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  2. 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.

  3. Sudden unintended acceleration - Wikipedia

    en.wikipedia.org/wiki/Sudden_unintended_acceleration

    [72] [73] [3] In most cars, fully applied brakes are easily capable of stopping the car while the accelerator pedal is also fully applied. [17] " Pumping the brakes " is strongly discouraged during an unintended acceleration event, as this can lead to a loss of braking power . [ 74 ]

  4. Brake - Wikipedia

    en.wikipedia.org/wiki/Brake

    Further, brakes are often mounted on wheels, and unsprung weight can significantly hurt traction in some circumstances. "Weight" may mean the brake itself, or may include additional support structure. NoiseBrakes usually create some minor noise when applied, but often create squeal or grinding noises that are quite loud.

  5. Stopping sight distance - Wikipedia

    en.wikipedia.org/wiki/Stopping_sight_distance

    V = design speed, km/h (mph) a = deceleration rate, m/s 2 (ft/s 2) Actual braking distances are affected by the vehicle type and condition, the incline of the road, the available traction, and numerous other factors. A deceleration rate of 3.4 m/s 2 (11.2 ft/s 2) is used to determine stopping sight distance. [6]

  6. Brake balance - Wikipedia

    en.wikipedia.org/wiki/Brake_balance

    The brake balance or brake bias of a vehicle is the distribution of brake force at the front and rear tires, and may be given as the percentage distributed to the front brakes (e.g. 52%) [1] or as the ratio of front and rear percentages (e.g. 52/48). [2]

  7. Brake force - Wikipedia

    en.wikipedia.org/wiki/Brake_force

    British Railway Class 90 infobox showing brake force Brake force to weight ratio of the Class 67 is higher than some other locomotives. In the case of railways, it is important that staff are aware of the brake force of a train so sufficient brake power will be available to bring the train to a halt within the required distance from a given speed.

  8. Electronic brakeforce distribution - Wikipedia

    en.wikipedia.org/wiki/Electronic_brakeforce...

    FS: Parking Brake. Electronic brakeforce distribution (EBD or EBFD) or electronic brakeforce limitation (EBL) is an automobile brake technology that automatically varies the amount of force applied to each of a vehicle's wheels, based on road conditions, speed, loading, etc, thus providing intelligent control of both brake balance and overall ...

  9. Engine braking - Wikipedia

    en.wikipedia.org/wiki/Engine_braking

    A compression release brake (also known as a Jacobs brake or "jake brake"), is the type of brake most commonly confused with real engine braking; it is used mainly in large diesel trucks and works by opening the exhaust valves at the top of the compression stroke, so the large amount of energy stored in that compressed air is not returned to ...

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