lookoutastroboy
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Hey guys,
Just doing some physics problems but having some difficulty with interpreting emf vs time graphs. Especially when they give you a situation like a coil moving in a field or something and the conditions change.
There was 1 question in the 2010 Independent Physics Trial paper that I hope people can explain. (for some reason - pics of answers won't save - just the question).
1. A metal ring has its plane perpendicular to a magnetic field as shown (see pic)
Over a period of time, the strength of the magnetic field is reduced at a uniform rate from 0.5T to zero. Then its direction is reversed and the strength increased, at the same uniform rate, back up to 0.5T.
Which graph shows a possible emf induced in the ring during this time?
So the answer is a graph is just a straight horizontal line on the emf axis (above time axis). Was wondering why it is a constant EMF given the conditions...
p.s. orientation of pic is screwed; hope yall can read it
Cheers,
L.A.
Just doing some physics problems but having some difficulty with interpreting emf vs time graphs. Especially when they give you a situation like a coil moving in a field or something and the conditions change.
There was 1 question in the 2010 Independent Physics Trial paper that I hope people can explain. (for some reason - pics of answers won't save - just the question).
1. A metal ring has its plane perpendicular to a magnetic field as shown (see pic)
Over a period of time, the strength of the magnetic field is reduced at a uniform rate from 0.5T to zero. Then its direction is reversed and the strength increased, at the same uniform rate, back up to 0.5T.
Which graph shows a possible emf induced in the ring during this time?
So the answer is a graph is just a straight horizontal line on the emf axis (above time axis). Was wondering why it is a constant EMF given the conditions...
p.s. orientation of pic is screwed; hope yall can read it
Cheers,
L.A.
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