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Hooke's law is not related to any "natural length". Rather, it defines a string constant: how much the string extends or compresses, depending on the applied force. In SI units, the spring constant would be measured in newton/meter.

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If a force of 90 N stretches a spring 1m beyond its natural lengthhow much work does it take to stretch the spring 5m beyond its natural length?

The work done to stretch the spring is given by the formula W = (1/2)kx^2, where k is the spring constant and x is the displacement. First, calculate the spring constant using Hooke's Law (F = kx). Then, use the calculated k value to find the work done to stretch the spring 5m beyond its natural length.


What law explainss the relationship between a spring's change in length and the force it exerts?

Hooke's Law explains the relationship between a spring's change in length and the force it exerts. It states that the force exerted by a spring is directly proportional to the amount it is stretched or compressed. Mathematically, this relationship is expressed as F = kx, where F is the force, k is the spring constant, and x is the displacement of the spring from its equilibrium position.


How do you calculate the restoring force according to Hookes law?

To calculate the restoring force according to Hooke's Law, you can use the formula F = -kx, where F is the restoring force, k is the spring constant, and x is the displacement from the equilibrium position. By multiplying the spring constant with the displacement, you can determine the magnitude and direction of the restoring force acting on the object.


What is the compression of a spring formula and how is it calculated?

The formula for the compression of a spring is: Compression (F L) / k Where: F is the force applied to the spring L is the length of the spring when compressed k is the spring constant To calculate the compression of a spring, you need to multiply the force applied to the spring by the length of the spring when compressed, and then divide the result by the spring constant.


Length of the spring is halved then the spring constant becomes?

If the length of the spring is halved, the spring constant remains the same. The spring constant is determined by the material and shape of the spring, and is not affected by changes in length.

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What Example of hookes law?

Elastic substances return to their original shape after being deformed. Hooke's Law tells us that the force an elastic object, such as a spring, uses to reinstate itself to an original length is relative to, but in the opposite direction, of the length the spring is stretched.


If a force of 90 N stretches a spring 1m beyond its natural lengthhow much work does it take to stretch the spring 5m beyond its natural length?

The work done to stretch the spring is given by the formula W = (1/2)kx^2, where k is the spring constant and x is the displacement. First, calculate the spring constant using Hooke's Law (F = kx). Then, use the calculated k value to find the work done to stretch the spring 5m beyond its natural length.


What law explainss the relationship between a spring's change in length and the force it exerts?

Hooke's Law explains the relationship between a spring's change in length and the force it exerts. It states that the force exerted by a spring is directly proportional to the amount it is stretched or compressed. Mathematically, this relationship is expressed as F = kx, where F is the force, k is the spring constant, and x is the displacement of the spring from its equilibrium position.


How do you calculate the restoring force according to Hookes law?

To calculate the restoring force according to Hooke's Law, you can use the formula F = -kx, where F is the restoring force, k is the spring constant, and x is the displacement from the equilibrium position. By multiplying the spring constant with the displacement, you can determine the magnitude and direction of the restoring force acting on the object.


Why do spring balances show wrong reading after they has been used for a long time?

Its all to do with Hookes law................


What is the compression of a spring formula and how is it calculated?

The formula for the compression of a spring is: Compression (F L) / k Where: F is the force applied to the spring L is the length of the spring when compressed k is the spring constant To calculate the compression of a spring, you need to multiply the force applied to the spring by the length of the spring when compressed, and then divide the result by the spring constant.


How do you answer hookes law experiment?

Hooke's law of elasticity is an approximation that states that the extension of a spring is in direct proportion with the load applied to it.


How much work is done in stretching a spring from its natural length to 9 in. beyond its natural length when a force of 10 lb is required to hold a string stretched 5 in. beyond its natural length?

See http://answers.yahoo.com/question/index?qid=20080722222615AAcfBvp ; it is a similar question.


Want is the aim of hookes law?

Hooke's law was designed to determine the restoring force of a spring, given its spring constant and the displacement of the spring from its equilibrium position. The law is written as follows: F = -kx; in which "F" is the restoring force, "k" is the spring constant, and "x" is the spring's displacement.


Length of the spring is halved then the spring constant becomes?

If the length of the spring is halved, the spring constant remains the same. The spring constant is determined by the material and shape of the spring, and is not affected by changes in length.


Length of spring 6mm what is the extension spring?

multiply the force with length.