A force that resists motion is inertia.
If you apply force to an object, you accelerate it. If you apply the force in the direction that the object is moving, you speed it up. If you apply it in the opposite direction, you slow it down. If you apply the force in another direction than the object is moving in you will change the direction of the objects motion. The amount of acceleration is given by a = F/m where a is acceleration, F is force and m is the mass of the object.
Yes, an unbalanced force is needed to change the motion of an object.If an unbalanced force does not act on an object it will continue to maintain its state of motion (either in motion or at rest), not considering the effect of frictional force. This is basically Newtons first law of motion.
Tension
an object in motion will stay in motion unless acted upon by another force
No, the tension in the string of a swinging pendulum does not do any work. The tension force acts perpendicular to the direction of motion, so it does not apply a force in the direction of displacement. This means that no work is done by the tension force on the pendulum.
The tension in the string provides the centripetal force for the mass in uniform circular motion in this experiment. This tension acts towards the center of the circular path, keeping the mass moving in a circular motion instead of following a straight line.
Tension force is a pulling force exerted by a string, rope, or cable, acting in the direction of the object it's attached to. Friction force is a resisting force that opposes the motion or attempted motion of an object in contact with a surface, acting parallel to the surface. Tension force arises from a pulling action, while friction force arises from the contact between surfaces.
The force on a rope is typically determined by the tension applied to it. This tension arises from the pulling or stretching of the rope, causing the rope to support a load or resist a force. The force on a rope can be calculated using principles of Newton's laws of motion and equilibrium.
Friction or tension are forces that could prevent motion, if the applied energy is sufficiently low enough to not cause the object to move. Friction is surface resistance to relative motion, as of a body sliding or rolling. Tension is a force that tends to produce an elongation of a body or structure Inertia is the tendency of a body to preserve its state of rest or uniform motion unless acted upon by an external force.
Some examples of pulling forces include tension, friction, and drag. Tension is a force that occurs when an object is being pulled or stretched in opposite directions. Friction is a force that resists motion when two surfaces are in contact with each other. Drag is a force that opposes an object's motion through a fluid (such as air or water).
Tension in a rope or string can act as a centripetal force when it is pulling an object towards the center of the circular motion. This force is necessary to keep the object moving in a circular path instead of flying off in a straight line due to inertia.
The centripetal force that keeps a mass in uniform circular motion is usually provided by tension in a string, gravitational force, or the normal force from a surface, depending on the specific situation. This force acts towards the center of the circle to keep the object moving in a circular path at a constant speed.
The tension in the cord provides the restoring force that makes the pendulum swing back and forth. The force of gravity acts on the mass of the pendulum, contributing to its acceleration. Both factors influence the period and amplitude of the pendulum's motion.
The centripetal force is supplied by the tension in a string, gravitational force, friction, or any force pointing towards the center of the circular motion that keeps an object moving in a curved path.
Centripetal force does not exist on its own as a standalone force, but rather it is a net force that acts towards the center of circular motion. Centripetal force is not a new or separate force but rather is provided by other forces in a system, such as tension, gravity, or friction. Centripetal force does not contribute to the speed of an object in circular motion, but rather acts to change the direction of motion.
No, but force can result in tension.