However in a new study in energy and environmental science a team of mit researchers has taken a different approach by changing the shape of the solar panels.
Mit rain drop solar panel.
Building cubes or towers that extend the solar cells upward in three dimensional configurations.
Mit researchers have come up with a solar array which can produce much more energy per square foot than traditional flat panels and potentially more efficiently.
Amazingly the results from the structures they ve tested show power output ranging from double to more than 20 times that of fixed flat panels with the same base area.
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The researchers were able to develop.
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These panels install on a rooftop to capture the sun during the day.
When rain falls the solar panels continue to generate electricity from the force of the falling rain on their surface.
A team led by mit students this week successfully tested a prototype of what may be the most cost efficient solar power system in the world one team members.
This spending spurred the low level efficiency improvements that were important for the solar industry on a technical level.
An ultra low power circuit developed by mit engineers is capable of harvesting more than 80 of the solar energy it absorbs.
Now a team of mit researchers has come up with a very different approach.
Members of the mit community are developing new technologies to harness the power of the sun and provide cleaner smarter energy solutions.
Writing for ars technica megan geuss examines a new mit study that finds government and private r d spending contributed the most to cost per watt declines for solar panels since 1980.