Magnetic Field and Induced Currents in Rails Problem

In summary, the conversation discusses the conditions for induced current in a metal rod moving in a uniform magnetic field. It is concluded that there will be an induced current, with its direction counteracting the force exerted on the rod. This is due to the changing magnetic flux caused by the movement of the rod. The conversation also mentions Lenz's law and the Lorentz-force formula as further explanations of induced current. It is noted that the circuit must be closed in order for current to be induced, and the changing flux occurs due to the movement of the rod, which encloses a changing area and hence induces a current.
  • #1
phyphysics
25
0
Consider the following problem:

There is a uniform magnetic field pointing into the page. A set of rails is placed horizontally inside the field. A metal rod can slide freely on the rails, when we apply a force to move the rod to the right, is there any induced current in the rod when moving it inside the uniform field?
 
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  • #2
Yes there is current if the circuit is closed.
[tex] E = bvB \sin{\alpha} [/tex], here [tex]\alpha = \pi[/tex].
You can deduce the latter from this: [tex] E = \frac{d \Phi}{dt} [/tex] when you remember that [tex] A (t) = ab (t) = vtb [/tex].
 
  • #3
phyphysics said:
Consider the following problem:

There is a uniform magnetic field pointing into the page. A set of rails is placed horizontally inside the field. A metal rod can slide freely on the rails, when we apply a force to move the rod to the right, is there any induced current in the rod when moving it inside the uniform field?

yes there will be an induced current. The direction of that current will be so that the resulting Lorentz force on the rod will counter the force you exterted when pushing the rod to the right.

marlon
 
  • #4
But isn't that the wire does not encounter any change in magnetic flux? How can current be induced if the magnetic flux does not change?
 
  • #5
why do you think the flux isn't changing? what's the effect of sliding the metal bar to the right?
 
  • #6
phyphysics said:
But isn't that the wire does not encounter any change in magnetic flux? How can current be induced if the magnetic flux does not change?
in order to change the flux you can alter two variables:
1) the magnitude of the B field, but this is constant here
2) the surface through which the B lines pass, this changes because of the rod-displacement

marlon
 
  • #7
But how can current be induced when it moves along the UNIFORM magnetic field?
 
  • #8
phyphysics said:
But how can current be induced when it moves along the UNIFORM magnetic field?
because the flux changes

or

because you have a moving wire in a magnetic field. Don't you know what Maxwell says about this ?

marlon
 
  • #9
So what exactly are the conditions for current to be induced?
 
  • #10
phyphysics said:
So what exactly are the conditions for current to be induced?

Well, a changing flux induces an EMF and thus a current, that is all.
If the flux rises, then the induced current will have such a direction that the associated induced B field will counter act to the rising flux. this is just Lenz's law in a more general form

Also, according to the Lorentz-force formula, you know that if a wire moves in a magnetic field, a current must flow through that wire

marlon
 
  • #11
Simply, if the circuit is closed it means some other connection between the two rails. Then this connection with rails and the rod encloses some area and this area is changing due to movement of the rod, hence the flux through this area is changing, inducing current.
 

1. What is a magnetic field?

A magnetic field is a region in space where a magnetic force can be detected. It is created by moving electric charges, and can be visualized using magnetic field lines.

2. How do magnetic fields affect rails?

Magnetic fields can induce currents in rails, causing them to become electromagnets. This can be used to propel trains and other vehicles without the need for fuel.

3. How are magnetic fields created in rails?

Magnetic fields are created in rails by passing an electric current through them. This current creates a magnetic field around the rails, which can then induce a secondary current in nearby conductors.

4. What is the difference between a magnetic field and an induced current?

A magnetic field is a physical phenomenon that can be observed and measured, while an induced current is the result of a magnetic field interacting with a conductor. A magnetic field can exist without inducing a current, but a current can only be induced in the presence of a magnetic field.

5. How is the strength of an induced current determined?

The strength of an induced current is determined by the strength of the magnetic field, the speed at which the conductor moves through the field, and the properties of the conductor (such as its length and resistance).

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