In a car collision, the bag expands suddenly and cushions
the impact of the passenger. Assume the impact velocity is
105 km/h. For a 70-kg person with a 30-cm allowed
stopping distance, (a) calculate the stopping force per cm(square)
applied to the person, if the average applied force is
uniformly distributed over a 1000-cm(square) area of the
passenger's body. (b) calculate the duration of the collision
between the passenger and the inflated bag of the collision
protection device. (c) If the rupture strength for body tissue
is about 5 X 1000000 dyn/cm(sqare), will the impact force lead to
serious injury for the passenger?
a)
"Fl=\\frac{mv^2}2,"
"F=\\frac{mv^2}{2l},"
"\\frac FS=\\frac{mv^2}{2lS}=99.2~\\frac{N}{cm^2},"
b)
"t=\\frac pF=\\frac{mv\\cdot 2l}{mv^2}=\\frac{2l}v=0.02~s,"
c)
"\\frac FS=99.2>\\sigma=50,"
the impact force will lead to serious injury for the passenger.
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