Q2 A 2500kg of car in Figure Q2 is traveling along a curved pathway that described by r = = (5.5e7) m where the 0 is in radians. A camera at point P is at a fixed origin and the car rotates with an angular velocity and angular acceleration of 0.05 rad/s and 0.012 rad/s² respectively.

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Q2
A 2500kg of car in Figure Q2 is traveling along a curved pathway that described by
(5.5e)m where the 0 is in radians. A camera at point P is at a fixed origin and
r =
the car rotates with an angular velocity and angular acceleration of 0.05 rad/s and
0.012 rad/s² respectively.
(b)
Determine the radial and transverse components of the car's acceleration when the
angle is at 120°. (Hint: Change the angle in radians).
(c)
Determine the resultant friction force developed between the tires and the surface when
the angle is same as in (b) by using equation of motion.
P
Figure Q2
Transcribed Image Text:Q2 A 2500kg of car in Figure Q2 is traveling along a curved pathway that described by (5.5e)m where the 0 is in radians. A camera at point P is at a fixed origin and r = the car rotates with an angular velocity and angular acceleration of 0.05 rad/s and 0.012 rad/s² respectively. (b) Determine the radial and transverse components of the car's acceleration when the angle is at 120°. (Hint: Change the angle in radians). (c) Determine the resultant friction force developed between the tires and the surface when the angle is same as in (b) by using equation of motion. P Figure Q2
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