Hey im 13 and I got this answer from school : twisting the lid off a container! hope i helped :)
A good example could be a tornado or twisting a sponge.
Spraining your ankle is typically caused by a torsion force, which is a twisting force that causes the ligaments in the ankle to stretch or tear.
Torsion force is the twisting force applied to an object, causing it to rotate around an axis. Tension force is the pulling force applied to an object, stretching it in the direction of the force. In simple terms, torsion force causes rotation while tension force causes elongation.
The four internal forces that act on structures are tension, compression, shear, and torsion. Tension: This force stretches a material. Example: The cables in a suspension bridge experience tension forces. Compression: This force squeezes a material. Example: The columns in a building experience compression forces. Shear: This force causes parts of a material to slide past each other in opposite directions. Example: Cutting a piece of paper with scissors involves shear forces. Torsion: This force twists a material. Example: Twisting a wire involves torsion forces.
The four internal forces are tension, compression, torsion, and shear. Tension is a stretching force, compression is a compressing force, torsion is a twisting force, and shear is a sliding force.
A good example could be a tornado or twisting a sponge.
Spraining your ankle is typically caused by a torsion force, which is a twisting force that causes the ligaments in the ankle to stretch or tear.
Torsion force is the twisting force applied to an object, causing it to rotate around an axis. Tension force is the pulling force applied to an object, stretching it in the direction of the force. In simple terms, torsion force causes rotation while tension force causes elongation.
The four internal forces that act on structures are tension, compression, shear, and torsion. Tension: This force stretches a material. Example: The cables in a suspension bridge experience tension forces. Compression: This force squeezes a material. Example: The columns in a building experience compression forces. Shear: This force causes parts of a material to slide past each other in opposite directions. Example: Cutting a piece of paper with scissors involves shear forces. Torsion: This force twists a material. Example: Twisting a wire involves torsion forces.
The four internal forces are tension, compression, torsion, and shear. Tension is a stretching force, compression is a compressing force, torsion is a twisting force, and shear is a sliding force.
Yes, it has a force and direction.
Yes,torsion(Twist) is an internal force,along with tension(stretch),shear(cut,bend),compression(squeeze).An internal force acts between two parts of something.
A torsion force is a type of twisting force that causes an object to rotate around an axis. It occurs when two ends of an object are twisted in opposite directions, creating stress and deformation in the material. Torsion forces are commonly encountered in mechanical systems such as shafts, springs, and gearboxes.
a twisting force that causes torsion.
Torsion
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.
Torque is the force that produces or tends to produce rotation or torsion in an object. It is a measure of the twisting or turning force applied to an object. Torque is calculated as the product of the force and the distance from the point of rotation.