Finding future x position with changing velocity

Join the discussion
Ask a follow-up here, or get your own question answered by working scientists, mathematicians and engineers — people, not an autocomplete.
Real named experts · corrections over time · the nuance an AI answer skips
5 replies · 2K views
heartshapedbox
Messages
30
Reaction score
0

Homework Statement


At what time in the future will the x-component of the masses position be at 0m?

Homework Equations


x=x,initial+(integral0,t)(v,xcomponent)(dt)

The Attempt at a Solution


The solution is 3.1 seconds... not really sure where to start :(
 

Attachments

  • Screen Shot 2016-02-13 at 6.24.26 PM.png
    Screen Shot 2016-02-13 at 6.24.26 PM.png
    69.8 KB · Views: 600
Physics news on Phys.org
heartshapedbox said:

Homework Statement


At what time in the future will the x-component of the masses position be at 0m?

Homework Equations


x=x,initial+(integral0,t)(v,xcomponent)(dt)

The Attempt at a Solution


The solution is 3.1 seconds... not really sure where to start :(

In order to carry out the calculation indicated in your equation above, you need to know the x-component of v at time t---which you can (and should) write as v_x(t), or vx(t), using the "x2"" button on the gray palette at the top of the input panel. You are given an expression for acceleration, and you are given enough information to work out the initial vx(0) and vy(0) values, so you can work out vx(t) and vy(t). After that you can just go ahead and carry out the work in your equation.
 
Thank you! i know how to get the initial x and y components at t=0. What equations should I be using to get the position 0 at the unknown time
 
heartshapedbox said:
Thank you! i know how to get the initial x and y components at t=0. What equations should I be using to get the position 0 at the unknown time

Well, YOU were the one that wrote down the necessary equation.
 
Yeah! I am unsure of how to use it.