Constant Velocity should = Acceleration of 0m/s^2 right?

In summary: The car would have a negative acceleration because it is moving to the right and then it would have a positive acceleration because it is moving to the opposite direction.
  • #1
litzkrieg
6
0
(a) Suppose that a NASCAR race car is moving to the right with a constant velocity of +81 m/s. What is the average acceleration of the car? (b) Twelve seconds later, the car is halfway around the track and traveling in the opposite direction with the same speed. What is the average acceleration of the car?

To me they should equal:
a) A=0 m/s^2

b) A=-0 m/s^2

It ha been awhile since i took AP physics in high school, but to my understanding a "Constant Velocity" means neither positive or negative acceleration right? I know V=Change in Distance/ change in time and Acceleration=change in velocity/changine in time but it keeps telling me I am wrong...can someone tell me what I am missing?

Thank you
 
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  • #2
Are you sure of the exact statement of the problem? "Velocity" is a vector quantity. If the car is moving with constant velocity, it must be moving in a straight line with constant speed. It would have 0 acceleration but that would make it impossible for it to go "around the track".

"Speed", on the other hand, is a number. It is quite possible for a car to drive around a circular track with constant speed. In that case, its acceleration is non zero and is directed toward the center of the track.

Please check to make certain the problem says "velocity" and not "speed".
 
  • #3
And that's what i honestly thought to but the problem is literally copy and paste, (i don't feel bad about doing that because I am not asking for the answers to it, just trying to make sense of it)
 
  • #4
Hi litzkrieg,

You're right in saying that if something has a constant velocity, then it is not experiencing any acceleration. What you need to remember is the distinction between velocity and speed; velocity has a direction (how fast are we traveling West, for example), whereas speed is just the magnitude of the velocity (e.g. speedo on a car). This means that something can have a constant speed, but change direction, but to change direction, it must experience an acceleration. So your NASCAR car might maintain speed, but it's velocity has changed a lot. Using the change in velocity, you can find the acceleration in (b).

Hope that helps!
 
  • #5
Yes it did, once i understood the real difference from speed and Velocity, recalling the direction factor everything became much more clear.

Thank you Both
 

Related to Constant Velocity should = Acceleration of 0m/s^2 right?

1. What is constant velocity?

Constant velocity refers to the motion of an object at a constant speed in a straight line. This means that the object is not changing its speed or direction.

2. How is constant velocity different from acceleration?

Acceleration refers to the rate of change of an object's velocity. If an object has a constant velocity, it means that its acceleration is 0m/s^2, which means there is no change in its velocity.

3. Does constant velocity always equal acceleration of 0m/s^2?

Yes, constant velocity always equals acceleration of 0m/s^2. This is because acceleration is defined as the change in velocity over time, and if there is no change in velocity, then the acceleration must be 0m/s^2.

4. Can an object have a constant velocity and non-zero acceleration?

No, an object cannot have a constant velocity and non-zero acceleration. This is because any change in acceleration would result in a change in velocity, which would mean the object is no longer moving at a constant speed.

5. How is constant velocity represented on a velocity-time graph?

On a velocity-time graph, constant velocity is represented by a horizontal line. This is because the velocity remains constant over time, so there is no change in the slope of the line.

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