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The electromagnetic wave in turn produces an oscillating motion of charge in the receiving antenna.
This motion of charge in a direction opposite the electric field is a feature common to all sources of electromotive force.
QDs confine the motion of charge carriers in three-dimensions and are often referred to as artificial atoms.
As the voltage increases, the accelerated motion of charge carries will cause local ion aggregation in the nanopore, resulting in the increase of 1/f-type excess noise.
The discrete element method models the motion of charge in tumbling mills using the physics of individual collision between balls, rock particles, and mill shell.
Consequently, the understanding of quantum properties which appear in such nanoscale materials is important, meanwhile classical description for the motion of charge carriers is no longer valid in that situation.
Similar(51)
Magnetic fields are produced by electrical currents, either at the atomic level (as in bar magnets) or by the motion of charged particles like electrons and ions in wires or Earth's core.
The motion of charged particles results in the electric current.
Of particular interest in paleomagnetospheric studies is the motion of charged particles in different magnetospheric configurations.
Equations of motion of charged particles with nonzero mass are not conformal invariant.
The motion of charged fullerene in the nanotube with the help of electric field is described in detail in [5].
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