A car is traveling around a perfectly circular track at a constant speed. Which of the following statement is always true?
Acceleration is parallel to displacement.
Acceleration is parallel to velocity.
Acceleration is perpendicular to velocity.
There is no acceleration.
None of the above
A car is traveling around a perfectly circular track at a constant speed. Which of the...
A car is traveling around a perfectly circular track at a constant speed. Which of the following statement is always true? A. Acceleration is parallel to displacement. B. Acceleration is parallel to velocity. C. Acceleration is perpendicular to velocity. D. There is no acceleration. E. None of the above
A race car is traveling at a constant speed of 102 m/s around a circular track with a radius of 3250 m. How long does it take the race car to go around the track once? Express your answer in seconds.
A car traveling around a curve at constant speed which is true? speed constant and acceleration is zero. velocity changes and acceleration is not equal to zero. velocity constant and acceleration is equal to zero. velocity changes and acceleration is equal to zero.
A test driver attempts to drive a car with constant speed around a horizontal circular track of radius R = 200 m. The coefficient of static friction of the tires perpendicular to the direction in which the car is traveling is µs = 0.05. Give the shortest possible lap time the driver can achieve.
A car travels at a constant speed around a circular track whose radius is 2.65 km. The car goes once around the track in 341 s. What is the magnitude of the centripetal acceleration of the car?
A car travels at a constant speed around a circular track whose radius is 2.51 km. The car goes once around the track in 356 s. What is the magnitude of the centripetal acceleration of the car?
A car travels at a constant speed around a circular track whose radius is 3.71 km. The car goes once around the track in 256 s. What is the magnitude of the centripetal acceleration of the car?
A car travels at a constant speed around a circular track whose radius is 3.37 km. The car goes once around the track in 226 s. What is the magnitude of the centripetal acceleration of the car? I get 1.88 m/s^2
A car travels at a constant speed around a circular track whose radius is 3.0 km. The car goes once around the track in 420 s. What is the magnitude of the centripetal acceleration of the car? x m/s .1184 Additional Materials Section 5.2
Chapter 05, Problem 01 A car travels at a constant speed around a circular track whose radius is 3.86 km. The car goes once around the track in 321 s. What is the magnitude of the centripetal acceleration of the car?