The spring force acts in the opposite direction of the displacement from the equilibrium position.
The force that stretches a spring is called tension force. This force appears when the spring is being pulled or stretched in one direction.
An example of spring force is when you compress a spring by applying a force to one end. The spring will exert an equal and opposite force in the opposite direction, trying to return to its original shape. This restoring force is known as spring force.
An example of spring force is the force exerted by a compressed or stretched spring as it tries to return to its equilibrium position. When you compress a spring by pushing on it, the spring exerts a force pushing back in the opposite direction.
If the gravitational force is less than the buoyant force, the drag force will act in the opposite direction of the gravitational force.
When two forces act in the same direction, they will combine to produce a resulting force equal to the sum of the individual forces. This combined force will act in the same direction as the individual forces.
The force that stretches a spring is called tension force. This force appears when the spring is being pulled or stretched in one direction.
It means that the force is in a direction opposite to the displacement of the spring.It means that the force is in a direction opposite to the displacement of the spring.It means that the force is in a direction opposite to the displacement of the spring.It means that the force is in a direction opposite to the displacement of the spring.
An example of spring force is when you compress a spring by applying a force to one end. The spring will exert an equal and opposite force in the opposite direction, trying to return to its original shape. This restoring force is known as spring force.
An example of spring force is the force exerted by a compressed or stretched spring as it tries to return to its equilibrium position. When you compress a spring by pushing on it, the spring exerts a force pushing back in the opposite direction.
Both have a force acting to bring the spring back to its original length. So the 1/2kx2 is just in the reverse direction (not because the x is negative because the acting force is towards x0, the original length).
If the gravitational force is less than the buoyant force, the drag force will act in the opposite direction of the gravitational force.
Force(s) that act in the same direction
Yes, the spring clamp is exerting a force on the papers, but it is not doing work on them unless the papers are displaced in the direction of the force. Work is only done when a force causes a displacement in the direction of the force.
Normal force can act on an object
If many forces act in the same direction on an object, then the net force is their sum.
That depends on the direction of the forces. If the two forces act in the same direction, the resultant force will be doubled and if the two forces act in the oppsite direction, the resultant force will be null or zero.
When two forces act in the same direction, they will combine to produce a resulting force equal to the sum of the individual forces. This combined force will act in the same direction as the individual forces.