The magnetic field vector B(r) at position r is a vector such that, at this position, the magnetic force Fb exerted on a particle with charge q, moving with velocity v, would be:
Fb=qv x B(r)
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Cyclotron Frequency
The constant angular velocity in which a particle in a uniform magnetic field maintains.
w = -qB/m
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Hall Effect
The formation of a transverse electric field in a flat strip carrying a current in a magnetic field.
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Magnetic Field Vector
The magnetic field vector B(r) at position r is a vector such that, at this position, the magnetic force Fb exerted on a particle with charge q, moving with velocity v, would be:
Fb=qv x B(r)
Cyclotron Frequency
The constant angular velocity in which a particle in a uniform magnetic field maintains.
w = -qB/m
Hall Effect
The formation of a transverse electric field in a flat strip carrying a current in a magnetic field.
Hall Voltage
Vh=d/(nqA)*I*B
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Magnetic Work on a Particle
inductance
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Magnetic Field Vector
The magnetic field vector B(r) at position r is a vector such that, at this position, the magnetic force Fb exerted on a particle with charge q, moving with velocity v, would be:
Fb=qv x B(r)
Cyclotron Frequency
The constant angular velocity in which a particle in a uniform magnetic field maintains.
w = -qB/m
Hall Effect
The formation of a transverse electric field in a flat strip carrying a current in a magnetic field.
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