Voltage in a series connection  ![]()
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Principle With the first experiment, an introduction to this topic, the
function of a series resistance is explained as motivation for the
quantitative examination of the law of voltage in series
connections.
A variant of this introductory experiment, based on a chain of
electric Christmas tree lights, could be the preparation of a model
of such a light chain with two identical filament lamps
(4 V / 0.04 A). Benefits - No additional cable connections between the building blocks needed - clear arragned and quick setup
- Contact saftey due to puzzle blocks system
- Corrosion-free gold plated contacts
- Doubled earning sucess: Electric circuit diagram on top, real components can be seen unterside
Tasks How can an electrical device be operated at a higher voltage
than its rated voltage? Examine the voltage conditions in a series connection of
technical resistances in unbranched circuits. Scope of delivery |
Straight connector module, SB
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05601-01
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3
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Angled connector module, SB
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05601-02
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2
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Interrupted connector module with sockets, SB
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05601-04
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1
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Junction module, SB
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05601-10
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2
| |
Straight connector module with socket, SB
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05601-11
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1
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Angled connector module with socket, SB
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05601-12
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2
| |
On-off switch module, SB
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05602-01
|
1
| |
Socket module for incandescent lamp E10, SB
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05604-00
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1
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Resistor module 50 Ohm, SB
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05612-50
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1
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Resistor module 100 Ohm, SB
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05613-10
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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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2
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Connecting cable, 32 A, blue, various lengths
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07360-04
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2
| |
Connecting cable, 32 A, red, various lengths
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07361-01
|
2
| |
Connecting cable, 32 A, blue, various lengths
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07361-04
|
2
| |
Filament lamps 4V/0.08A, E10, 10
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06154-03
|
1
| |
PHYWE Analog multimeter, 600V AC/DC, 10A AC/DC, 2 MΩ, overload protection
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07021-11
|
2
| |
PHYWE Power supply, 230 V,DC: 0...12 V, 2 A / AC: 6 V, 12 V, 5 A
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13506-93
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1
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