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The force applied on a piston is directly proportional to the pressure acting on it, which in turn depends on the area of the piston. If the two pistons have different areas, the larger piston will generate a greater force for the same pressure compared to the smaller piston due to the differences in surface area. This can lead to significant differences in the forces experienced by each piston.

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Can there be a potential difference between two conductors that carry like charges of the same magnitude?

Yes, there can be a potential difference between two conductors that carry like charges of the same magnitude. This can occur if the conductors are at different potentials due to external influences or if the conductors are part of a circuit where there is a potential difference applied.


Which scientist applied the concept of a quantum to explain the photoelectric effect?

Albert Einstein applied the concept of a quantum to explain the photoelectric effect in his 1905 paper. He proposed that light consists of discrete packets of energy called photons, which interact with electrons in materials to release them from the surface.


When stress is applied unequally in different directions it is termed?

When stress is applied unequally in different directions, it is termed shear stress. Shear stress occurs when forces are applied parallel to a surface in opposite directions, causing the material to deform by sliding over itself.


Different forces are applied to two different objects that have the same s what will happen?

The objects will experience different accelerations based on the magnitude and direction of the forces applied. According to Newton's second law (F = ma), the acceleration of an object is directly proportional to the force applied to it. Therefore, the object that experiences the greater force will have a greater acceleration compared to the object with the lesser force.


When a steady potential difference is applied across the ends of a conducting wire?

Current flows through the wire due to the movement of free electrons within the material, in response to the electric field established by the potential difference. The current is directly proportional to the applied potential difference, as described by Ohm's Law, provided the material's resistance remains constant.

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