 |
| C8-02 GIANT PENDULUM FOR CLASSROOMS |
9 |
| C8-03 GALILEO'S PENDULUM |
66 |
| C8-04 HILL TRACK |
122 |
| C8-05 CONSERVATION OF ENERGY IN VERTICAL PROJECTILE |
9 |
| C8-06 PILE DRIVER |
54 |
| C8-11 INTERNAL VS. EXTERNAL ENERGY - SPRING-COUPLED SUPERBALLS |
41 |
| C8-12 JUMPING MASSES WITH INTERNAL SPRING |
42 |
| C8-13 BUNGEE JUMPER MODEL |
10 |
| C8-14 JUMPING CLAMP |
15 |
| C8-21 ROCK AND WASTE BASKET |
28 |
| C8-22 ENERGY CONSERVATION - SUPERBALL AND SOUNDING BOARD |
9 |
| C8-23 WORK DONE BY PUSHING ON WALL |
6 |
| C8-31 POWER - EXERCISE CYCLE |
4 |
| C8-32 POWER - CLIMBING LADDER |
3 |
| C8-33 POWER - USING GRAVITY |
4 |
| C8-34 POWER - INSTRUCTOR DRAGGING CONCRETE |
15 |
| D1-01 STROBOSCOPE AND FAN |
9 |
| D1-02 PELLET VELOCITY FROM ROTATING DISCS |
2 |
| D1-03 VELOCITY WHEEL |
1 |
| D1-11 CYCLOID - LIGHT BULB ON WHEEL |
8 |
| D1-12 ADDITION OF ANGULAR VELOCITIES |
1 |
| D1-21 ANGULAR VELOCITY - OBERBECK CROSS |
9 |
| D1-30 TRAJECTORY FROM CIRCULAR ORBIT - OVERHEAD PROJECTOR |
16 |
| D1-31 TRAJECTORY FROM SPIRAL |
34 |
| D1-32 TRAJECTORY FROM CIRCULAR ORBIT |
26 |
| D1-33 ROTATING MASS ON STRING |
90 |
| D1-34 ROTATING MASS ON SPRING |
56 |
| D1-35 CENTRIPETAL FORCE - ROTATING MASS |
28 |
| D1-36 AIR TABLE - CENTRIPETAL FORCE |
22 |
| D1-37 MUDSLINGER |
39 |
| D1-38 MAGNETSLINGER |
42 |
| D1-39 PENNY AND COAT HANGER |
17 |
| D1-40 CENTRIPETAL FORCE ON ROTATING RUBBER BAND |
7 |
| D1-41 ROTATING WATER BUCKET |
31 |
| D1-42 ROTATING WATER BUCKET WITH SPONGE |
10 |
| D1-43 INERTIAL FORCES - BALLS IN ROTATING JARS |
4 |
| D1-44 ACCELEROMETERS AND FRAMES OF |
7 |
| D1-51 BANKED CURVE MODEL |
48 |
| D1-52 FAIRGROUND ROTOR |
61 |
| D1-53 LOOP-THE-LOOP |
100 |
| D1-54 ROTATING MASSES IN SERIES |
8 |
| D1-55 ROTATING ELASTIC RINGS |
28 |
| D1-61 ROLLING VS. SLIDING |
27 |
| D1-62 CONSERVATION OF ENERGY IN ROLLING BODY |
14 |
| D1-63 MAXWELL PENDULUM - LARGE |
6 |
| D1-64 MAXWELL PENDULUM - SMALL |
10 |
| D1-65 YO-YO |
7 |
| D1-81 TRICYCLE |
13 |
| D1-82 ROLLING FRICTION |
10 |
| D1-83 SPOOL |
16 |
| D1-84 SPINNING CYLINDRICAL SHELL |
5 |
| D2-01 RING AND DISC ON INCLINED PLANE |
64 |
| D2-02 MISCELLANEOUS BODIES ON INCLINED PLANE |
72 |
| D2-03 CANS ON INCLINED PLANE - WITH AND WITHOUT |
9 |
| D2-04 MOMENT OF INERTIA RODS |
6 |
| D2-05 DUMBELL - VARIABLE MOMENT OF INERTIA |
5 |
| D2-11 HINGED STICK AND FALLING BALL |
38 |
| D2-12 TOPPLING CHIMNEY |
18 |
| D2-13 RACING PENDULA |
17 |
| D2-21 CENTER OF PERCUSSION - BAT AND MALLET |
8 |
| D2-23 |
1 |
| D2-31 OBERBECK CROSS |
17 |
| D2-32 AIR TABLE - LINEAR AND ANGULAR ACCEL OF A DISC |
1 |
| D2-32 AIR TABLE - LINEAR AND ANGULAR ACCEL OF A DISK |
2 |
| D2-41 MOMENTS OF INERTIA ABOUT 3 PRINCIPAL AXES |
4 |
| D2-43 MOMENT OF INERTIA - TORSIONAL CHAIR AND WEIGHTS |
12 |
| D3-01 MASSES SLIDING ON ROTATING CROSSARM |
38 |
| D3-02 MASS ON STRING - ORBITS WITH VARYING |
29 |
| D3-03 ROTATING CHAIR AND WEIGHTS |
117 |
| D3-04 ROTATING STOOL AND WEIGHTS |
8 |
| D3-05 ROTATING CHAIR AND BICYCLE WHEEL |
69 |
| D3-06 ROTATING CHAIR - HELICOPTER MODEL |
16 |
| D3-12 SWING MODEL |
6 |
| D3-22 INVERSE SPRINKLER - METAL MODEL |
2 |
| D3-31 AIR TABLE - TETHERBALL |
4 |
| D3-32 KEYWHIP |
23 |
| D3-41 AIR TABLE - RECTANGULAR PUCK |
7 |
| D4-01 GYROSCOPE WITH COUNTERWEIGHTS |
10 |
| D4-02 BICYCLE WHEEL GYROSCOPE WITH COUNTERWEIGHT |
30 |
| D4-03 BICYCLE WHEEL GYROSCOPE ON PIVOT |
88 |
| D4-04 BICYCLE WHEEL GYROSCOPE ON ROPE |
23 |
| D4-05 GYROSCOPE WITH GYMBAL RINGS |
11 |
| D4-06 ELECTRIC GYROSCOPE |
16 |
| D4-07 SUITCASE GYROSCOPE |
32 |
| D4-08 PRECESSION AND NUTATION OF GYROSCOPE - MODEL |
1 |
| D4-09 ZERO-TORQUE GYROSCOPE |
5 |
| D4-10 AIR GYROSCOPE |
12 |
| D4-21 SHIP STABILIZER |
5 |
| D4-22 MONORAIL CAR |
23 |
| D4-23 GYROCOMPASS |
1 |
| D4-24 GYROCOMPASS - MODEL |
9 |
| D4-25 GYROSCOPE - TOY |
5 |
| D4-26 GYROCOMPASS MODEL WITH ROTATING STAGE |
7 |
| D5-01 TIPPE TOP |
8 |
| D5-02 FOOTBALL |
5 |
| D5-04 SPINNING BOOK |
1 |
| D5-05 CELTS |
7 |
| D5-06 FIDDLESTICK |
7 |
| D5-07 STABLE AND UNSTABLE PRINCIPAL AXES |
5 |
| D5-08 WINEGLASS AND OLIVE |
4 |
| D5-11 CORIOLIS EFFECT - BALL ON ROTATING PLATFORM |
17 |
| D5-12 CORIOLIS EFFECT - WATER JET |
15 |
| D5-13 FOUCAULT PENDULUM - MODEL |
11 |
| D5-14 FOUCAULT PENDULUM - 6 FT |
2 |
| D5-15 CYCLONE AND ANTICYCLONE MODEL |
10 |
| D5-21 BALL ROLLING ON ROTATING DISC |
2 |
| D5-22 ROTATING PENDULUM |
1 |
| D5-23 ROTATING BEAD ON LOOP |
2 |
| D5-24 ROTATING PENDULA - LENGTH VS |
3 |
| E1-01 CAVENDISH EXPERIMENT - MODEL |
38 |
| E1-11 POTENTIAL WELL - MODEL |
57 |
| E1-12 MARBLE IN GLASS BOWL |
3 |
| E2-01 WORLD GLOBE |
97 |
| E2-02 MEASUREMENT OF RADIUS OF EARTH |
4 |
| E2-03 CRATER FORMATION MODEL |
10 |
| E2-12 FUSION MODEL |
25 |
| E2-13 SUNSPOT MODEL |
21 |
| E2-21 PHASES OF THE MOON |
19 |
| E2-22 UMBRA AND PENUMBRA |
20 |
| E2-23 UMBRA AND PENUMBRA - EXTENDED SOURCE |
11 |
| E2-24 UMBRA AND PENUMBRA - COLOR FILTERS |
6 |
| E2-31 SOLAR SYSTEM MODEL |
25 |
| E2-32 EPICYCLE MODEL - PTOLEMAIC SYSTEM OF PLANETS |
19 |
| E2-33 RETROGRADE MOTION |
23 |
| E2-34 BASIC PLANETARIUM |
18 |
| E2-35 PLANETS - RELATIVE SIZES MODEL |
13 |
| E2-36 DENSITY STRATIFICATION - FORMATION OF PLANETS |
12 |
| E2-41 TRANSPARENT CELESTIAL GLOBE |
36 |
| E2-45 ECLIPSING BINARY STAR MODEL - LIGHTS |
1 |
| E2-46 ECLIPSING BINARY STAR MODEL - SPHERES |
3 |
| E2-47 TWINKLING STAR |
6 |
| E2-48 NON-TWINKLING PLANET |
6 |
| E2-50 PULSAR MODEL - FLASHLIGHTS |
21 |
| E2-51 GRAVITATIONAL COLLAPSE - MODEL |
14 |
| E2-52 HYDROSTATIC EQUILIBRIUM IN STARS |
4 |
| E2-54 REFLECTING TELESCOPE - STRING MODEL |
2 |
| E2-61 GALAXY MODEL |
20 |
| E2-62 SPIRAL GALAXY - WATER ANALOG |
5 |
| E2-63 EXPANDING UNIVERSE |
11 |
| E2-71 AUDIOTAPE 1 MIN - MILLISECOND PULSAR |
4 |
| E2-72 AUDIOTAPE 14 MIN - NRAO PULSAR |
2 |
| F1-01 FLUID PRESSURE VS. DEPTH |
47 |
| F1-02 FLUID PRESSURE VS. DEPTH - ANEROID GAUGE |
21 |
| F1-03 PASCAL'S VASES |
10 |
| F1-04 EQUILIBRIUM TUBES |
35 |
| F1-05 DOES WATER SEEK ITS OWN LEVEL |
19 |
| F1-06 WATER SEEKS ITS OWN LEVEL |
21 |
| F1-11 HYDRAULIC PRESS |
46 |
| F1-12 PASCAL'S LAW - COILED TUBE PARADOX |
6 |
| F1-13 CONSTANT WATER PRESSURE |
4 |
| F1-14 PISTON DIAMETER VS. TRAVEL - WORKING MODEL |
13 |
| F1-21 LIPLESS STRAW |
8 |
| F2-01 ARCHIMEDES' PRINCIPLE |
55 |
| F2-02 CARTESIAN DIVER |
9 |
| F2-03 CARTESIAN DIVER - EXPLICIT VERSION |
11 |
| F2-04 BUOYANCY - SPHERE AND WATER |
10 |
| F2-05 BUOYANCY - BOAT AND ROCK |
40 |
| F2-06 BUOYANCY - SINKING BOAT |
8 |
| F2-07 BUOYANCY - PEPSI AND DIET PEPSI |
22 |
| F2-08 BUOYANCY - BATTLESHIP IN BATHTUB |
4 |
| F2-09 BUOYANCY - BALLOON IN HEAVY GAS |
2 |
| F2-10 BUOYANT BUBBLES |
1 |
| F2-11 HYDROMETER |
1 |
| F2-12 FUSION MODEL |
2 |
| F2-12 HOT AIR BALLOON |
35 |
| F2-13 BUOYANCY - EXPANDING BALLOON CONUNDRUM |
8 |
| F2-21 REACTION TO BUOYANT FORCE |
17 |
| F2-22 BUOYANCY PARADOX - ACCELERATED FRAME |
2 |
| F2-23 BUOYANCY PARADOX- INVERTED BLOCK |
1 |
| F2-25 BALANCE PARADOX - BUOYANCY WITH CROSSOVER |
1 |
| F2-26 BUOYANCY PARADOX - BALL IN TWO LIQUIDS |
3 |
| F2-31 BUOYANT BALLS IN BEANS |
18 |
| F2-32 FLOATING SQUARE BAR |
1 |
| F3-01 SURFACE TENSION - JOLLY BALANCE |
1 |
| F3-02 SURFACE TENSION - BALLOONS |
6 |
| F3-04 SURFACE TENSION - THREAD ON WATER |
1 |
| F3-05 SURFACE TENSION - THREAD IN FRAME |
5 |
| F3-31 WATER BELL |
1 |
| F4-01 VISCOSITY OF LIQUIDS |
3 |
| F4-02 VISCOSITY OF AIR |
1 |
| F4-05 PARACHUTE TOY |
2 |
| F4-11 LAMINAR AND TURBULENT FLOW OF AIR |
7 |
| F4-12 UNMIXING - GLYCERINE AND DYE |
2 |
| F4-14 WIND TUNNEL |
4 |
| F4-15 FLYING BIRD MODEL |
4 |
| F4-23 WATER PENDULUM |
1 |
| F4-25 CYCLONE IN A BOTTLE |
3 |
| F4-31 SIPHON |
4 |
| F4-32 SIPHON - CHAIN MODEL |
3 |
| F4-33 PYTHAGOREAN CUP |
2 |
| F4-41 DRUM AND CANDLE |
5 |
| F4-42 SMOKE RINGS USING GARBAGE CAN |
5 |
| F4-52 FORCE PUMP MODEL |
1 |
| F4-53 ARCHIMEDES' SCREW |
1 |
| F4-61 HERO'S FOUNTAIN |
6 |
| F4-62 HYDRAULIC RAM |
1 |
| F4-63 MARRIOTTE'S BOTTLE |
4 |
| F5-01 BERNOULLI'S PRINCIPLE - TOY CAR AND BALL |
45 |
| F5-02 BERNOULLI'S PRINCIPLE - BALL ABOVE MOVING CART |
12 |
| F5-03 BERNOULLI'S PRINCIPLE - THIN METAL SHEETS |
49 |
| F5-04 BERNOULLI'S PRINCIPLE - LARGE BALL AND FUNNEL |
25 |
| F5-05 BERNOULLI'S PRINCIPLE - SMALL BALL AND FUNNEL |
18 |
| F5-06 BERNOULLI'S PRINCIPLE - BEACH BALL |
42 |
| F5-07 BERNOULLI'S PRINCIPLE - SPOOL AND CARDBOARD |
26 |
| F5-08 BERNOULLI'S PRINCIPLE - MARBLE IN WATER JET |
4 |
| F5-09 BERNOULLI'S PRINCIPLE - HAIRDRYER AND PING PONG BALL |
29 |
| F5-10 CHIMNEY DRAW WITH WATER |
5 |
| F5-11 AIRPLANE WING |
7 |
| F5-21 VENTURI TUBE WITH MANOMETERS |
20 |
| F5-22 VENTURI TUBE WITH PING PONG BALLS |
23 |
| F5-24 VENTURI TUBE WITH WATER - MANOMETERS |
7 |
| F5-31 MAGNUS EFFECT - FLETTNER'S SHIP |
1 |
| F5-32 CURVE BALL |
7 |
| G1-01 EXAMPLES OF SIMPLE HARMONIC MOTION |
87 |
| G1-11 COMPARISON OF SHM AND UCM |
50 |
| G1-12 PENDULUM AND ROTATING BALL |
23 |
| G1-13 MASS ON STRING |
11 |
| G1-14 PENDULA WITH DIFFERENT MASSES |
40 |
| G1-15 PENDULA WITH 4 TO 1 LENGTH RATIO |
53 |
| G1-16 PENDULUM WITH LARGE-ANGLE OSCILLATION |
2 |
| G1-18 PENDULUM WITH FORCE SCALE |
1 |
| G1-20 PENDULUM RELEASE CONUNDRUM |
2 |
| G1-31 HOOKE'S LAW AND SHM |
29 |
| G1-32 MASS ON SPRING - WITH STAND |
23 |
| G1-33 MASSES AND SPRINGS WITH SPIDER |
14 |
| G1-34 AIR TRACK - SIMPLE HARMONIC MOTION |
5 |
| G1-35 MASS ON SPRING - EFFICIENT MODEL |
19 |
| G1-36 MASS ON SPRING WITH FORCE MEASUREMENT |
6 |
| G1-37 MASS ON SPRING WITH ULTRASONIC RANGER |
5 |
| G1-41 TORSIONAL PENDULUM - SMALL |
9 |
| G1-42 TORSIONAL PENDULUM - LARGE |
7 |
| G1-43 KLINGER TORSIONAL VIBRATION MACHINE |
3 |
| G1-51 INVERTED SPRING PENDULUM |
8 |
| G1-52 STRINGLESS PENDULUM |
23 |
| G1-53 SHM - CAN IN WATER TANK |
10 |
| G1-56 INVERTED PENDULUM - SABER SAW |
4 |
| G1-58 LOADED PENDULUM |
1 |
| G1-59 BIFILAR PENDULUM |
1 |
| G1-60 CHAOS - TWO BIFILAR PENDULA |
25 |
| G1-71 LISSAJOUS FIGURES - SAND PENDULUM |
3 |
| G1-73 LISSAJOUS FIGURES - FOURIER SYNTHESIZER |
4 |
| G1-74 LISSAJOUS FIGURES - LASER AND LOUDSPEAKER |
3 |
| G1-81 OUIJA WINDMILL |
3 |
| G1-82 PENDULUM WAVES |
15 |
| G1-83 PENDULUM WAVES - COMMERCIAL VERSION |
2 |
| G2-01 MASS ON SPRING - HAND HELD |
40 |
| G2-02 FORCED HARMONIC MOTION WITH DAMPING - LARGE |
39 |
| G2-03 RESONANCE IN TORSIONAL PENDULUM - PROJECTION |
15 |
| G2-04 DAMPED OSCILLATIONS |
11 |
| G2-05 AIR TRACK - DRIVEN AND DAMPED OSCILLATIONS |
2 |
| G2-07 PSYCHOACOUSTIC VIBRATION TRANSDUCER |
15 |
| G2-08 DRIVEN NON-LINEAR OSCILLATOR |
3 |
| G2-11 RESONANT SAW BLADES - HAND DRIVEN |
7 |
| G2-12 BARTON'S PENDULUMS |
10 |
| G2-21 COUPLED PENDULA |
19 |
| G2-22 BAR-COUPLED PENDULA |
11 |
| G2-23 SPRING-COUPLED PHYSICAL PENDULA |
12 |
| G2-24 COUPLED PENDULA - 100 TO 1 MASS RATIO |
1 |
| G2-27 COUPLED SERIES MASSES HANGING ON SPRINGS |
4 |
| G2-28 PENDULA WITH VARIABLE DRIVER |
2 |
| G2-41 WILBERFORCE PENDULUM |
11 |
| G2-42 ELASTIC PENDULUM |
3 |
| G3-01 SHIVE WAVE MACHINE - TRAVELING WAVES |
77 |
| G3-02 SHIVE WAVE MACHINE - SUPERPOSITION OF PULSES |
13 |
| G3-03 SHIVE WAVE MACHINE - REFLECTION OF PULSES |
35 |
| G3-04 SHIVE WAVE MACHINE - STANDING WAVES |
31 |
| G3-05 SHIVE WAVE MACHINE - PARTIAL REFLECTIONS |
12 |
| G3-06 SHIVE WAVE MACHINE - IMPEDANCE MATCHING |
1 |
| G3-21 TRANSVERSE WAVES ON A LONG SPRING |
81 |
| G3-22 VELOCITY OF TRANSVERSE WAVE ALONG A BEAD CHAIN |
2 |
| G3-23 TRANSVERSE WAVES ON A LONG SPRING - FREE END |
11 |
| G3-24 SLINKY ON LECTURE TABLE - TRAVELING WAVES |
21 |
| G3-25 SLINKY ON LECTURE TABLE - IMPEDANCE MISMATCH |
5 |
| G3-26 AIR TRACK - LONGITUDINAL WAVES |
5 |
| G3-28 SUSPENDED SLINKY |
83 |
| G3-29 SUSPENDED SLINKY - PORTABLE |
14 |
| G3-41 WAVE MODELS - PROJECTION |
7 |
| G3-42 TORSIONAL WAVES |
6 |
| G3-43 WHIP |
22 |
| G3-44 WAVE-DRIVEN BUMPER JACK |
14 |
| G3-46 STANDING WAVES IN A WIRE LOOP |
1 |
| G3-51 ROPE WAVE GENERATOR - FREQUENCY VS. WAVELENGTH |
60 |
| G3-52 ROPE WAVE GENERATOR - ROPE TENSION VS. WAVELENGTH |
44 |
| G3-53 STANDING WAVES IN A STRING |
18 |
| G4-01 RIPPLE TANK - PORTABLE |
4 |
| G4-02 RIPPLE TANK |
16 |
| G4-03 RIPPLE TANK - DOPPLER EFFECT |
15 |
| G4-13 DRUM HEAD - STANDING WAVES |
1 |
| G4-21 CHLADNI FIGURES - BOWED |
5 |
| G4-22 CHLADNI FIGURES - OSCILLATOR DRIVEN |
31 |
| G4-33 GROUP VELOCITY - TRANSPARENCIES |
1 |
| H1-01 BELL IN VACUUM |
78 |
| H1-02 SPEAKER AND CANDLE |
38 |
| H1-03 BELLS |
3 |
| H1-04 BELL IN VACUUM - PORTABLE |
18 |
| H1-11 MICROPHONE AND OSCILLOSCOPE |
17 |
| H1-12 VISIBLE WAVEFORMS ON LARGE SPEAKER |
24 |
| H1-13 WAVEFORM GENERATOR, SPEAKER AND OSCILLOSCOPE |
15 |
| H1-21 SPEED OF SOUND - PHASE CHANGE |
11 |
| H1-22 SPEED OF SOUND - USING PULSES |
15 |
| H1-23 SPEED OF SOUND IN ALUMINUM |
10 |
| H1-24 SPEED OF SOUND IN HELIUM |
9 |
| H1-25 SPEED OF SOUND BETWEEN TWO MICROPHONES |
1 |
| H1-26 SPEED OF SOUND IN GARDEN HOSE |
1 |
| H1-31 SOUND LEVEL METER |
6 |
| H1-32 WAVETEK AND AUDIO CART - EQUAL SOUND LEVEL STEPS |
13 |
| H1-41 ULTRASONIC MOTION DETECTOR |
7 |
| H1-42 ULTRASONIC PEST CONTROLLER |
2 |
| H1-43 ULTRASONICS AND HEARING |
8 |
| H1-51 AUDIOTAPE 42 MIN - SCIENCE OF SOUND - SHORT VERSION |
1 |
| H1-52 AUDIOTAPE 82 MIN - SCIENCE OF SOUND - LONG VERSION |
14 |
| H2-01 FOCUSING SOUND WITH CONCAVE REFLECTORS |
12 |
| H2-02 PARABOLIC MICROPHONE |
14 |
| H2-03 ACOUSTIC RADAR |
10 |
| H2-11 SOUND LENS |
14 |
| H2-21 AUDIBLE YOUNG'S EXPERIMENT - GROUP LISTENING |
60 |
| H2-22 INTERFERENCE - TRANSPARENCIES |
8 |
| H2-23 INTERFERENCE - KLINGER TRANSPARENT SLIDES |
17 |
| H2-24 AUDIBLE YOUNG'S EXPERIMENT - MIKE AND SCOPE |
8 |
| H2-25 QUINCKE'S INTERFERENCE TUBES |
10 |
| H2-26 PHASE REVERSAL BETWEEN STEREO SPEAKERS |
25 |
| H2-27 PHASE REVERSAL BETWEEN STEREO SPEAKERS - OSCILLATOR |
8 |
| H2-28 FOURIER SYNTHESIZER - ADDITION OF WAVES |
10 |
| H2-31 ACOUSTIC COLLIMATOR |
12 |
| H2-32 SPEAKER WITH BAFFLE |
44 |
| H2-33 SPEAKER WITH EXPONENTIAL HORN |
12 |
| H2-41 DOPPLER BALL |
129 |
| H2-42 DOPPLER EFFECT - TUNING FORK ON STRING |
31 |
| H2-51 BEATS - AUDIO OSCILLATORS, SPEAKERS & OSCILLOSCOPE |
29 |
| H2-52 BEATS AND RESONANCE - TUNING BARS |
48 |
| H2-53 BEATS - AUDIO OSCILLATORS AND SPEAKERS |
12 |
| H2-54 BEATS - MOIRE PATTERN |
2 |
| H2-55 BEATS AND RESONANCE - TUNING BOXES |
11 |
| H3-01 STANDING SOUND WAVES - TWO SOURCES |
9 |
| H3-02 STANDING SOUND WAVES - REFLECTION |
13 |
| H3-03 REFLECTION OF PULSES IN TUBE |
6 |
| H3-04 KUNDT'S TUBE - STROKED ROD |
1 |
| H3-05 KUNDT'S TUBE - OSCILLATOR DRIVEN |
11 |
| H3-11 TUNING FORKS AND RESONANT TUBE |
16 |
| H3-12 ROARING TUBE - 4 FT |
1 |
| H3-13 ROARING TUBE - 8 FT |
9 |
| H3-14 TWIRL-A-TUNE |
28 |
| H3-15 TWIRL-A-TUNE AND VACUUM CLEANER |
9 |
| H3-16 SINGING PIPES |
6 |
| H3-17 FLAME TUBE |
24 |
| H3-21 SOUND RESONANCE IN WATER TUBE |
11 |
| H3-22 RESONANCE TUBE - OSCILLATOR AND PLUNGER |
2 |
| H3-23 RESONANCE TUBE - OSCILLATOR, PLUNGER & MICROPHONE |
16 |
| H3-24 OPEN AND CLOSED PIPES |
20 |
| H3-25 GALTON'S WHISTLE |
2 |
| H3-31 DUCK CALL |
8 |
| H3-32 RESONANCE IN TUBE - POURING WATER |
12 |
| H3-33 RESONANCE FROM WHITE NOISE IN VARIABLE TUBE |
7 |
| H3-41 RESONANCE CURVES - HELMHOLTZ RESONATOR |
5 |
| H3-42 RESONANCE CURVES - OPEN AND CLOSED TUBES |
7 |
| H3-52 SONOMETER WITH WEIGHTS |
7 |
| H3-61 BEAKER BREAKER |
52 |
| H3-62 TEACUP STANDING WAVES |
8 |
| H3-71 STROKED ALUMINUM ROD |
29 |
| H3-74 TUNING BAR PARADOX - EFFECT OF WIDTH |
3 |
| H3-75 TUNING BAR MYSTERY |
2 |
| H4-01 FOURIER SYNTHESIS |
47 |
| H4-02 FOURIER ANALYSIS - WAVE SHAPE AND SPECTRUM |
17 |
| H4-04 FOURIER ANALYSIS - DIGITAL OSCILLOSCOPE |
14 |
| H4-11 SAVART'S DISCS |
5 |
| H4-12 LISSAJOUS FREQUENCY MEASUREMENT |
1 |
| H4-13 PLAYING IN JUST INTONATION |
2 |
| H4-15 TUNER - STROBE TYPE |
1 |
| H4-16 TUNER - KORG |
4 |
| H4-21 EDGE TONES |
1 |
| H4-22 BOTTLE BAND |
6 |
| H4-23 SOUND BOARD - TUNING FORK AND LECTURE TABLE |
3 |
| H4-31 VIOLIN |
15 |
| H4-32 VIBRAPHONE |
11 |
| H4-33 ORGAN PIPE |
3 |
| H4-34 GUITAR AND OSCILLOSCOPE |
5 |
| H4-35 MELLOPHONE |
1 |
| H4-36 LIP-BLOWN TUBE |
6 |
| H4-37 FLEXIBLE TRUMPET |
5 |
| H4-38 CORNET |
6 |
| H4-39 PLASTIC TUBE FLUTE |
2 |
| H4-40 PLASTIC TUBE CLARINET |
4 |
| H4-41 DRUM |
2 |
| H4-42 RECORDER |
6 |
| H4-51 MODULATION - AM AND FM |
17 |
| H4-52 SPECTRUM ANALYSIS OF MODULATION |
5 |
| H4-53 MOOG ROGUE SYNTHESIZER |
11 |
| H4-54 ARP 2600 ANALOG SYNTHESIZER |
1 |
| H4-55 YAMAHA DX7 DIGITAL SYNTHESIZER |
13 |
| H4-56 SYNTHESIZER INTRODUCTION - VOLTAGE CONTROL OF FREQUENCY |
11 |
| H4-57 FREQUENCY MODULATION BY FEEDBACK |
5 |
| H4-58 MODULATION - AM RADIO |
11 |
| H4-61 HARMONIC DISTORTION OF TAPE RECORDER |
4 |
| H4-64 DISTORTION IN AUDIO AMPLIFIER |
12 |
| H4-65 CROSSOVER NETWORK FOR SPEAKERS |
6 |
| H4-66 CROSSOVER NETWORK - LARGE ADVENT |
7 |
| H4-67 CD WITH HOLE |
20 |
| H4-68 MP3 COMPRESSION |
4 |
| H4-71 AUDIOTAPE 20 MIN - ACOUSTICS FOR THE MUSIC EDUCATOR |
1 |
| H4-81 AUDIO CART - COMPLETE AUDIO SYSTEM |
3 |
| H4-91 COMPACT DISC - MULTIMEDIA SOUND |
1 |
| H4-93 AUDIOTAPE - SWITCHED-ON BACH |
4 |
| H4-94 AUDIOTAPE - VOICE OF THE COMPUTER |
4 |
| H4-96 ELECTRONIC MUSIC WITH SPECTROGRAM |
1 |
| H5-01 EAR MODEL |
13 |
| H5-02 ANATOMY OF THE EAR - SLIDES AND ATLAS |
3 |
| H5-03 STETHOSCOPE |
2 |
| H5-11 WAVETEK AND AUDIO CART - FREQUENCY RANGE OF HEARING |
6 |
| H5-12 WAVETEKS AND AUDIO CART - CRITICAL BAND |
10 |
| H5-13 WAVETEKS AND AUDIO CART - MASKING |
7 |
| H5-14 ARP SYNTHESIZER - MASKING BY NARROW-BAND NOISE |
3 |
| H5-15 EFFECT OF HARMONIC CONTENT ON TONE QUALITY |
1 |
| H5-16 OHM'S LAW OF HEARING - FOURIER SYNTHESIZER |
4 |
| H5-17 WAVETEKS AND AUDIO CART - QUALITY BEATS |
7 |
| H5-18 DIFFERENCE FREQUENCIES - AUDIO CART |
5 |
| H5-19 SUM AND DIFFERENCE TONES |
6 |
| H5-20 HEARING SCIENCE LABORATORY |
8 |
| H5-21 THREE DECIBELS |
10 |
| H5-41 COMPACT DISC - AUDITORY DEMONSTRATIONS |
6 |
| H5-43 AUDIOTAPE 6 MIN - SHEPARD'S TONES |
1 |
| H6-01 FOURIER ANALYSIS OF VOICE |
7 |
| H6-02 VOCAL FORMANTS |
9 |
| H6-03 VOCAL FORMANTS MODEL |
8 |
| H6-04 HELIUM VOICE |
17 |
| H6-05 SULFUR HEXAFLUORIDE VOICE |
8 |
| H6-06 ARP SYNTHESIZER - WOW |
4 |
| H6-08 SOUND SPECTROGRAMS |
8 |
| H6-11 AUDIOTAPE 60 MIN - MUSIC OF TIBET |
2 |
| H6-12 AUDIOTAPE 60 MIN - THE HARMONIC CHOIR |
4 |
| H6-13 COMPACT DISC - HUUN-HUUR-TU |
5 |
| H6-14 AUDIOTAPE 5 MIN - SYNTHETIC SPEECH |
1 |
| H6-16 COMPACT DISC - COALESCENCE |
1 |
| H6-21 BIRD CALLS - AUDIOTAPE, SLIDES AND SPECTROGRAMS |
3 |
| I1-01 THERMOMETERS |
32 |
| I1-11 THERMAL EXPANSION - BALL AND HOLE |
37 |
| I1-12 THERMAL EXPANSION - BALL AND RING |
30 |
| I1-13 THERMAL EXPANSION - BIMETAL STRIP |
36 |
| I1-15 THERMAL EXPANSION - PIN BREAKER |
21 |
| I1-16 THERMAL CONTRACTION OF CUPS WITH LN |
1 |
| I1-17 THERMOSTAT - MODEL |
3 |
| I1-18 BIMETALLIC STRIP THERMOMETERS |
10 |
| I1-19 LAVA LAMP |
5 |
| I1-21 WATER NEAR 4 DEGREES CELCIUS |
2 |
| I1-32 RUBBER BAND CONTRACTION DURING HEATING |
2 |
| I1-42 THERMOELECTRIC FAN |
4 |
| I1-51 RUBBER AT LN TEMPERATURE |
14 |
| I1-52 TUNING FORK AT LN TEMPERATURE |
2 |
| I1-53 LEAD BELL AT LN TEMPERATURE |
10 |
| I1-61 DUST EXPLOSION |
1 |
| I1-62 DUST EXPLOSION MODEL |
1 |
| I1-63 HYDROGEN EXPLOSION |
85 |
| I1-64 BURNING CANDLE - COMBUSTION PROCESS |
1 |
| I2-01 CROOKES' RADIOMETER |
15 |
| I2-04 WIEN'S LAW OF THERMAL RADIATION |
60 |
| I2-06 THERMOPILE WITH AUDIO OSCILLATOR |
11 |
| I2-08 RADIATIVE HEAT TRANSFER |
27 |
| I2-09 DEWAR - TRANSPARENT WITH LN |
10 |
| I2-10 DEWARS - SILVERED AND UNSILVERED |
7 |
| I2-11 THERMOS BOTTLE |
14 |
| I2-12 RADIATION FROM COLD OBJECT |
5 |
| I2-21 THERMAL CONDUCTIVITY IN METALS |
38 |
| I2-22 THERMODYNAMICS BY TOUCH |
9 |
| I2-23 THERMAL CONDUCTIVITY IN METALS - PROJECTION |
5 |
| I2-24 THERMAL CONDUCTIVITY IN WATER |
9 |
| I2-26 LEIDENFROST PHENOMENON |
1 |
| I2-27 THERMAL EQUILIBRIUM BETWEEN ALUMINUM AND COPPER |
7 |
| I2-41 CONVECTION - POWDER IN WATER |
12 |
| I2-42 FALLING CANDLE |
9 |
| I2-43 CONVECTION - HOT PLATE |
44 |
| I2-44 CONVECTION - CANDLE IN CYLINDER |
9 |
| I2-45 CONVECTION - HIGH/LOW CANDLES IN CYLINDER |
1 |
| I3-01 BAROMETER - ANEROID TYPE |
3 |
| I3-03 GALILEO'S THERMOSCOPE |
1 |
| I3-04 GALILEAN THERMOMETER |
2 |
| I3-11 WATER BAROMETER - BOTTLE COLLAPSE |
5 |
| I3-12 WATER BAROMETER - CAN CRUSHER |
11 |
| I3-13 INVERTED GLASS OF WATER |
13 |
| I3-14 MAGDEBURG HEMISPHERES |
27 |
| I3-15 MAGDEBURG HEMISPHERES - PORTABLE |
13 |
| I3-16 COLLAPSE OF CAN - LARGE PUMP |
30 |
| I3-17 COLLAPSE OF CAN - PORTABLE PUMP |
10 |
| I3-18 VACUUM BAZOOKA |
18 |
| I3-19 LIFTING USING ATMOSPHERIC PRESSURE |
5 |
| I3-20 COLLAPSE OF CAN - LARGE CAN WITH MALLET |
18 |
| I3-31 IDEAL GAS LAW - VOLUME OF ONE MOLE |
11 |
| I3-32 ISOBARIC EXPANSION OF AIR |
3 |
| I3-33 HELIUM BALLOON ON LIQUID NITROGEN |
53 |
| I3-41 BOYLE'S LAW - PROJECTION |
30 |
| I3-42 BOYLED MARSHMALLOWS |
14 |
| I3-43 TIRE PRESSURE - UNLOADED AND LOADED |
5 |
| I3-51 CHARLES' LAW - PROJECTION |
22 |
| I3-52 CONSTANT VOLUME GAS THERMOMETER - ABSOLUTE |
35 |
| I4-01 PVT PHASE DIAGRAMS FOR CO2 AND H2O |
2 |
| I4-03 LATENT HEAT - ICE TO WATER TO STEAM |
26 |
| I4-12 BOILING WATER BY PUMPING |
13 |
| I4-13 CHANGE OF STATE OF LN - POPPING CAN LID |
14 |
| I4-14 CHANGE OF STATE WITH BANG |
8 |
| I4-15 CONDENSATION OF STEAM - GALLON CAN COLLAPSE |
14 |
| I4-16 DRINKING BIRD |
4 |
| I4-17 AIR BALLOON ON LIQUID NITROGEN |
43 |
| I4-18 PULSE GLASS |
8 |
| I4-19 CONDENSATION OF STEAM - SODA CAN COLLAPSE |
10 |
| I4-31 ICE BOMB |
45 |
| I4-32 FREEZING WATER BY PUMPING |
15 |
| I4-35 LOWERING THE FREEZING POINT OF WATER USING SALT |
8 |
| I4-51 SUBLIMATION OF DRY ICE - PROJECTION |
23 |
| I4-52 CARBON DIOXIDE BALLOON ON LIQUID NITROGEN |
11 |
| I4-61 BINARY PHASE TRANSITION - CRITICAL |
2 |
| I5-01 MECHANICAL EQUIVALENT OF HEAT - SHOT BAG |
20 |
| I5-02 TRANSFORMATION OF MECHANICAL ENERGY INTO HEAT |
23 |
| I5-03 MECHANICAL EQUIVALENT OF HEAT - JOULE'S METHOD |
18 |
| I5-11 ADIABATIC PROCESS - AIR PISTON WITH THERMISTOR |
21 |
| I5-12 ADIABATIC EXPANSION OF AIR - FOG IN BOTTLE |
8 |
| I5-13 ADIABATIC EXPANSION OF AIR - GRAPH OF TEMP |
4 |
| I5-14 LIQUEFICATION OF NITROGEN |
2 |
| I5-15 ADIABATIC EXPANSION OF CARBON DIOXIDE |
31 |
| I5-21 HEATING AIR BY COMPRESSION |
4 |
| I5-22 FIRE SYRINGE |
38 |
| I5-31 STEAM ENGINE - STATIONARY |
23 |
| I5-32 STIRLING ENGINE |
11 |
| I5-33 STEAM ROLLER |
24 |
| I5-34 STIRLING ENGINE - VISIBLE |
12 |
| I5-41 ENDOTHERMIC REACTION - ENTROPY |
5 |
| I5-51 SPECIFIC HEAT - ALUMINUM AND COPPER |
25 |
| I5-52 ELECTRIC CALORIMETER |
1 |
| I6-01 GAS PRESSURE - MODEL |
79 |
| I6-03 EQUIPARTITION OF ENERGY |
26 |
| I6-11 BROWNIAN MOTION WITH TV |
29 |
| I6-13 AIR TABLE - MODEL OF BROWNIAN MOTION |
1 |
| I6-21 GAS DIFFUSION - MODEL |
33 |
| I6-23 DIFFUSION - FOOD COLOR IN WATER |
22 |
| I6-25 DIFFUSION - DISTRIBUTION OF PING-PONG BALLS |
10 |
| I6-26 DIFFUSION - PERFUME |
6 |
| I6-31 MOLECULAR MOTION DEMO - BROWNIAN MOTION |
8 |
| I6-32 MOLECULAR MOTION DEMO - RANDOM MOTION IN GASES |
5 |
| I6-33 MOLECULAR MOTION DEMO - GAS PRESSURE |
9 |
| I6-34 MOLECULAR MOTION DEMO - TEMPERATURE OF A GAS |
10 |
| I6-38 MOLECULAR MOTION DEMO - BOYLE'S LAW |
2 |
| I6-39 MOLECULAR MOTION DEMO - CHARLES' LAW |
1 |
| I6-40 MOLECULAR MOTION DEMO - SOLIDS |
3 |
| I6-41 MOLECULAR MOTION DEMO - LIQUIDS |
1 |
| I6-51 ENTROPY - SORTING MARBLES |
6 |
| I6-52 ENTROPY - FOUR BALLS IN GAS DIFFUSION MODEL |
2 |
| I6-61 MAXWELL DEMON |
3 |
| I7-01 CRYSTAL MODELS - SET OF 2 |
5 |
| I7-02 CRYSTAL MODELS - BRAVAIS SET OF 14 |
6 |
| I7-04 CRYSTAL MODELS - CALCITE |
7 |
| I7-05 CRYSTAL MODELS - LARGE |
17 |
| I7-07 CLOSE-PACKED CRYSTALLITE |
3 |
| I7-11 FERMI SURFACE OF ALUMINUM |
2 |
| I7-21 SUPERCONDUCTIVITY - MAGNET LEVITATION |
22 |
| I7-31 FILLED CONDUCTION BANDS |
3 |
| J1-01 TRIBOELECTRICITY - CHARGING BY FRICTION |
66 |
| J1-02 TRIBOELECTRICITY - WATER JET IN AIR |
1 |
| J1-03 KILOVOLT CARPET |
19 |
| J1-04 KILOVOLT INSTRUCTOR |
2 |
| J1-05 CHARGED BALLOONS |
46 |
| J1-11 ELECTROPHORUS |
27 |
| J1-12 INDUCTION - ELECTROSCOPE |
43 |
| J1-13 ELECTROSTATIC INDUCTION |
16 |
| J1-21 ELECTROSTATIC ATTRAC AND REPULS - CHARGED CYLINDERS |
43 |
| J1-22 ELECTROSTATIC ATTRAC AND REPULS - WIMSHURST MACHINE |
15 |
| J1-23 ELECTRIC CHIMES |
1 |
| J1-24 ELECTROSTATIC HAIR RAISING |
44 |
| J1-25 VAN DE GRAAFF - TRAINED RABBIT |
19 |
| J1-26 VAN DE GRAAFF - REPULSION OF PIE PANS |
58 |
| J1-27 QUALITATIVE EXISTENCE OF ELECTROSTATIC FORCES |
11 |
| J1-28 COULOMBS LAW - PROJECTION |
5 |
| J1-29 VAN DE GRAAFF - PENDULUM |
9 |
| J1-41 CONDUCTORS AND INSULATORS |
37 |
| J2-03 VAN DE GRAAFF GENERATOR WITH GROUND SPHERE |
24 |
| J2-11 FRANKLIN'S WHEEL |
1 |
| J2-13 PLASMA MACHINE - EYE OF THE STORM |
7 |
| J2-14 LIGHTNING ROD SIMULATOR |
25 |
| J2-15 ELECTROSTATIC SMOKE PRECIPITATOR |
13 |
| J2-16 ELECTRODELESS GAS DISCHARGE |
1 |
| J2-17 ELECTRIC WIND |
1 |
| J2-31 JACOB'S LADDER |
3 |
| J2-32 JACOB'S LADDER - PORTABLE |
9 |
| J2-33 TESLA COIL - PORTABLE |
4 |
| J2-51 ELECTROSTATIC MOTOR |
1 |
| J3-01 EXISTENCE OF ELECTRIC FIELDS |
16 |
| J3-02 ELECTRIC FIELD OF RING OF CHARGE - MODEL |
22 |
| J3-03 ELECTRIC FIELD LINES |
35 |
| J3-04 ELECTRIC FIELD LINES - SOAP BUBBLES |
3 |
| J3-05 VAN DE GRAAFF - INDUCTION WITH SPHERES AND NEON BULBS |
4 |
| J3-06 ELLIPSOIDAL CONDUCTOR |
21 |
| J3-07 VAN DE GRAAFF - DISCHARGE TO VARIOUS RADII |
8 |
| J3-08 VAN DE GRAAFFS - INTERACTING FIELDS |
16 |
| J3-11 EQUIPOTENTIALS/LINES OF FORCE - ONE CHARGE |
37 |
| J3-12 EQUIPOTENTIALS/LINES OF FORCE - TWO POSITIVE CHARGES |
7 |
| J3-13 POTENTIAL SURFACE MODEL WITH E FIELD VECTORS |
21 |
| J3-14 FLUX MODEL - ELECTROSTATICS |
38 |
| J3-21 FARADAY CAGE |
40 |
| J3-22 FARADAY CAGE - ELECTROSCOPE |
15 |
| J3-23 FARADAY CAGE - RADIOWAVES |
48 |
| J3-24 HOLLOW CONDUCTING SPHERE |
31 |
| J4-01 PARALLEL PLATE CAPACITOR |
64 |
| J4-02 PARALLEL PLATE CAPACITOR - SYMMETRIC |
1 |
| J4-03 PARALLEL PLATE CAPACITOR - SERIES CAPACITORS |
7 |
| J4-04 PARALLEL PLATE CAPACITOR - IONIZATION OF AIR |
16 |
| J4-11 POLAR AND NONPOLAR LIQUIDS |
2 |
| J4-12 ELECTROSTATIC FORCE - MOVING LUMBER |
17 |
| J4-21 COLOR FILTER MODEL OF CHARGED DIELECTRIC |
8 |
| J4-22 PARALLEL PLATE CAPACITOR WITH DIELECTRIC |
38 |
| J4-24 FORCE ON DIELECTRIC IN ELECTRIC FIELD |
2 |
| J4-31 ENERGY STORED IN A CAPACITOR |
30 |
| J4-32 DISCHARGE OF CAPACITOR WITH BANG |
48 |
| J4-41 CAPACITORS |
27 |
| J4-42 CAPACITORS IN SERIES AND PARALLEL |
8 |
| J4-51 THEREMIN |
27 |
| J5-01 MAGNETIC FIELD OF A BAR MAGNET |
39 |
| J5-02 MAGNETIC FIELD - EME SET - BAR MAGNET |
7 |
| J5-03 MAGNETIC FIELD OF A BAR MAGNET - 3D VERSION |
11 |
| J5-04 MAGNETS |
29 |
| J5-05 MAGNET MODEL - FIELD LINES |
40 |
| J5-06 MAGNET - BROKEN BUT NO MONOPOLE |
32 |
| J5-07 MAGNETIZED WIRE FIELD LINE INDICATOR |
10 |
| J5-11 MAGNETIC FIELD - EME SET - STRAIGHT WIRE |
11 |
| J5-12 MAGNETIC FIELD - EME SET - TWO-TURN HELIX |
4 |
| J5-13 MAGNETIC FIELD - EME SET - SOLENOIDS |
3 |
| J5-14 MAGNETIC FIELD AROUND SINGLE AND PARALLEL WIRES |
16 |
| J5-15 MAGNETIC FIELD OF RING OF CURRENT - MODEL |
20 |
| J5-16 MAGNETIC FIELD OF WIRE, LOOP, SOLENOID |
54 |
| J5-17 HELMHOLTZ COILS AND HALL PROBE |
7 |
| J5-18 OERSTED EXPERIMENT |
9 |
| J5-19 MAGNET FIELDS OF PARALLEL AND |
9 |
| J5-20 OERSTED EXPERIMENT - LARGE COIL AND COMPASS |
10 |
| J5-31 QUADRUPOLE MAGNETIC |
1 |
| J5-32 MAGNETIC LEVITATION - PERMANENT MAGNET AND |
13 |
| J5-32 MAGNETIC LEVITATION - PERMANENT MAGNET AND ELECTROMAGNET |
1 |
| J5-33 TORQUE ON A BAR MAGNET |
28 |
| J5-34 DECLINATION AND INCLINATION NEEDLE |
4 |
| J5-35 MAGNETS INTERACTING ON PIVOTS |
8 |
| J5-36 MAGNETIC SPINNER |
2 |
| J5-41 FLUX MODEL - MAGNETOSTATIC |
4 |
| J5-51 GAUSSMETER |
9 |
| J6-01 ELECTROMAGNET WITH BANG |
11 |
| J6-02 ELECTROMAGNET WITH JUNK |
1 |
| J6-03 ELECTROMAGNET WITH JUNK - WITHOUT CORE |
1 |
| J6-04 LOW POWER - HIGH FORCE ELECTROMAGNET |
5 |
| J6-31 FORCE ON SOLENOID CORE |
2 |
| J6-32 FORCE ON SOLENOID CORE - SMALL |
1 |
| J6-33 ELECTROMAGNETIC GUN |
6 |
| J7-01 LODESTONE |
20 |
| J7-11 PARAMAGNETISM AND DIAMAGNETISM |
29 |
| J7-12 CURIE POINT OF IRON |
6 |
| J7-13 CURIE POINT OF NICKEL |
21 |
| J7-14 CURIE POINT OF DYSPROSIUM |
5 |
| J7-21 HYSTERESIS |
10 |
| J7-22 MAGNETIC DOMAINS WITH TV |
9 |
| J7-23 MAGNETIC DOMAINS - MODEL |
18 |
| J7-24 BARKHAUSEN EFFECT |
8 |
| J7-31 VISIBLE HARD DRIVE |
9 |
| K1-01 FORCE BETWEEN CURRENT-CARRYING WIRES |
28 |
| K1-02 FORCE BETWEEN CURRENT-CARRYING WIRES - PROJECTION |
14 |
| K1-03 FORCE ON CURRENT IN MAGNETIC FIELD |
73 |
| K1-04 FORCE ON CURRENT IN MAGNETIC FIELD - PORTABLE |
6 |
| K1-05 FORCE BETWEEN CURRENT-CARRYING COILS |
19 |
| K1-06 CURRENT BALANCE |
1 |
| K1-11 CATHODE-RAY TUBE - DEFLECTION BY CURRENT |
13 |
| K1-12 CATHODE-RAY TUBE - DEFLECTION BY MAGNET |
74 |
| K1-14 OSCILLOSCOPE CRT - DEFLECTION BY MAGNET |
19 |
| K1-15 OSCILLOSCOPE CRT - DEFLECTION BY ELECTRIC FIELD |
9 |
| K1-16 VISIBLE CRT |
5 |
| K1-21 TORQUE ON CURRENT LOOP IN MAGNETIC FIELD |
56 |
| K1-22 TORQUE ON 500-TURN COIL IN MAGNETIC FIELD |
20 |
| K1-23 TORQUE ON CURRENT LOOP - MODEL |
16 |
| K1-31 MAGNETOHYDRODYNAMIC GENERATOR |
1 |
| K1-41 BARLOW'S DISC |
3 |
| K1-51 HALL EFFECT |
16 |
| K2-01 EARTH INDUCTOR |
43 |
| K2-02 INDUCTION IN A SINGLE WIRE |
36 |
| K2-03 FARADAY'S EXPERIMENT ON INDUCTION |
45 |
| K2-04 FARADAY'S EXPERIMENT - EME SET - 20, 40, 80 TURN COILS |
78 |
| K2-05 FARADAY'S EXPERIMENT - CONCENTRIC COILS |
9 |
| K2-11 SELF INDUCTION |
10 |
| K2-12 SELF-INDUCTION - DEMOUNTABLE TRANSFORMER |
10 |
| K2-22 INDUCTION COIL WITH LIGHT BULB |
32 |
| K2-23 INDUCTOR - ARCING SWITCH |
3 |
| K2-24 MUTUAL INDUCTION |
16 |
| K2-25 MUTUAL INDUCTION - DEMOUNTABLE TRANSFORMER |
3 |
| K2-27 MUTUAL INDUCTION - M12 eq M21 MEASUREMENT |
3 |
| K2-28 DEMOUNTABLE TRANSFORMER - 10KV ARC |
3 |
| K2-29 COIL AND MAGNET WITH LED SENSOR |
4 |
| K2-41 LENZ'S LAW - ROLLING RODS |
19 |
| K2-42 LENZ'S LAW - MAGNET IN ALUMINUM TUBE |
46 |
| K2-43 LENZ'S LAW - PERMANENT MAGNET AND COILS |
25 |
| K2-44 EDDY CURRENT PENDULUM |
38 |
| K2-45 EDDY CURRENTS - MAGNET AND SOFT DRINK CAN |
1 |
| K2-46 MAGNET LEVITATION ABOVE SPINNING DISC |
8 |
| K2-48 EDDY CURRENT MOTOR |
2 |
| K2-61 THOMSON'S COIL |
23 |
| K2-62 CAN SMASHER - ELECTROMAGNETIC |
33 |
| K2-63 DISPLACEMENT CURRENT MODEL |
6 |
| K2-65 INDUCTION AND CAPACITOR FLASHLIGHT |
4 |
| K3-01 INDUCTION IN A TRANSFORMER |
7 |
| K3-02 DEMOUNTABLE TRANSFORMER - SINGLE SPARKS |
3 |
| K3-03 DEMOUNTABLE TRANSFORMER - V VS N - PROJ METER |
5 |
| K3-04 DEMOUNTABLE TRANSFORMER - V VS N - OSCILLOSCOPE |
11 |
| K3-05 DEMOUNTABLE TRANSFORMER - WELDER |
12 |
| K3-06 DEMOUNTABLE TRANSFORMER - PRIMARY CURRENT VS |
6 |
| K4-01 AC/DC GENERATOR |
39 |
| K4-02 MAGNETOELECTRIC GENERATOR WITH LAMP |
39 |
| K4-03 MAGNETOELECTRIC GENERATOR WITH BELL |
1 |
| K4-04 MAGNETOELECTRIC GENERATOR WITH AC INDICATOR BULB |
2 |
| K4-07 BICYCLE GENERATOR |
45 |
| K4-21 ST. LOUIS MOTOR |
3 |
| K4-22 DC MOTOR |
4 |
| K4-24 AC/DC MOTOR |
6 |
| K4-25 DC MOTOR - HOMEMADE |
4 |
| K4-41 MOTOR-GENERATOR PAIR |
12 |
| K5-01 PIEZOELECTRICITY |
3 |
| K5-02 PIEZOELECTRIC CRYSTAL - AUDIBLE |
3 |
| K5-11 BATTERY MODEL |
5 |
| K5-12 BATTERY AND CURRENT - WORKING MODEL |
26 |
| K5-13 ELECTRIC CURRENT - MODEL |
38 |
| K5-14 ELECTRIC CELL |
9 |
| K5-16 CARRIER CURRENT DENSITY MODEL |
3 |
| K5-21 AC PLUG CIRCUIT CHECKER |
3 |
| K5-23 ROTATING TWO-COLOR LED |
5 |
| K5-31 OHM'S LAW |
42 |
| K5-32 RESISTANCE VS DIAMETER AND LENGTH |
11 |
| K5-33 CONDUCTIVITY OF SALT SOLUTION |
7 |
| K5-34 THERMAL COEFFICIENT OF RESISTANCE IN COPPER |
2 |
| K5-35 RESISTORS AT LN TEMPERATURE |
1 |
| K5-36 RESISTORS AT LN TEMPERATURE - LIGHT BULB INDICATOR |
17 |
| K5-41 V-I CURVES FOR OHMIC AND NON-OHMIC DEVICES |
4 |
| K5-42 TRANSISTOR |
5 |
| K5-43 NON-OHMIC DEVICE - V VS. I |
11 |
| K5-44 NON-OHMIC DEVICE - LIGHT BULB |
4 |
| K5-45 SEMICONDUCTOR MODEL |
2 |
| K6-01 SERIES AND PARALLEL LIGHTS - TWO BULBS |
42 |
| K6-02 SERIES AND PARALLEL LIGHTS - FIVE BULBS |
19 |
| K6-03 SERIES AND PARALLEL LIGHTS - BATTERY AND CLIP-ON WIRES |
23 |
| K6-11 CIRCUIT PARADOXES |
22 |
| K6-12 SERIES/PARALLEL LIGHT CIRCUIT CONUNDRUM |
11 |
| K6-21 HEATING IN CURRENT-CARRYING WIRE |
12 |
| K6-22 ENERGY CONVERSION - IMMERSION HEATER |
13 |
| K6-23 HOT DOG COOKER - 110 VAC |
1 |
| K6-33 WHEATSTONE BRIDGE |
3 |
| K6-34 METER WITH SHUNTS AND MULTIPLIERS |
2 |
| K6-35 VOLTAGE DIVIDER |
3 |
| K6-41 DIODE RECTIFIERS AND FILTERS |
2 |
| K6-43 POWER SUPPLY DEMONSTRATOR |
1 |
| K6-51 KIRCHHOFF'S LAWS |
2 |
| K6-52 IMPEDANCE MATCHING - BATTERY AND |
2 |
| K6-61 OSCILLATOR AND TV MONITOR |
3 |
| K7-01 RL CIRCUIT - 50 MICROSECOND TIME CONSTANT |
13 |
| K7-02 RL CIRCUIT - L/R TIME CONSTANT |
21 |
| K7-03 INDUCTOR DELAYING A LAMP |
23 |
| K7-04 RL CIRCUIT - FIELD COLLAPSE WITH FLUORESCENT BULB |
10 |
| K7-11 RC CIRCUIT - RC TIME CONSTANT - |
24 |
| K7-12 RC CIRCUIT - RC TIME CONSTANT - PROJECTION METERS |
7 |
| K7-13 RC CIRCUIT - RC TIME CONSTANT - STORAGE SCOPE |
2 |
| K7-14 RC CIRCUIT - 100 MICROSECOND TIME CONSTANT |
5 |
| K7-15 CURRENT IN RC CIRCUIT |
12 |
| K7-21 RLC CIRCUIT - 10 KHZ - RESONANCE |
35 |
| K7-22 RLC CIRCUIT - 10 KHZ - DAMPED OSCILLATIONS |
25 |
| K7-23 RLC CIRCUIT - 60 HZ |
2 |
| K7-24 RLC CIRCUIT - 60 HZ WITH LIGHT BULB LOAD |
6 |
| K7-26 RLC CIRCUIT - 0.3 HZ |
5 |
| K7-27 RLC CIRCUIT - COMPLETE |
24 |
| K7-28 RLC CIRCUIT - O.6 HZ WITH STORAGE SCOPE |
3 |
| K7-29 RLC CIRCUIT - 0.6 HZ - TRANSIENTS |
1 |
| K7-30 RLC CIRCUIT - 10 KHZ - RINGING |
1 |
| K7-31 RLC CIRCUIT - OVER/UNDER/CRITICAL DAMPING |
7 |
| K7-43 RELAXATION OSCILLATOR - NEON LAMP |
15 |
| K7-45 LOW AND HIGH PASS FILTERS |
9 |
| K7-46 PHASOR DISC |
24 |
| K7-61 TESLA COIL |
11 |
| K8-01 ELECTROMAGNETIC WAVE - MODEL |
128 |
| K8-02 INTRODUCTION TO LIGHT BEHAVIOR |
1 |
| K8-03 LIGHT NANOSECOND |
35 |
| K8-04 SPEED OF LIGHT |
33 |
| K8-05 ELECTROMAGNETIC PLANE WAVE MODEL |
18 |
| K8-11 MICROWAVES - STANDING WAVES |
10 |
| K8-12 RADIOWAVES - STANDING WAVES |
11 |
| K8-13 RADIOWAVES - LECHER WIRE STANDING WAVES |
3 |
| K8-14 RADIOWAVES - STANDING WAVES IN AN ANTENNA |
4 |
| K8-21 MICROWAVES - WAVE GUIDES |
4 |
| K8-22 MICROWAVES - TUBULAR WAVEGUIDE |
5 |
| K8-31 TRANSMISSION LINE SAMPLE |
3 |
| K8-32 PULSES IN TRANSMISSION LINES |
3 |
| K8-41 HERZIAN DIPOLES |
8 |
| K8-42 RADIOWAVES - ENERGY AND DIPOLE PATTERN |
41 |
| K8-43 RADIOWAVES - FREQ MEASUREMENT WITH OSCILLOSCOPE |
7 |
| K8-44 RADIOWAVES - COUPLING OF WAVES |
6 |
| K8-45 RADIO WAVES FROM SPARK |
7 |
| K8-51 MICROWAVE OVEN |
18 |
| L1-01 ARC LAMP - PROJECTION OF ARC |
2 |
| L1-02 TUNGSTEN-HALOGEN LAMP - PROJECTION OF LAMP |
4 |
| L1-03 LIGHT BULB WITHOUT VACUUM |
13 |
| L1-04 POINT SOURCE - FLASHLIGHT BULB |
12 |
| L1-05 PERSISTANCE OF A FILAMENT |
1 |
| L1-11 INVERSE SQUARE LAW - LIGHT BULB AND |
11 |
| L1-11 INVERSE SQUARE LAW - LIGHT BULB AND RADIOMETER |
4 |
| L1-12 INVERSE SQUARE LAW - OVERHEAD PROJECTOR AND TWO-METER STICK |
1 |
| L1-21 PINHOLE IMAGE - GROUND GLASS SCREEN |
5 |
| L1-22 OPTICAL BOARD - PINHOLE CAMERA |
1 |
| L1-24 PINHOLE TV CAMERA |
1 |
| L1-32 VISIBLE LASER |
9 |
| L2-01 OPTICAL BOARD - PLANE MIRROR |
44 |
| L2-02 OPTICAL BOARD - RAY DIAGRAM - PLANE MIRROR |
9 |
| L2-03 MICROWAVES - REFLECTION |
6 |
| L2-04 VIRTUAL IMAGE DETECTOR - PLANE MIRROR |
8 |
| L2-05 PERVERTED IMAGE - AXES IN MIRROR |
17 |
| L2-06 MAGIC TRICK - DISAPPEARING RABBIT |
38 |
| L2-07 PERVERTED IMAGE - LIGHT |
11 |
| L2-21 OPTICAL BOARD - HALF-SILVERED MIRROR |
5 |
| L2-22 INFINITY MIRROR |
20 |
| L2-23 MIRROR BOX |
8 |
| L2-24 PARTIALLY SILVERED CYLINDER |
2 |
| L2-25 LIGHT BULB IN WATER |
13 |
| L2-26 HALF-SILVERED MIRROR - RAT IN TUBE |
1 |
| L2-41 OPTICAL BOARD - CORNER REFLECTOR |
3 |
| L2-42 CORNER REFLECTOR - MIRROR TILES |
27 |
| L2-43 CORNER REFLECTOR - ROTATING |
1 |
| L2-44 CORNER REFLECTOR - HAND HELD |
24 |
| L2-46 CORNER REFLECTOR - MODELS |
2 |
| L2-61 MIRROR TILES WITH LIGHT BULB |
1 |
| L2-62 MULTIPLE REFLECTIONS WITH MIRROR TILES |
4 |
| L2-63 TELEIDOSCOPE |
1 |
| L2-65 METAMORPHOSIS OF A CUBE |
3 |
| L3-01 OPTICAL BOARD - CONVEX SPHERICAL MIRROR |
19 |
| L3-02 OPTICAL BOARD - RAY DIAGRAM - CONVEX MIRROR |
4 |
| L3-03 LARGE CONVEX MIRROR |
27 |
| L3-11 OPTICAL BOARD - CONCAVE SPHERICAL MIRROR |
28 |
| L3-12 OPTICAL BOARD - RAY DIAGRAM - CONCAVE |
9 |
| L3-14 LARGE CONCAVE MIRROR |
29 |
| L3-15 ROTATING LIQUID MIRROR |
1 |
| L3-16 FOCUSING OF HEAT WAVES BY MIRRORS |
35 |
| L3-18 FOCUSING OF HEAT WAVES - OVERHEAD PROJECTOR |
10 |
| L3-19 PENNY AND PARABOLIC MIRRORS |
27 |
| L3-20 APPARENT REFLECTION FROM REAL IMAGE |
5 |
| L3-21 LIGHT BULB AND PARABOLIC MIRROR |
41 |
| L3-22 PENDULUM AND SPHERICAL MIRROR |
3 |
| L3-23 IMAGE ON SCREEN USING CONCAVE MIRROR |
18 |
| L3-24 OPTICAL BOARD - SPHERICAL AND PARABOLIC |
3 |
| L3-25 IMAGE LOCATION WITH TV CAMERA - CONCAVE MIRROR |
1 |
| L3-31 GIANT MIRROR - CONCAVE AND CONVEX |
22 |
| L3-41 ANAMORPHIC ART |
3 |
| L3-42 CHAOS - FOUR REFLECTING SPHERES |
1 |
| L4-01 OPTICAL BOARD - RECTANGULAR SLAB |
37 |
| L4-02 REFRACTION - BEER MUG IN WATER |
18 |
| L4-03 REFRACTION - ROD IN WATER |
27 |
| L4-04 REFRACTION - CAN IN WATER TANK |
11 |
| L4-05 REFRACTION IN FISH TANK - PORTABLE |
4 |
| L4-06 REFRACTION IN CLOUDY WATER |
33 |
| L4-22 MIRAGE - LASER AND HOT WIRE |
1 |
| L4-23 BENDING OF LASER BEAM IN SUGAR SOLUTION |
19 |
| L4-31 DISAPPEARANCE OF GLASS IN LIQUID |
30 |
| L4-32 |
1 |
| L4-41 MICROWAVES - REFRACTION BY PRISM |
6 |
| L5-01 OPTICAL BOARD - TOTAL INTERNAL REFLECTION |
16 |
| L5-02 TOTAL INTERNAL REFLECTION IN LONG TANK |
31 |
| L5-03 FISH IN TANK - TOTAL INTERNAL REFLECTION |
4 |
| L5-04 MICROWAVES - TOTAL INTERNAL REFLECTION |
3 |
| L5-11 LASER WATERFALL |
37 |
| L5-12 PLEXIGLASS SPIRAL |
11 |
| L5-13 PLEXIGLASS SPIRAL WITH LASER |
19 |
| L5-14 LASER AND PLEXIGLASS TUBE |
11 |
| L5-21 FIBER OPTICS ARRAY |
2 |
| L5-22 FIBER OPTICS ARRAY - PROJECTION |
1 |
| L5-23 FIBER OPTICS TREE |
16 |
| L5-24 FIBER OPTICS - COMMUNICATION LINE |
18 |
| L5-33 FRUSTRATED TOTAL INTERNAL REFLECTION - TWO PRISMS & LASER |
4 |
| L5-34 FRUSTRATED TOTAL INTERNAL REFLECTION - MICROWAVES |
3 |
| L6-01 OPTICAL BOARD - CONVERGING SPHERICAL LENS |
27 |
| L6-02 OPTICAL BOARD - CIRCULAR SLAB |
3 |
| L6-03 OPTICAL BOARD - HYPERBOLIC LENS |
4 |
| L6-04 OPTICAL BOARD - RAY DIAGRAM - REAL IMAGE POS LENS |
20 |
| L6-05 OPTICAL BOARD - RAY DIAGRAM - VIRTUAL IMAGE |
4 |
| L6-06 MULTIPLE PINHOLES AND LENS RECOMBINATION |
11 |
| L6-07 MICROWAVES - LENS |
2 |
| L6-08 REAL IMAGE OF CONVERGING LENS - LIGHT BULB |
22 |
| L6-09 REAL IMAGE OF CONVERGING LENS |
8 |
| L6-11 OPTICAL BOARD - DEPTH OF FIELD |
1 |
| L6-12 MAGNIFYING LENS IN WATER |
5 |
| L6-13 OPTICAL BOARD - PARALLEL RAY FOCUS |
2 |
| L6-14 IMAGE OF CONVEX LENS - WITH AND WITHOUT BAFFLE |
11 |
| L6-21 OPTICAL BOARD - DIVERGING SPHERICAL LENS |
11 |
| L6-22 OPTICAL BOARD - RAY DIAGRAM - VIRTUAL IMAGE NEG LENS |
2 |
| L6-31 STRING MODEL - SPHERICAL ABERRATION |
6 |
| L6-33 STRING MODEL - CHROMATIC ABERRATION |
6 |
| L6-34 OPTICAL BOARD - CHROMATIC ABERRATION IN LENS |
1 |
| L6-35 CHROMATIC ABERRATION - ARC LAMP AND 200 MM LENS |
2 |
| L6-36 STRING MODEL - ASTIGMATISM |
3 |
| L6-37 ASTIGMATISM |
3 |
| L6-41 DISTORTED IMAGE - PINCUSHION AND BARREL |
2 |
| L6-52 FRESNEL LENSES - MISCELLANEOUS |
8 |
| L6-53 FRESNEL LENS MAGNIFIER |
6 |
| L6-55 FRESNEL FLASHLIGHT |
1 |
| L6-56 FRESNEL SPOTLIGHT |
3 |
| L7-01 LIGHT METERS |
1 |
| L7-03 SHUTTER SPEED OF A CAMERA |
7 |
| L7-04 DEPTH OF FIELD AND FIELD OF VIEW |
12 |
| L7-05 VIDEO CAMERA WITH VARIOUS LENSES |
5 |
| L7-06 MINICAM WITH WIDE-ANGLE, TELEPHOTO AND MACROZOOM LENS |
5 |
| L7-11 OPTICAL BOARD - ASTRONOMICAL TELESCOPE |
4 |
| L7-13 OPTICAL BOARD - GALILEAN TELESCOPE |
3 |
| L7-14 OPTICAL BOARD - REFLECTING TELESCOPE |
4 |
| L7-21 MAGNIFYING GLASS - TV |
9 |
| L7-22 MICROSCOPE - TV |
5 |
| L7-23 ASTRONOMICAL TELESCOPE - TV |
5 |
| L7-24 TERRESTRIAL TELESCOPE - TV |
2 |
| L7-25 GALILEAN TELESCOPE - TV |
5 |
| L7-31 PRINCIPAL PLANES |
1 |
| L7-32 FIELD LENS |
3 |
| L7-33 OVERHEAD PROJECTOR - DISSECTED |
1 |
| M1-01 LASER DIFFRACTION - FIXED SINGLE SLIT |
35 |
| M1-02 LASER DIFFRACTION - VARIABLE SINGLE SLIT |
36 |
| M1-03 SINGLE SLIT DIFFRACTION - FRESNEL & FRAUNHOFFER |
4 |
| M1-04 LASER DIFFRACTION - WIRES |
6 |
| M1-05 FINGERS AND SODIUM SOURCE - VARIABLE SINGLE SLIT |
11 |
| M1-11 LASER DIFFRACTION - FIXED DOUBLE SLITS |
58 |
| M1-12 INTERFERENCE - TRANSPARENCIES |
9 |
| M1-13 INTERFERENCE - KLINGER TRANSPARENT SLIDES |
17 |
| M1-14 MICROWAVES - INTERFERENCE OF TWO POINT SOURCES |
5 |
| M1-15 MICROWAVES - YOUNG'S DOUBLE SLIT INTERFERENCE |
12 |
| M1-16 INTERFERENCE OF LIGHT - SOUND WAVE MODEL |
13 |
| M1-21 LASER DIFFRACTION - MULTIPLE SLITS |
23 |
| M1-22 LASER DIFFRACTION - GRATINGS |
22 |
| M1-33 LASER DIFFRACTION - PHONOGRAPH RECORD |
3 |
| M1-34 LASER DIFFRACTION - COMPACT DISC |
5 |
| M1-35 LASER DIFFRACTION - VIDEODISC |
3 |
| M1-41 PEACOCK FEATHER |
11 |
| M1-42 IRIDESCENT GREEN JUNE BEETLE |
4 |
| M2-01 LASER DIFFRACTION - PINHOLES |
27 |
| M2-02 LASER DIFFRACTION - OPAQUE DISCS |
12 |
| M2-03 LASER DIFFRACTION - POISSON'S BRIGHT SPOT |
9 |
| M2-04 LASER DIFFRACTION - HALO |
3 |
| M2-05 PINHOLE AND OPAQUE DISC - FRESN & FRAUN DIFFRAC |
1 |
| M2-21 MICROWAVES - DIFFRACTION BY CIRCULAR APERTURE |
4 |
| M2-31 HALO BY DIFFRACTION FROM SMALL |
1 |
| M3-01 MICHELSON INTERFEROMETER - LASER LIGHT |
9 |
| M3-02 MICHELSON INTERFEROMETER - WHITE LIGHT |
2 |
| M3-06 MICHELSON INTERFEROMETER - GAS CELL |
2 |
| M3-21 MICROWAVES - MICHELSON INTERFEROMETER |
1 |
| M3-41 FABRY-PEROT INTERFEROMETER - LASER LIGHT |
1 |
| M4-01 INTERFERENCE IN THIN MICA SHEET - PROJECTION |
5 |
| M4-02 NEWTON'S RINGS - PROJECTION |
14 |
| M4-03 WEDGE INTERFERENCE FILTER |
2 |
| M4-04 INTERFERENCE BETWEEN GLASS PLATES |
6 |
| M4-11 ANTI-REFLECTIVE COATING |
14 |
| M4-21 SOAP FILM INTERFERENCE - SIMPLE LARGE VERSION |
31 |
| M4-22 SOAP FILM INTERFERENCE - PROJECTION |
1 |
| M4-23 SOAP FILM INTERFERENCE - ROTATING HEMISPHERE |
2 |
| M4-24 SOAP FILM INTERFERENCE - CORRIDOR DISPLAY |
1 |
| M4-25 INTERFERENCE IN LARGE SOAP FILM - SODIUM AND WHITE |
9 |
| M4-31 IRIDESCENT BOTTLE |
5 |
| M5-01 LASER DIFFRACTION - TWO DIMENSIONAL GRATINGS |
1 |
| M5-02 LASER DIFFRACTION - MESHES |
3 |
| M5-03 LASER DIFFRACTION - OPTICAL CRYSTALS |
1 |
| M5-04 LASER DIFFRACTION - EXOTIC ARRAYS |
1 |
| M5-11 LASER DIFFRACTION - PIN POINT |
2 |
| M5-12 LASER DIFFRACTION - RAZOR EDGE |
8 |
| M5-21 LASER INTERFERENCE - FRESNEL'S MIRROR |
1 |
| M5-23 LLOYD'S MIRROR - WHITE LIGHT |
1 |
| M5-24 LASER INTERFERENCE - FRESNEL'S BIPRISM |
1 |
| M5-25 FRESNEL BIPRISM - WHITE LIGHT |
1 |
| M5-26 LASER INTERFERENCE - FRONT AND REAR LENS SURFACES |
1 |
| M5-41 SCHLIEREN IMAGES - CONVECTION CURRENTS |
1 |
| M6-01 HOLOGRAM - LASER LIGHT - VOLKSWAGEN |
8 |
| M6-02 HOLOGRAM - LASER LIGHT - THE SCIENTIST |
4 |
| M6-03 HOLOGRAM - LASER LIGHT - MISC INDIVIDUAL VIEWING |
1 |
| M6-11 HOLOGRAM - MULTIPLEX - BASEBALL |
8 |
| M6-12 HOLOGRAM - MULTIPLEX - THE KISS |
8 |
| M6-13 HOLOGRAM - MULTIPLEX - KING KONG |
1 |
| M6-21 HOLOGRAM - REFLECTION - MARCHING BAND |
2 |
| M6-22 HOLOGRAM - REFLECTION - ORRERY |
2 |
| M6-23 HOLOGRAM - REFLECTION - OWLS |
6 |
| M6-24 HOLOGRAM - REFLECTION - WEREWOLF |
8 |
| M7-01 MICROWAVES - POLARIZATION |
17 |
| M7-02 RADIOWAVES - POLARIZATION |
6 |
| M7-03 POLAROIDS AND GOOSENECK LAMP |
24 |
| M7-04 MALUS' LAW |
7 |
| M7-05 ROPE AND COOKIE COOLERS |
23 |
| M7-06 ROPE WAVE GENERATOR - POLARIZATION |
8 |
| M7-07 CROSSED POLAROIDS - E FIELD COMPONENTS |
16 |
| M7-11 OPTICAL BOARD - BREWSTER'S ANGLE |
1 |
| M7-12 BREWSTER'S ANGLE - POLAROID AND TWO REFLECTORS |
4 |
| M7-14 BREWSTER'S WINDOW |
3 |
| M7-15 LINEAR AND ELLIP |