
The extent of polarization depends on:
Answer
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Hint:In order to answer this question, to know the dependency of the extent of polarization, we will go through the whole concept of the polarization and its degree or extent. We will discuss more about polarization.
Complete answer:
The extent of polarization depends on the relative strength of two mutually opposite factors: the dipole potential energy in the external field tending to align the dipoles with the field and thermal energy tending to disrupt the alignment.
The extent of polarization is diverse for various anodes. The hypothetical worth of the voltage for each situation stays as before. The distinction between the voltage really fundamental for gas development to happen and that hypothetically required is brought over voltage.
Polarization (also polarisation) is a property applying to transverse waves that specifies the geometrical orientation of the oscillations. In a transverse wave, the direction of the oscillation is perpendicular to the direction of motion of the wave.
Note: Polarization is the attribute that a wave’s oscillations have a definite direction relative to the direction of propagation of the wave. (This is not the same type of polarization as that discussed for the separation of charges).
Complete answer:
The extent of polarization depends on the relative strength of two mutually opposite factors: the dipole potential energy in the external field tending to align the dipoles with the field and thermal energy tending to disrupt the alignment.
The extent of polarization is diverse for various anodes. The hypothetical worth of the voltage for each situation stays as before. The distinction between the voltage really fundamental for gas development to happen and that hypothetically required is brought over voltage.
Polarization (also polarisation) is a property applying to transverse waves that specifies the geometrical orientation of the oscillations. In a transverse wave, the direction of the oscillation is perpendicular to the direction of motion of the wave.
Note: Polarization is the attribute that a wave’s oscillations have a definite direction relative to the direction of propagation of the wave. (This is not the same type of polarization as that discussed for the separation of charges).
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