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  2. Rupp Industries - Wikipedia

    en.wikipedia.org/wiki/Rupp_Industries

    Rupp made many contributions to the design of go-karts, including the step frame and a new braking system that augmented driver control and kart stopping power. [2] Rupp karts featured single- or dual-engine models with behind-seat-mounted fuel tanks. Rupp would eventually introduce a kart with four-wheel independent suspension. [3]

  3. Axle - Wikipedia

    en.wikipedia.org/wiki/Axle

    Some simple vehicle designs, such as leisure go-karts, may have a single driven wheel where the drive axle is a split axle with only one of the two shafts driven by the engine, or else have both wheels connected to one shaft without a differential (kart racing). However, other go-karts have two rear drive wheels too.

  4. Off-road go-kart - Wikipedia

    en.wikipedia.org/wiki/Off-road_go-kart

    Riding a go-kart. Off-road go-karting uses a four-wheeled powered vehicle designed for off-road usage. This is opposed to the longer established activities of racing go-karts used for racing on a paved road circuit. Off-road go-karting is now a well-established and popular activity with a burgeoning range of vehicles, options, and adherents.

  5. Go-kart - Wikipedia

    en.wikipedia.org/wiki/Go-kart

    A go-kart, also written as go-cart (often referred to as simply a kart), is a type of small sports car, close wheeled car, open-wheel car or quadracycle. Go-karts come in all shapes and forms, from non-motorised models to high-performance racing karts. Karting is a type of racing in which a compact four-wheel unit called a go-kart is used.

  6. Cyclekart - Wikipedia

    en.wikipedia.org/wiki/Cyclekart

    The first Cyclekart, as they are known today, was built in 1995 in Del Mar, California. An "At a Glance" specification sheet for the Stephenson "Type 59 Cyclekart" was formally published in the April 2002 (April Fools) edition of Road & Track magazine, representing the first published of any kind figures for the class, laying out the specifications for wheelbase, track, engine type, and ...

  7. Swing axle - Wikipedia

    en.wikipedia.org/wiki/Swing_axle

    Change in camber due to cornering forces can cause loss of rear-wheel adhesion leading to oversteer—a dynamically unstable condition that can cause a vehicle to spin. This is an especially severe problem when a swing axle is used in a rear-engine design, because of the greater side-g forces on the rear wheels from the mass of the engine.

  8. Toe (automotive) - Wikipedia

    en.wikipedia.org/wiki/Toe_(automotive)

    Rear toe-in provides better stability during cornering. Toe is usually adjustable in production automobiles, even though caster angle and camber angle are often not adjustable. Maintenance of front-end alignment , which used to involve all three adjustments, currently involves only setting the toe; in most cases, even for a car in which caster ...

  9. Rear mid-engine, rear-wheel-drive layout - Wikipedia

    en.wikipedia.org/wiki/Rear_mid-engine,_rear...

    RMR layout; the engine is located in front of the rear axle. Rear Mid-engine transversely-mounted / Rear-wheel drive. In automotive design, an RMR, or rear mid-engine, rear-wheel-drive layout is one in which the rear wheels are driven by an engine placed with its center of gravity in front of the rear axle, and thus right behind the passenger compartment.

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