The minimum tension of a single object must be greater than the stress applied to it in order to prevent it from breaking.
Minimum breaking strength refers to the minimum amount of force or tension a material or object can withstand before it breaks or fails. It is an important specification used to determine the safety and reliability of various products, such as ropes, cables, and load-bearing equipment.
Weight plays a bigger role in whether an object will break surface tension. Objects with greater weight exert more force on the surface tension, making them more likely to break through. Density affects the object's ability to displace water, but weight is the determining factor in breaking through the surface tension of water.
The tension of a rope on an inclined plane is the force exerted by the rope to prevent an object from sliding down the plane. It is directed parallel to the incline. The tension affects the overall equilibrium of the system by counteracting the component of the object's weight that acts down the incline. This helps maintain the object's position on the incline and prevents it from sliding.
No, tension and weight are not the same in a suspended object. Weight is the force of gravity acting on an object, while tension is the force exerted by a rope or string holding the object up.
Tension is a force that pulls or stretches an object, while torsion is a force that causes twisting or rotation in an object. Tension acts along the length of an object, while torsion acts perpendicular to the length of an object.
Minimum breaking strength refers to the minimum amount of force or tension a material or object can withstand before it breaks or fails. It is an important specification used to determine the safety and reliability of various products, such as ropes, cables, and load-bearing equipment.
Weight plays a bigger role in whether an object will break surface tension. Objects with greater weight exert more force on the surface tension, making them more likely to break through. Density affects the object's ability to displace water, but weight is the determining factor in breaking through the surface tension of water.
[object Object]
The tension of a rope on an inclined plane is the force exerted by the rope to prevent an object from sliding down the plane. It is directed parallel to the incline. The tension affects the overall equilibrium of the system by counteracting the component of the object's weight that acts down the incline. This helps maintain the object's position on the incline and prevents it from sliding.
Tension and compression takes place when an object has a force on another object. The tension is when the force is causing a pulling effect on part of the object. The compression is when the force is causing a contracting effect on part of the object.
No, tension and weight are not the same in a suspended object. Weight is the force of gravity acting on an object, while tension is the force exerted by a rope or string holding the object up.
[object Object]
tension; under a tensile stress ========================
Tension is a force that pulls or stretches an object, while torsion is a force that causes twisting or rotation in an object. Tension acts along the length of an object, while torsion acts perpendicular to the length of an object.
tension.
Tension force can be either balanced or unbalanced, depending on the situation. When the tension in a rope or string is equal and opposite to other forces acting on an object, it is a balanced force. If the tension is not equal to other forces, then it becomes an unbalanced force.
To calculate tension in a system, you can use the equation T mg ma, where T is the tension force, m is the mass of the object, g is the acceleration due to gravity, and a is the acceleration of the object. This equation takes into account the forces acting on the object to determine the tension in the system.