2011-05-13, 03:44 AM
So... from physics, when a charge is moving through a magnetic field, it experiences a force equal to F = qvB sin θ.
I understand the problems they give us about this in the textbook, but there's a conceptual thing I don't get. That equation uses the velocity of the charged particle in the field, v. But velocity isn't an absolute thing, it needs to be measured relative to something else. Relative to the ground, I might not be moving, but relative to a passing train, or the sun, I'm moving pretty fast. So what v to use?
It makes sense (based on every problem they actually give us) to use the v that assumes that the magnetic field isn't moving, but that just leads to another question, which is, how would you tell if a magnetic field is moving? Suppose it's constant and uniform, then it's still constant and uniform regardless of whether it's moving, in what direction or where, it still looks the same everywhere. But whether or not it's moving is important, because that changes what v is, which changes the magnetic force that results. Am I missing something here?
I understand the problems they give us about this in the textbook, but there's a conceptual thing I don't get. That equation uses the velocity of the charged particle in the field, v. But velocity isn't an absolute thing, it needs to be measured relative to something else. Relative to the ground, I might not be moving, but relative to a passing train, or the sun, I'm moving pretty fast. So what v to use?
It makes sense (based on every problem they actually give us) to use the v that assumes that the magnetic field isn't moving, but that just leads to another question, which is, how would you tell if a magnetic field is moving? Suppose it's constant and uniform, then it's still constant and uniform regardless of whether it's moving, in what direction or where, it still looks the same everywhere. But whether or not it's moving is important, because that changes what v is, which changes the magnetic force that results. Am I missing something here?


". The equation for the force is specifically:![[Image: image035.gif]](http://physics-help.info/physicsguide/electricity/electric_field_full_images/image035.gif)