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  2. List of rail transport systems using third rail - Wikipedia

    en.wikipedia.org/wiki/List_of_rail_transport...

    Modern European systems predominantly make use of bottom or side contact power rails. There are numerous urban rail systems, including these running mostly in tunnels, which do not use third rail at all. Such systems can be found in Asia, which may have been influenced by the overhead power supply formula followed by Tokyo Metro after 1960

  3. Third rail - Wikipedia

    en.wikipedia.org/wiki/Third_rail

    The third-rail system of electrification is not related to the third rail used in dual-gauge railways. The system is generally associated with a low voltage (rarely above 750 V) and is far less used for main lines than overhead line that with an higher voltage permit more distance between the substations. Also, for safety reason, third rail ...

  4. Electrification of the New York, New Haven and Hartford ...

    en.wikipedia.org/wiki/Electrification_of_the_New...

    The third rail system resulted, not surprisingly, in a number of accidents. It also resulted in a decree from the Connecticut Supreme Court on June 13, 1906 forbidding the use of third rail electrification within the state. [2] The New Haven was forced by this decision to design their main line electrification system using overhead catenary.

  5. Railway electrification - Wikipedia

    en.wikipedia.org/wiki/Railway_electrification

    Railway electrification is the development of powering trains and locomotives using electricity instead of diesel or steam power.The history of railway electrification dates back to the late 19th century when the first electric tramways were introduced in cities like Berlin, London, and New York City.

  6. List of railway electrification systems - Wikipedia

    en.wikipedia.org/wiki/List_of_railway...

    Converted to 25 kV 50 Hz as a test bed for the future main line electrification system South London line: London Victoria to London Bridge: 1909–1928 Converted to 660 V (later 750 V) DC third-rail supply 8 kV: 25 Hz Germany: Karlsruhe: Alb Valley Railway: 1911–1966, today using 750 V DC 10 kV Netherlands: The Hague – Rotterdam: Hofpleinlijn

  7. Railway electric traction - Wikipedia

    en.wikipedia.org/wiki/Railway_electric_traction

    Railway electrification as a means of traction emerged at the end of the nineteenth century, although experiments in electric rail have been traced back to the mid-nineteenth century. [1] Thomas Davenport , in Brandon, Vermont , erected a circular model railroad on which ran battery-powered locomotives (or locomotives running on battery-powered ...

  8. Railroad electrification in the United States - Wikipedia

    en.wikipedia.org/wiki/Railroad_electrification...

    A 675 V DC third rail (Top Contact) system was used. [19] Electrification was later changed to 11 kV 25 Hz overhead catenary, when the PRR electrified its mainline to Washington, D. C. in the early 1930s. Third rail is still installed in the East River Tunnels in order to provide power the LIRR trains.

  9. Category:Rail transport electrification templates - Wikipedia

    en.wikipedia.org/wiki/Category:Rail_transport...

    [[Category:Rail transport electrification templates]] to the <includeonly> section at the bottom of that page. Otherwise, add <noinclude>[[Category:Rail transport electrification templates]]</noinclude> to the end of the template code, making sure it starts on the same line as the code's last character.

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