As we know that electric flux is the total number of electric lines of forces passing through a surface.
Maximum Flux:
Electric flux through a surface will be maximum when electric lines of forces are perpendicular to the surface.
Minimum flux:
Electric flux through a surface will be minimum or zero when electric lines of forces are parallel to the surface.
The maximum electric flux occurs when the electric field vector is perpendicular to the surface, resulting in the maximum number of field lines passing through the surface. This is known as the flux through a closed surface, which is given by the formula ÎĶ = E * A * cos(Îļ), where E is the electric field, A is the area of the surface, and Îļ is the angle between the field and the normal to the surface. The minimum electric flux occurs when the electric field vector is parallel to the surface, resulting in zero flux as no field lines pass through the surface.
A maximum or minimum is generally referred to as an extrema.
Addition is the maximum or minimum function in math.
The opposite of minimum is maximum.
The spread is the minimum value (not count) to the maximum value. The range is the maximum value minus the minimum value. Spread does not consider the frequency of the values, only the minimum and maximum.
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When the area is perpendicular to the electric field, the maximum number of electric field lines pass through the area, resulting in the maximum flux. This occurs because the angle between the electric field lines and the normal to the area is at its smallest, maximizing the dot product that determines flux.
Types of flux - Electric and Magnetic Flux. Electric field flux through a closed surface is equal to the change enclosed in the surface, or the rate of change of magnetic flux is equal to the induced voltage around the surface.
The symbol for electric flux is ÎĶE. It represents the amount of electric field penetrating a given surface area.
Electric flux depends on the strength of the electric field, the angle between the electric field and the surface, and the area of the surface the electric field passes through. Additionally, the distribution of charges within the field also affects the electric flux.
The unit of electric flux is Volt-meter or Newton-meter^2 Coulomb^-1.
Scalar
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No, electric flux is a scalar quantity. It represents the total number of electric field lines passing through a given surface.
The electric flux depends on charge, when the charge is zero the flux is zero. The electric field depends also on the charge. Thus when the electric flux is zero , the electric field is also zero for the same reason, zero charge. Phi= integral E.dA= integral zcDdA = zcQ Phi is zcQ and depends on charge Q, as does E.
The extrema are the maximum and minimum values.The extrema are the maximum and minimum values.The extrema are the maximum and minimum values.The extrema are the maximum and minimum values.
Electric flux.
If the surface does not enclose any charge, the electric flux through the surface will be zero. This is because electric flux is a measure of the total electric field passing through a surface, and if there are no charges within the surface, there will be no electric field passing through it.