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  2. Threshold braking - Wikipedia

    en.wikipedia.org/wiki/Threshold_braking

    Threshold braking or limit braking is a driving technique most commonly used not only in motor racing, but also practiced in road vehicles to slow a vehicle at the maximum rate using the brakes. [1] The technique involves the driver controlling the brake pedal (or lever) pressure to maximize the braking force developed by the tires .

  3. Cadence braking - Wikipedia

    en.wikipedia.org/wiki/Cadence_braking

    The latter is an expert driving technique that is even more difficult to learn than cadence braking, and again has been largely superseded by ABS. Threshold braking, or a good ABS, generally results in the shortest stopping distance in a straight line. ABS, cadence and interference braking are intended to preserve steering control while braking.

  4. Anti-lock braking system - Wikipedia

    en.wikipedia.org/wiki/Anti-lock_braking_system

    If a fault develops in any part of the ABS, a warning light will usually be illuminated on the vehicle instrument panel, and the ABS will be disabled until the fault is rectified. Modern ABS applies individual brake pressure to all four wheels through a control system of hub-mounted sensors and a dedicated micro-controller. ABS is offered or ...

  5. 6 Tips for Speeding Up Your Cadence on the Bike - AOL

    www.aol.com/lifestyle/6-tips-speeding-cadence...

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  6. Skid (automobile) - Wikipedia

    en.wikipedia.org/wiki/Skid_(automobile)

    Threshold braking and cadence braking are two manual techniques used to extract maximum deceleration from a vehicle. Threshold braking maintains a steady braking force with slight (10-20%) slip, around or just below the point of maximum tire grip force. Cadence braking accepts that holding the threshold braking limit is exceptionally hard, and ...

  7. Braking distance - Wikipedia

    en.wikipedia.org/wiki/Braking_distance

    Braking distance refers to the distance a vehicle will travel from the point when its brakes are fully applied to when it comes to a complete stop. It is primarily affected by the original speed of the vehicle and the coefficient of friction between the tires and the road surface, [Note 1] and negligibly by the tires' rolling resistance and vehicle's air drag.