Newton's second law integration

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
47 replies · 17K views
Physics news on Phys.org
t =mF(v) [tex]\int[/tex][tex]^{v}_{vo}[/tex] dv
 
Oblio said:
t =mF(v) [tex]\int[/tex][tex]^{v}_{vo}[/tex] dv

before you take out F(v), you should replace it with Fo... so what do you get when you solve for v?
 
t= mF(o) [tex]\int[/tex][tex]^{v}_{vo}[/tex] dv

t= mF(o) (v-vo)

solve for v from here?
 
Oblio said:
t= mF(o) [tex]\int[/tex][tex]^{v}_{vo}[/tex] dv

t= mF(o) (v-vo)

solve for v from here?

Yes, one thing though, it should be m/Fo because the F(v) was in the denominator not the numerator.
 
Typo. my bad

v = F(o)t / m + V(o) ?
 
So... why is this especially significant? They want to see some kind of comment.
Something to do with velocity dependence?
 
Oblio said:
So... why is this especially significant? They want to see some kind of comment.
Something to do with velocity dependence?

What kind of motion is it?

v = F(o)t / m + V(o)

describe the kind of motion the object is undergoing.
 
the motion would be linear i believe
 
YES! your back :)
um...

increasing with time?
 
O ya!
I can say both are linear then?