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| - | # Solar electricity | ||
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| - |  cells. It is different from [solar water heating](/ | ||
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| - | <WRAP center centeralign> | ||
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| - |  fall on the cells, they dislodge the outer electrons of the silicon atoms, and push them along to the next atom; a chain of moving electrons is produced, and if a wire is attached to the panels, these electrons can be pushed down it to supply a useable electric current. This current is measured in amps, and to give some idea of the scale involved, one amp of current involves the movement of 6 million million million electrons per second. | ||
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| - |  flows in one direction only, and so is called direct current, whereas electricity from the UK national grid is alternating current, as the flow of electrons changes direction 50 times per second. Direct current can be stored in [batteries](/ | ||
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| - | Alternatively, | ||
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| - | <WRAP center centeralign> | ||
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| - |  and solar hot water (right) panels on a roof. | ||
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| - | With PV solar electricity there are no emissions in use, no environmentally-damaging extraction and transport of coal and oil to feed power stations, and no radioactive waste, or the potential leaks and disasters associated with nuclear power stations. However, there are also [environmental problems](https:// | ||
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| - | PV modules generate [between 9 and 34 times](https:// | ||
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| - | <WRAP center centeralign> | ||
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| - | {{url> | ||
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| - | _Roof installation video from our [solar electricity online course](http:// | ||
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| - | Large-scale use of lead-acid batteries cause environmental problems in their manufacture and disposal, so connection to the grid would be better environmentally, | ||
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| - | Solar PV can democratise and decentralise our energy supply. Some technologies can only be controlled by the state or the corporate sector - like coal- or oil-fired or nuclear power stations. PV generation (although not the manufacture of the panels, yet) can be controlled by individuals and communities, | ||
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| - | <WRAP center centeralign> | ||
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| - |  installed panels and an inverter costing £3000, metered the electricity they produced, and compared the results to putting £3000 in the bank and paying his electricity bills from that. After 18 years the money in the bank was gone, but his PV system had paid for itself 6 years previously, and was still generating electricity. So payback times can be very project-specific, | ||
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| - | The cost can’t (easily) be reduced by self-build (like solar hot water), because the manufacturing process is too high-tech, but you could self-install if you have the know-how. Of course you could use PV in combination with a [wind turbine](/ | ||
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| - | <WRAP center centeralign> | ||
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| - | ![solar-scaffold](https:// | ||
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| - | Installation using a scaffold tower on a terraced house in London. | ||
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| - | Other factors to consider with solar electricity are: is your roof south-facing? | ||
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| - | ## Further resources | ||
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| - | - free [online course](http:// | ||
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| - | ## Specialist curators of this topic | ||