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  2. German battleship Scharnhorst - Wikipedia

    en.wikipedia.org/wiki/German_battleship_Scharnhorst

    On 25 November 1943 Scharnhorst carried out a two-hour full-power trial achieving 29.6 knots (54.8 km/h; 34.1 mph) and it was noted that her draught had increased by over 0.5 metres (1.6 ft) from her 1940 trials where she had attained 31.14 knots (57.67 km/h; 35.84 mph). [89]

  3. Home fuel cell - Wikipedia

    en.wikipedia.org/wiki/Home_fuel_cell

    A commercially working cell in Japan called Eni-Farm is supported by the regional government, using natural gas to power up the fuel cell that then produces electricity and heated water. In 2013, 64% of global sales of the micro-combined heat and power fuel cell passed the conventional mechanical rotary systems in sales in 2012. [8]

  4. List of largest power stations - Wikipedia

    en.wikipedia.org/wiki/List_of_largest_power_stations

    The facility generates power by utilizing 32 Francis turbines each having a capacity of 700 MW and two 50 MW turbines, [1] totalling the installed capacity to 22,500 MW, more than twice the installed capacity of the largest nuclear power station, the Kashiwazaki-Kariwa (Japan) at 7,965 MW.

  5. Orders of magnitude (power) - Wikipedia

    en.wikipedia.org/wiki/Orders_of_magnitude_(power)

    1.04 × 10 8 W tech: power producing capacity of the Niagara Power Plant, the first electrical power plant in history 1.4 × 10 8 W tech: average power consumption of a Boeing 747 passenger aircraft 1.9 × 10 8 W tech: peak power output of a Nimitz-class aircraft carrier: 5 × 10 8 W tech: typical power output of a fossil fuel power station: 9 ...

  6. Steam–electric power station - Wikipedia

    en.wikipedia.org/wiki/Steam–electric_power_station

    Worldwide, most electric power is produced by steam–electric power plants. [1] The only widely used alternatives are photovoltaics , direct mechanical power conversion as found in hydroelectric and wind turbine power as well as some more exotic applications like tidal power or wave power and finally some forms of geothermal power plants. [ 2 ]

  7. Droop speed control - Wikipedia

    en.wikipedia.org/wiki/Droop_speed_control

    Droop speed control is a control mode used for AC electrical power generators, whereby the power output of a generator reduces as the line frequency increases. It is commonly used as the speed control mode of the governor of a prime mover driving a synchronous generator connected to an electrical grid.

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