Примери за използване на Solar cells can на Английски и техните преводи на Български
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Ultra-thin solar cells can easily bend around a pencil.
Solmove has also installed a circuit so that the solar cells can be heated in winter.
Silicon-based solar cells can reach nearly 36% efficiency.
This device turns sunlight into heat and then converts it back into light, butfocuses on the spectrum that solar cells can use.
These ultra-thin solar cells can be bent around a pencil.
Solar cells can continue to generate electric power for 25 years.
Crystalline silicon solar cells can last up to 20 to 35 years.
The technology first converts sunlight into heat and then back into the light, butnow focused on the spectrum that solar cells can use.
Silicon-based multijunction solar cells can reach almost 36% efficiency.
The technology first converts sunlight into heat and then back into the light, butnow focused on the spectrum that solar cells can use.
The different types of thin-film solar cells can be categorised by which photovoltaic material is deposited onto the substrate.
The trick is to first turn sunlight into heat and then convert it back into light, butnow focused within the spectrum that solar cells can use.
Perovskite solar cells can enable us to use techniques already established in the printing industry to produce solar cells at very low cost.
This current, together with the cell's voltage, which is a result of its built-in electric field or fields,defines the power(or wattage) your solar cells can generate.
The resulting solar cells can withstand temperatures up to 535 degrees Celsius without any performance or stability issues, converting a staggering 50 percent of sunlight into useable energy.
Tan noted that perovskite solar cells using the older, high-temperature method are only marginally better at 22.1 per cent andeven the best silicon solar cells can only reach 26.3 per cent.
Using near-UV light to power these windows means that the solar cells can be transparent and occupy the same footprint of the window without competing for the same spectral range or imposing aesthetic and design constraints,”.
At 15% efficiency and given a 20-year lifetime,the researchers estimate organic solar cells could produce electricity at a cost of less than 7 cents per kilowatt-hour.
According to estimates, with a 15% efficiency and a 20 year lifetime,organic solar cells could produce electricity at a cost of less than 7 cents per kilowatt-hour.
The researchers estimated that with a 20-year lifetime,organic solar cells could produce electricity at a cost of less than 7¢/kWh, at 15% efficiency.
The researchers estimated that at 15% efficiency and given a 20-year lifetime,organic solar cells could produce electricity at a cost of less than 7¢/kWh…".
This is important because according to estimates, with even 15% efficiency anda 20-year lifetime, organic solar cells could produce much cheaper electricity.
The current, together with the cell's voltage(which is the result of its electric field),defines the power(or wattage) that the solar cell can produce.
Together with the solar cell’s voltage(which is determined by its built-in electric field),it defines the power(wattage) that the solar cell can produce.
This current, together with the cell's voltage(which is a result of its in-built electric fields),defines the power(or wattage) that a solar cell can produce.
Solar cells could power an entire farm. Take the wheel.
Tiny solar cells could soon charge electric vehicles while on the road".