What equations can be used to determine acceleration in constant motion?

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To determine the acceleration of a body moving with constant acceleration, the relevant equations of motion must be applied. Given a displacement of 80 meters over 5 seconds and a final velocity of 20 m/s, the average velocity can be calculated as distance divided by time. The average velocity equation relates initial and final velocities, which helps in finding the initial velocity. Using these values, the appropriate equation can then be utilized to solve for acceleration. Understanding and applying the constant acceleration equations of motion is essential for solving such problems effectively.
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I can not figure out how to do this problem. Can anyone tell me?

A body moving on the x-axis with a constant acceleration increases its x-coordinate by 80m in a time period of 5.0s and has a velocity of +20m/s at the end of this time. Determine the acceleration of the body during this time.


Thanks much!
 
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Which is the equation which expresses the displacement of a body moving on a line with constant acceleration?
 
radou said:
Which is the equation which expresses the displacement of a body moving on a line with constant acceleration?

is it Vi - Vo / time?
 
The hint they give you in the question is that it is constant acceleration.
So you can use you constant acceleration equations of motion.

Type "constant acceleration +equations of motion" into google to learn a bit more about it.

Given you know these variables:

vf=20 m/s
t= 5s
x-xi = 80 m

You can decide which of the standard constant acceleration equations of motion you need to use to solve the problem.
 
im getting 4m/s^-2
 
No that's not right.

http://www.ac.wwu.edu/~vawter/PhysicsNet/Topics/Kinematics/ConstantAccEqMotion.html

From your question I can see that you'd need to use three of those equations.

One equation to find the average velocity.
One equation to solve for the initial velocity.
Then one equation to solve for the acceleration.

average velocity = distance/time

v with a bar over the top of it is average velocity so just look on that page to find the equation relating the average velocity, final velocity and initial velocity so you can solve for the inital velocity.

Then you just need to find the remaining equation that uses all your known variables to solve for the unknown acceleration.
 
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