Capacitance increases with a decrease in distance between plates because the electric field between the plates becomes stronger, storing more electric charge per unit voltage. This results in a higher capacitance value since the plates can hold more charge for the same applied voltage.
As the distance between two magnets increases, the force of attraction or repulsion between them will decrease. This decrease is due to the weakening of the magnetic field as the distance between the magnets increases.
If you increase the mass, you increase the gravitational force proportionally. If you increase the distance between two masses, you decrease the gravitational force between them by and amount proportional to the square of the distance.
Decrease. Gravitational force is inversely proportional to the square of the distance between two objects, so as the distance between them increases, the gravitational force between them decreases.
The gravitational pull between two objects will decrease as the distance between them increases. This relationship is described by Newton's law of universal gravitation, which states that the force of gravity decreases with the square of the distance between two objects.
To increase the electrostatic force between two charged objects, you can increase the magnitude of the charges on the objects or decrease the distance between them. Increasing the charge will directly increase the force, while decreasing the distance will increase the force through the inverse square law relationship.
you have it reversed. capacitance increases with decrease in distance of plates.
No. Capacitance is determined by the area of overlap of its plates, the distance between them, and the absolute permittivity of its dielectric.
Decrease the distance between them.
As the distance between two magnets increases, the force of attraction or repulsion between them will decrease. This decrease is due to the weakening of the magnetic field as the distance between the magnets increases.
If you increase the mass, you increase the gravitational force proportionally. If you increase the distance between two masses, you decrease the gravitational force between them by and amount proportional to the square of the distance.
At a greater distance, the gravitational force becomes less.
Decrease. Gravitational force is inversely proportional to the square of the distance between two objects, so as the distance between them increases, the gravitational force between them decreases.
The area of the sheets, the distance between them, and the material between them.
Reduce the total mass or increase the distance between them.
The gravitational pull between two objects will decrease as the distance between them increases. This relationship is described by Newton's law of universal gravitation, which states that the force of gravity decreases with the square of the distance between two objects.
To increase the electrostatic force between two charged objects, you can increase the magnitude of the charges on the objects or decrease the distance between them. Increasing the charge will directly increase the force, while decreasing the distance will increase the force through the inverse square law relationship.
any capacitance is given by equation C = (epsilon * A/ d) where d is distance between two plates, thus as d reduces C increases. Now, in depletion region as we increase reverse bias, the depletion region width increases. Now consider depletion region as a parallel plate capacitor, with positive charges on n side and negative charges on p side. Thus, as reverse bias increases, d of junction capacitance increases thus capacitance reduces. On other hand, as reverse bias reduces, d of junction capacitance reduces, thus capacitance increases. -Amey Churi