A Watt is a joule per second.
So
in a whole hour there are 360 seconds. 500 x 360 = 180. kilojoules
in a whole day there are 8640 seconds. 500x 8640 = 4320 kilojoules
The amount of energy produced by a windmill can vary depending on factors such as wind speed, size of the turbine, and location. On average, a single wind turbine can generate enough electricity to power hundreds of homes. A typical modern wind turbine has a capacity of around 2-3 megawatts and can produce between 4 to 8 million kilowatt-hours (kWh) of electricity annually.
It produced enough electricity to power his holiday home and a surplus which he offered to the locals to power their street lights but they refused saying "Electricity was the work of the devil".
The amount of energy produced by a windmill in one hour varies depending on the wind speed and the size of the windmill. On average, a small residential wind turbine can produce around 1-10 kWh of electricity in one hour. Commercial-scale wind turbines can generate significantly more energy, with some producing upwards of 1,000 kWh per hour.
The main factors that determine how much electricity a windmill produces are the wind speed and the size of the wind turbine's rotor blades. Higher wind speeds and larger rotor blades can generate more electricity. Other factors that can affect electricity production include the efficiency of the wind turbine and the maintenance of the system.
The amount of electricity generated by a steam turbine in one second depends on several factors, including the size and efficiency of the turbine, the pressure and temperature of the steam, and the overall power output of the turbine. On average, a large steam turbine can produce anywhere from 1 to 5 megawatts of electricity per second. However, it is important to note that this is a general estimate and actual output can vary significantly based on specific operating conditions and design parameters.
The amount of energy produced by a windmill can vary depending on factors such as wind speed, size of the turbine, and location. On average, a single wind turbine can generate enough electricity to power hundreds of homes. A typical modern wind turbine has a capacity of around 2-3 megawatts and can produce between 4 to 8 million kilowatt-hours (kWh) of electricity annually.
A wind turbine with a diameter of about 150m will generate about 10MW of power.
4,7 million
It produced enough electricity to power his holiday home and a surplus which he offered to the locals to power their street lights but they refused saying "Electricity was the work of the devil".
None. No electricity is produced from candles.
The amount of energy produced by a windmill in one hour varies depending on the wind speed and the size of the windmill. On average, a small residential wind turbine can produce around 1-10 kWh of electricity in one hour. Commercial-scale wind turbines can generate significantly more energy, with some producing upwards of 1,000 kWh per hour.
42 pints of electricity
Heat pumps typically consume about 1 kilowatt-hour of electricity for every 3-4 kilowatt-hours of heat produced.
that depends on how much sunlight there is. But alot of electricity.
The main factors that determine how much electricity a windmill produces are the wind speed and the size of the wind turbine's rotor blades. Higher wind speeds and larger rotor blades can generate more electricity. Other factors that can affect electricity production include the efficiency of the wind turbine and the maintenance of the system.
The amount of electricity generated by a steam turbine in one second depends on several factors, including the size and efficiency of the turbine, the pressure and temperature of the steam, and the overall power output of the turbine. On average, a large steam turbine can produce anywhere from 1 to 5 megawatts of electricity per second. However, it is important to note that this is a general estimate and actual output can vary significantly based on specific operating conditions and design parameters.
If a wind turbine could operate at maximum capacity all the time a 1 MW turbine could produce 8760 MW annually. However this is not the case, wind power is a slave to the elements, it only works when there is wind, and it only works at maximum when the wind is strong enough to spin the blades at maximum velocity. The percentage of capacity produced is variable, and can change hour to hour.