Problem S: A car of mass m = 1100 kg is traveling down a 6 = 15 degree incline. When the car's speed is vo =17 m/s, a mechanical failure causes all four of its brakes to lock. The coefficient of kinetic friction between the tires and road is = 0.45. 0-

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Chapter5: Displacement And Force In Two Dimensions
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Problem S: A car of mass m=1100 kg is traveling down a 0 = 15 degree incline. When the
car's speed is vo = 17 m/s, a mechanical failure causes all four of its brakes to lock, The coefficient of
kinetic friction between the tires and road is uz = 0.45.
y
0+
Transcribed Image Text:Problem S: A car of mass m=1100 kg is traveling down a 0 = 15 degree incline. When the car's speed is vo = 17 m/s, a mechanical failure causes all four of its brakes to lock, The coefficient of kinetic friction between the tires and road is uz = 0.45. y 0+
Part (c) Calculate the distance the car travels down the hill L in meters until it comes to a stop at the end.
sin()
tan()
acos()
sinh()
cos()
8
9.
HOME
asin()
cotan()
atan()
4
6.
acotan()
1
2
3
cosh()
tanh()
cotanh()
END
O Degrees
Radians
VOl BACKSPACE
CLEAR
Transcribed Image Text:Part (c) Calculate the distance the car travels down the hill L in meters until it comes to a stop at the end. sin() tan() acos() sinh() cos() 8 9. HOME asin() cotan() atan() 4 6. acotan() 1 2 3 cosh() tanh() cotanh() END O Degrees Radians VOl BACKSPACE CLEAR
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