Find the maximum speed of a car traveling on a curved road and still remain in contact with the road when it passes point A. The angles that the slope of the road makes with the horlzontal at A and B are 0 degrees and (-14) degrees respectively. If the car maintains this speed, what is the normal reaction of the road on it when it passes point B? Given the radius of curvature at A and B are p A90 m, p.B-100 m respectively and the mass of the car is 2 Mg. A none of the above B. VA31.734 m/s NB-1500.954N C) VA40 m/s NB-1490.954 N 1713 m/s N B1129.954 N

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Chapter13: Gravitation
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Find the maximum speed of a car traveling on a curved road and still remain in contact with the road when it passes point A. The
angles that the slope of the road makes with the horizontal at A and Bare o degrees and (-14) degrees respectively. If the car
maintains this speed, what is the normal reaction of the road on it when it passes point B? Given the radius of curvature at A and B
are p A=90 m. p.8=100 m respectively and the mass of the car is 2 Mg.
A none of the above
B) VA31.734 m/s NB-1500.954 N
C)V A-40 m/s
N_B-1490.954 N
DVA29.713 m/s
NB-1379.954 N
Transcribed Image Text:Find the maximum speed of a car traveling on a curved road and still remain in contact with the road when it passes point A. The angles that the slope of the road makes with the horizontal at A and Bare o degrees and (-14) degrees respectively. If the car maintains this speed, what is the normal reaction of the road on it when it passes point B? Given the radius of curvature at A and B are p A=90 m. p.8=100 m respectively and the mass of the car is 2 Mg. A none of the above B) VA31.734 m/s NB-1500.954 N C)V A-40 m/s N_B-1490.954 N DVA29.713 m/s NB-1379.954 N
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