The region around a charged object where electric forces are exerted on other charged objects is called an electric field. Electric fields emanate outward from positive charges and inward towards negative charges. The strength of the electric field decreases with distance from the charged object.
The region around a charged object where an electric force can be exerted on another object is called the electric field. This field exists around any charged object and exerts a force on any other charged object placed within it.
The region around a charged object where the object's electric field interacts with other charged objects is called the electric field or the influence region. This region determines the force that a test charge will experience if placed within it.
The region around a charged object where the electric force is exerted on another charged object is called the electric field. It arises from the charged object creating a force on other charged objects in its vicinity based on their charges and distances from the source charge.
The region around a charged object where the object and the electric force interacts with other charged objects is called the electric field. The electric field is a vector field that exerts a force on any other charged object placed within it, with the magnitude and direction of the force depending on the charge and position of the objects involved.
Electromagnetic field. An electric field.
The region around a charged object where an electric force can be exerted on another object is called the electric field. This field exists around any charged object and exerts a force on any other charged object placed within it.
The region around a charged object where the object's electric field interacts with other charged objects is called the electric field or the influence region. This region determines the force that a test charge will experience if placed within it.
electric force
The region around a charged object where the electric force is exerted on another charged object is called the electric field. It arises from the charged object creating a force on other charged objects in its vicinity based on their charges and distances from the source charge.
The region around a charged object where the object and the electric force interacts with other charged objects is called the electric field. The electric field is a vector field that exerts a force on any other charged object placed within it, with the magnitude and direction of the force depending on the charge and position of the objects involved.
Electromagnetic field. An electric field.
Magnetic field.
Yes, the space around an electrically charged object is filled with an electric field. The electric field represents the influence a charged object exerts on other charged objects in its vicinity. It can be thought of as a region where a force would be experienced by a charged particle placed within it.
The region around a charged object where its electrical force is exerted on other charged objects is known as the electric field. The strength of the electric field is determined by the magnitude of the charge on the object creating the field. Charged objects placed in the electric field will experience a force either attracting or repelling them, depending on the sign of the charges involved.
The electric field is a region around a charged object where other charged objects experience a force. The electric force is the actual force experienced by a charged object in an electric field. In summary, the electric field sets up the conditions for the electric force to act on charged objects.
The electric field is a region around a charged object where other charged objects experience a force. The electric force is the actual force experienced by a charged object in an electric field. In the context of electromagnetism, the electric field is what creates the electric force, which is responsible for the interaction between charged particles.
Yes, an electric field is a region in space around a charged object where other charged objects would experience an electric force if placed within that field. The strength and direction of the electric field at a point is determined by the presence and distribution of charges in the vicinity.