Storage of electrical energy of a solar cell with the aid ofa rechargeable battery  ![]() Principle Batteries can have different charging states. Before beginning the experiment check whether the Ni-Cd accu is already discharged, so that the glow lamp does not light at the beginning of the experiment. If it glows, the Ni-Cd accu can be discharged faster via the 6-V-glow lamp. On the other hand, the Ni-Cd accu could be so low discharged that a recharge time of 7 minutes is not enough. In this case the recharge time must be increased. Benefits - Experiment is part of a complete solution set with a total of 26 experiments for Renewable Energy solar cells, wind power, water power
- Safe experimentation: the lamp is protected against touch, the housing is well ventilated with the aid of holes and is only slightly heated
- Doubled learning success: Electric circuit diagram on top, real components can be seen at the bottom
Tasks How can solar energy be stored? Try to store the electric energy generated by a solar battery with a Ni-Cd accu. Scope of delivery
Angled connector module, SB
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05601-02
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4
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Interrupted connector module with sockets, SB
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05601-04
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2
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Socket module for incandescent lamp E10, SB
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05604-00
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1
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Filament lamps 1.5V/0.15A,E10,10 pieces
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06150-03
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1
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Solar battery, 4 cells, with cable and connectors
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06752-22
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1
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Halogen lamp with reflector, 12V / 20W
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05780-00
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1
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Mount for halogen lamp with reflector
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05781-00
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1
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Battery holder module (AA type), SB
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05606-00
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1
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Ni-MH accus, size AA, 1.3 Ah / 1.2V, 1 pair
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07922-03
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1
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Solar collector for student experiments
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05760-00
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1
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Slide mount for optical bench
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09822-00
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1
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Stand rods, stainless steel, various sizes
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02037-00
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2
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Measuring tape, l = 2 m
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09936-00
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1
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Digital stopwatch, 24 h, 1/100 s and 1 s
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24025-00
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1
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Support base, variable
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02001-00
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1
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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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