Q&A

Does tension depend on weight?

Does tension depend on weight?

Does Tension Depend on Mass? If weight is hanged from a cable or wire from a fixed point, the wire or cable would be under tension proportional to the mass of the object. The wire is under tension proportional to the force of pulling.

Does weight of rope affect tension?

The pulling force that acts along a stretched flexible connector, such as a rope or cable, is called tension, T. When a rope supports the weight of an object that is at rest, the tension in the rope is equal to the weight of the object: T = mg.

What does the weight of an object depend on?

mass
An object’s weight depends on its mass (the amount of matter it consists of) and the strength of the gravitational pull.

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Does tension depend on length?

The lengths of the strings do not affect the tension.

Does tension increase with friction?

The friction is introducing an extra force which changes the tensions on each side. As far as your question about rope stretching goes, if you anchor a rope on one side and pull, the rope will pull back, creating a tension.

Which 2 factors can affect an objects weight?

Gravity is the force that gives weight to objects and causes them to fall to the ground when dropped. Two major factors, mass and distance, affect the strength of gravitational force on an object. You witness the first factor in everyday life – more massive objects are heavier.

Does tension depend on the weight of the object?

Yes, tension ( T) depends on weight of the object. “Tension is force exerted when it is subjected to a pull”. So, tension and the weight act in opposite directions. The object with the mass of m experiences the downward pull by mg and T is the equally opposite force. With Newton’s third law:

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What type of force is tension in a string?

Tension in a string is a force. Weight is also a force that acts downward due to gravity. While an object is being held in equilibrium, the net force acting on it is zero.

How do you increase string tension with mass?

T-mg=0. So, the tension of the string equals the weight of the object. If you increase the mass of the object (therefor its weight), you will increase its tension.

Which side of the string/rope has the tension?

In case of the hanging mass, the string pulls it upwards, so the string/rope exerts an upper force on the mass and the tension will be in the upper side. The ends of a string or other object transmitting tension will apply forces on the objects to which the string is connected, in the direction of the rod/string at the point of attachment.