sound wave amplitude is one example
The electric force between you and a charge increases as you get closer due to the changing electric field intensity. The force follows an inverse square law, meaning it grows rapidly the closer you get. This is why you might feel a stronger force when near an electric charge.
Inverse square.
True. The strength of an electrical field follows an inverse square law.
You can draw electric field lines closer together to show a stronger electric field. The density of the lines represents the intensity of the field - the closer the lines, the stronger the field.
That force is called electromagnetism. It is one of the fundamental forces in nature and is responsible for both attracting and repelling objects with electric charges.
The electric force between you and a charge increases as you get closer due to the changing electric field intensity. The force follows an inverse square law, meaning it grows rapidly the closer you get. This is why you might feel a stronger force when near an electric charge.
Inverse square.
The closer it gets to the battery te stronger it gets tambien if there us less bulbs the more it gets
True. The strength of an electrical field follows an inverse square law.
The forces of gravity between any two objects depend on the mass of theobjects ... stronger for greater mass ... and on the distance between them ...stronger for smaller distance.
as you get closer it gets warmer and as you go farther away it gets colder
Your heart gets stronger when you move or exercise.
To become closer to Jesus means your relationship with Jesus becomes stronger.
Asymptote
Ionic bonds are formed by the attraction of the positively-charged ion to the negatively-charged ion, and the closer they are, the more attractive force. It is just like two magnets of opposite poles, you can slowly bring them together until the attractive force gets strong enough to slam them together.
You can draw electric field lines closer together to show a stronger electric field. The density of the lines represents the intensity of the field - the closer the lines, the stronger the field.
Asymptote.