Storing the electrical energy of a solar cell with a capacitor with ADM3
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Principle Electrical energy can be stored with the help of capacitors. In
this experiment, we first show how a system consisting of a solar
cell and motor changes when a capacitor is installed. In a second
part of the experiment, it is then measured how different charging
times affect the running time of the motor. Benefits - Part of a system solution - easily expandable for further
experiments
- Simple teaching by using the demo board physics
- Clear test execution by using ADM3 multimeters
Scope of delivery |
Connector, straight, module DB
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09401-01
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2
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Connector, angled, module DB
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09401-02
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4
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Connector, T-shaped, module DB
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09401-03
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2
| |
Connector interrupted, module DB
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09401-04
|
2
| |
Junction, module DB
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09401-10
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2
| |
Switch, change-over, module DB
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09402-02
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1
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Motor with indicating disc, 5 V, module DB
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09469-00
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1
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Solar battery, with cable, connectorsand magnet pads
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06752-23
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1
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Clamp on holder
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02164-00
|
1
| |
Capacitor (gold cap), 1F, DB
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09450-10
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1
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Magnetic board with stand
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02150-00
|
1
| |
Stand rods, stainless steel, various sizes
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02033-00
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1
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Ceramic lamp socket E27, with reflector, switch and security plug
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06751-01
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1
| |
Filament lamp, 220V/120W, with reflector
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06759-93
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1
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Connecting cable, 32 A, red, various lengths
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07360-01
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1
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Connecting cable, 32 A, blue, various lengths
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07360-04
|
1
| |
Connecting cable, 32 A, yellow, various lengths
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07360-02
|
1
| |
Connecting cable, 32 A, blue, various lengths
|
07361-04
|
1
| |
PHYWE Demo Multimeter ADM 3: current, voltage, resistance, temperature
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13840-00
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2
| |
G-clamp
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02014-01
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2
|
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