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.
Electromagnetic field. An electric field.
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 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.
In the context of electromagnetism, the electric field is a region around a charged object where another charged object would experience a force. The force is the actual interaction between two charged objects due to their electric fields. In simpler terms, the electric field sets up the conditions for the force to act between charged objects.
An electric field surrounds every charged object, exerting a force on other charged objects within its vicinity. This electric field extends infinitely in all directions, influencing how charged particles interact with one another.
Electromagnetic field. An electric field.
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 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.
In the context of electromagnetism, the electric field is a region around a charged object where another charged object would experience a force. The force is the actual interaction between two charged objects due to their electric fields. In simpler terms, the electric field sets up the conditions for the force to act between charged objects.
An electric field surrounds every charged object, exerting a force on other charged objects within its vicinity. This electric field extends infinitely in all directions, influencing how charged particles interact with one another.
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.
Electric and magnetic forces are transmitted via photons.
The electric force between two charged objects can be increased by increasing the magnitude of the charges on the objects or by decreasing the distance between the objects.
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.
No, objects do not have to be touching each other to exert electrical force. The force between charged objects can be exerted through electric fields, which can act over a distance. This force diminishes with distance according to Coulomb's Law.
Electrically charged objects either attract or repel each other based on their charge. Oppositely charged objects attract each other (positive and negative), while objects with the same charge repel each other (positive and positive, or negative and negative) due to the interaction of electric fields.
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