The net movement of osmosis stops when the concentration of solute is equal on both sides of the membrane, resulting in equilibrium. At equilibrium, there is no further movement of water molecules across the membrane.
When molecules reach equilibrium, diffusion stops. This occurs when there is an equal concentration of molecules on both sides of the membrane and no net movement.
The cell is in a state of dynamic equilibrium. This means that while molecules are constantly moving in and out of the cell, there is no overall change in the concentration inside the cell because the rate of movement in both directions is equal.
When there is no difference in concentration of a substance from one area to another, we refer to this as equilibrium. At equilibrium, there is an equal distribution of the substance, and there is no net movement of the substance in any particular direction.
The system is in a state of equilibrium. This means there is no net flow or change occurring within the system, leading to a uniform distribution of particles.
The net effect of a force is the overall result of all forces acting on an object. It determines the object's motion, whether it accelerates, decelerates, or remains in equilibrium. The net effect is calculated by considering both the magnitude and direction of all the forces.
For an object to be at equilibrium, the net force acting on it must be zero, which means that the forces are balanced and cancel each other out. Additionally, the object must not be accelerating, so the net torque acting on it must also be zero.
A matter is in a state of equilibrium when the forces acting on it are balanced, resulting in no net change in its motion or state. In this state, the object will remain at rest or move at a constant velocity. Any disturbance to this balance will cause the matter to move or change its state.
At equilibrium
It is "Equilibrium".
0. An object in equilibrium has constant velocity, which makes its acceleration 0. Since net force=mass times acceleration, this would make the net force zero. Note that there could be multiple forces acting on the object, but since it is in equilibrium they would have to be equal and opposite in direction, to cancel all of the forces out. This would make the net force zero.
In a system at equilibrium, the net force acting on it is zero. This means that the forces acting in opposite directions cancel each other out, resulting in no acceleration of the system. If the net force is not zero, the system will experience acceleration in the direction of the net force until equilibrium is reached.
equilibrium
circle
Yes.
equilibrium
Equilibrium