The magnetic force between two magnets decreases as the distance between them increases. This relationship follows an inverse square law, meaning that the force decreases rapidly as the distance increases.
As the distance between magnetic objects increases, the magnetic attraction between them decreases. This is because the magnetic force follows an inverse square law, meaning it weakens by a factor of the square of the distance. So, the farther apart the objects are, the weaker the magnetic attraction between them will be.
It remains constant
If the distance between two objects is decreased, the force between them will increase. This is in accordance with the inverse square law, which states that the force between two objects is inversely proportional to the square of the distance between them.
As distance from a magnet increases, the strength of the magnetic force decreases. This is because the magnetic field created by the magnet weakens with distance, resulting in a reduction in the force it exerts on other magnetic objects.
The electrical force between charges decreases as the distance between them increases. This is because the force follows an inverse square law relationship with distance, meaning that it weakens proportionally to the square of the distance between the charges.
a) stays constant b) decreases sharply c) increase d) decreases slightly
the force of attraction get weaker the more the distance grows between magnetic fields
It remains constant
As the distance between magnetic objects increases, the magnetic attraction between them decreases. This is because the magnetic force follows an inverse square law, meaning it weakens by a factor of the square of the distance. So, the farther apart the objects are, the weaker the magnetic attraction between them will be.
It remains constant
It remains constant
If the distance between two objects is decreased, the force between them will increase. This is in accordance with the inverse square law, which states that the force between two objects is inversely proportional to the square of the distance between them.
The space of the atoms increase!
As distance from a magnet increases, the strength of the magnetic force decreases. This is because the magnetic field created by the magnet weakens with distance, resulting in a reduction in the force it exerts on other magnetic objects.
The electrical force between charges decreases as the distance between them increases. This is because the force follows an inverse square law relationship with distance, meaning that it weakens proportionally to the square of the distance between the charges.
If you change the distance between the magnet and the nails, the strength of the magnetic force acting on the nails will vary. As the distance increases, the magnetic force decreases, making it less likely for the nails to be attracted to the magnet. Conversely, decreasing the distance enhances the magnetic pull, allowing the nails to be drawn to the magnet more effectively. This phenomenon illustrates the inverse square law of magnetism, where force weakens with increased distance.
If the current in the wire increases, the magnetic field also increases.