there are two factors in electric field which are responceable to describe the electric field.that is E and D.
The strength of an electric field is influenced by two factors: the magnitude of the charge creating the field, and the distance from the charge at which the field is being measured. The larger the charge and the closer the distance, the stronger the electric field will be.
The two factors that affect the strength of an electric field are the amount of charge creating the field and the distance from the charge to the point where the field is being measured.
The intensity of an electric field is determined by the amount of charge creating the field and the distance from the charge. The closer you are to the charge, the stronger the electric field will be.
For magnetic forces, factors that affect strength include the magnitude of the magnetic field, the charge of the particles involved, and the relative velocity between the charged particles. For electric forces, factors include the magnitude of the charge on the particles involved, the distance between the charges, and the medium through which the charges interact.
An electron moves in an electric field by experiencing a force that causes it to accelerate in the direction of the field. Factors that influence its motion include the strength of the electric field, the charge of the electron, and any other forces acting on the electron.
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 strength of an electric field depends on the charge that causes it, and on the distance from the charge.
An electric field surrounds the charge and exerts force on other charges.
The size of the electric potential is determined by the amount of charge creating the electric field and the distance from the charge. The electric potential energy depends on the charge of the object and its position in the electric field, as well as the electric potential at that point.
An electric field exerts a force on a stationary charged object by interacting with the charge of the object. The electric field creates a force that pushes or pulls the charged object in the direction of the field, depending on the polarity of the charges involved. This force is a result of the interaction between the electric field and the charge of the object, causing the object to experience a push or pull in the direction of the field.
The maximum electric field in the filament will depend on factors such as the voltage applied and the material properties of the filament. It can be calculated using the formula E V/d, where E is the electric field, V is the voltage, and d is the distance across the filament.
There are a few factors that affects the movement of electrons. The main factor would be crossed fields.