restoring force
Force tension is the force experienced by an object when it is pulled or stretched. It is a type of force that occurs in a rope, cable, or any object that is being stretched or pulled. The magnitude of tension is equal to the force applied to stretch or pull the object.
Shear stress is the force applied parallel to a surface, causing it to slide or deform. Normal stress is the force applied perpendicular to a surface, causing compression or tension.
The inertia force is a force that resists changes in an object's motion, while the restoring force is a force that acts to return an object to its equilibrium position after it has been displaced. In some dynamic systems, the inertia force can be balanced by the restoring force, resulting in oscillatory motion.
The stress applied when stretching a rubber band is known as tensile stress. This stress occurs when a material is pulled or stretched by a force acting perpendicular to its surface. It causes the rubber band to deform and elongate as the force is applied.
Normal stress is a force acting perpendicular to a surface, shear stress is a force acting parallel to a surface causing deformation, and pressure is a measure of force applied over a certain area.
Type your answer stress; the force applied perunit surface area of the body that produce or tends to produce deformation in a body is called stress if a force F to a area A of a body then stress=force/area or o=f/a where o (stigma) denotes stress.obviously, the SI unit of stree is newton pper square meter(Nm-2). strain; the fractonal deformation resulting from astree is called strain
Geological stress is a force applied to a rock.
Force tension is the force experienced by an object when it is pulled or stretched. It is a type of force that occurs in a rope, cable, or any object that is being stretched or pulled. The magnitude of tension is equal to the force applied to stretch or pull the object.
Shear stress is the force applied parallel to a surface, causing it to slide or deform. Normal stress is the force applied perpendicular to a surface, causing compression or tension.
The inertia force is a force that resists changes in an object's motion, while the restoring force is a force that acts to return an object to its equilibrium position after it has been displaced. In some dynamic systems, the inertia force can be balanced by the restoring force, resulting in oscillatory motion.
The stress applied when stretching a rubber band is known as tensile stress. This stress occurs when a material is pulled or stretched by a force acting perpendicular to its surface. It causes the rubber band to deform and elongate as the force is applied.
A Force applied to an object will cause a displacement. Strain is effectively a measure of this displacement (change in length divided by original length). Stress is the Force applied divided by the area it is applied to. (eg. pounds per square inch) So, to answer the question, it is the applied Force that produces both stress and strain. Stress and strain are linked together by various material properties such as Poisson's ratio and Young's Modulus.
Normal stress is a force acting perpendicular to a surface, shear stress is a force acting parallel to a surface causing deformation, and pressure is a measure of force applied over a certain area.
Stress is the tension/compression force per unit area.Strain is the ratio of change of length to the original length, due to applied force.Tension is the applied force which tends to elongate the body.
The stress vs strain equation, also known as Hooke's Law, is used to determine the relationship between the applied force and resulting deformation in a material. It is expressed as stress E strain, where stress is the force applied to the material, strain is the resulting deformation, and E is the material's Young's Modulus, which represents its stiffness.
The stress vs strain formula is used to calculate the relationship between the applied force and resulting deformation in a material. It is expressed as stress force/area and strain change in length/original length.
The force exerted by stretching or compressing elastic materials is known as the restoring force. This force is proportional to the amount of deformation applied to the material. As the material is stretched or compressed, the restoring force acts in the opposite direction to bring the material back to its original shape when the deformation is released.