Going green and relying on different Magnifier Engine Review   types of energy makers has been creating quite the buzz lately in pretty much every type of business. Political figures, large market companies, environmentally conscious businesses, hotels and restaurants are all looking for alternative ways to save energy and work toward the greater good of the world. The implementation of solar panels is a simple way to go green within the home and the business. Solar power was first used to power simple calculators. However, today, there are solar powered vehicles of all sizes and even homes are relying solely on solar power to heat their home and even the water used within the house.

Solar panels have been created for large scale solar energy projects and collect solar radiation from the sun and convert that energy into electricity. Although solar power is a new school of thought, not too many people truly understand how the process works. Here is a straightforward tutorial on how solar panels work.

Solar panels depend on silicon to create electricity and power. Silicon is mounted beneath non-reflective glass to create photovoltaic panels, which collect photons from the sun and converts it into electrical power. Silicon has four electrons in its outer shell. These electrons share space with other silicon atoms and their four shell electrons and become eight electrons. When they combine in this way, the silicon atoms create a strong bond, which is known as pure, crystalline silicon.


The silicon plates are combined with other components, like boron and phosphorous so they can create positive and negative charges. Negative plates are angled toward the sun so that photons – the energy particles emitted from the sun – can bombard the silicon and phosphorous atoms.
As the photons break off several electrons, electricity is generated that can be used for many resources. A single panel is not as useful when compared to a large number of solar cells are combined together to produce energy.
The power created joins the flow of the electric current from the other cells and panels until it passes through the inverter and into the electricity source.

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