ughm i think because when u pass a balloon on your head it make your hair move with it also.
Electric charges do not need to be touching to exert forces on each other. They can interact through electric fields that extend through space, allowing charges placed at a distance from each other to exert forces on one another.
ughm i think because when u pass a balloon on your head it make your hair move with it also.
No, like charges repel each other according to the principle of electrostatics. This phenomenon is governed by Coulomb's Law, which states that like charges exert repulsive forces on each other, while opposite charges attract.
When two opposite electrical forces are near each other, they will attract each other. This attraction is due to the presence of opposite charges, which exert a force on each other. The strength of the attraction will depend on the magnitude of the charges and the distance between them.
Charges exert forces on each other through the electromagnetic force. Like charges repel, while opposite charges attract. The strength of the force depends on the magnitude of the charges and the distance between them, as described by Coulomb's law.
Objects exert forces on each other through four fundamental interactions: gravitational, electromagnetic, weak nuclear, and strong nuclear forces. These forces can attract or repel objects, depending on their nature and distance. The strength and direction of the forces are determined by the masses and charges of the objects involved.
basically an electron is moved by the forces they exert on each other. It depends on the polarity of that particular charge as it is known that like charges repel and unlike charges attract.
Electric charges exert forces on each other through the electromagnetic force. Like charges (positive-positive, negative-negative) repel each other, while opposite charges (positive-negative) attract each other. These forces are mediated by virtual particles called photons, which are responsible for transmitting the electromagnetic force between charged particles.
When overlapping spheres of charge interact in an electric field, they exert forces on each other based on their respective charges. Like charges repel each other, while opposite charges attract. The strength of the interaction depends on the distance between the charges and the amount of charge present.
yes. same forces repel each other and opposite forces attract.
Force
Electrostatic field is the space in which charges exert a force on each other. This field arises due to the presence of electric charges and is responsible for the interactions between charged particles. It is characterized by the magnitude and direction of the force experienced by charges within the field.