When a car is hit from behind, its passengers undergo sudden forward acceleration, which can cause a severe neck injury known as whiplash. During normal acceleration, the neck muscles play a large role in accelerating the head so that the bones are not injured. But during a very sudden acceleration, the muscles do not react immediately because they are flexible; most of the accelerating force is provided by the neck bones. Experiments have shown that these bones will fracture if they absorb more than 8.0 J of energy. (a) If a car waiting at a stoplight is rear-ended in a collision that lasts for 10.0 ms, what is the greatest speed this car and its driver can reach without breaking neck bones if the driver’s head has a mass of 5.0 kg (which is about right for a 70 kg person)? Express your answer in m/s and in mi/h. (b) What is the acceleration of the passengers during the collision in part (a), and how large a force is acting to accelerate their heads? Express the acceleration in m/s2 and in g’s.

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When a car is hit from behind,
its passengers undergo sudden forward acceleration, which can cause a
severe neck injury known as whiplash. During normal acceleration, the
neck muscles play a large role in accelerating the head so that the bones
are not injured. But during a very sudden acceleration, the muscles do
not react immediately because they are flexible; most of the accelerating
force is provided by the neck bones. Experiments have shown that these
bones will fracture if they absorb more than 8.0 J of energy. (a) If a car
waiting at a stoplight is rear-ended in a collision that lasts for 10.0 ms,
what is the greatest speed this car and its driver can reach without breaking
neck bones if the driver’s head has a mass of 5.0 kg (which is about
right for a 70 kg person)? Express your answer in m/s and in mi/h. (b)
What is the acceleration of the passengers during the collision in part (a), and how large a force is acting to accelerate their heads? Express
the acceleration in m/s2 and in g’s.

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