Tension is directly proportional to extension.
Force = k x extension
Materials such as metals (e.g. steel, aluminum), rubber, and certain plastics typically obey Hooke's Law of elasticity within their linear elastic range. This means they exhibit a linear relationship between stress and strain when subjected to small deformations.
The Beer-Lambert Law is expressed as A = εlc, where A represents the absorbance of light at a certain wavelength by a sample, ε is the molar absorptivity of the substance, l is the path length of the sample, and c is the concentration of the absorbing species.
To solve Boyle's Law equation for V2, first write the equation as P1V1 = P2V2. Then rearrange it to isolate V2 on one side, dividing both sides by P2 to solve for V2, which will be V2 = (P1 * V1) / P2.
Hooke's law describes the relationship between the force applied to a spring and the resulting extension or compression of the spring, as long as the material remains in the elastic deformation range of the stress-strain curve. Beyond the elastic limit, the material may exhibit plastic deformation, and Hooke's law may not apply.
The equation that best describes the law of conservation of momentum is: m1v1_initial + m2v2_initial = m1v1_final + m2v2_final This equation states that the total momentum of a closed system before a collision is equal to the total momentum after the collision.
all of them
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SinA/a = SinB/b = SinC/c
Hooke's law of Elasticity.
When the formula equation is correctly balanced, the coefficients represent the relative number of moles of each substance involved in the reaction. This ensures that the number of atoms on each side of the equation is the same, satisfying the law of conservation of mass.
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.
When the equation is correctly balanced, the sum of the total charge of the reactants is equal to the sum of the total charge of the products. This ensures that the law of conservation of charge is upheld in the chemical reaction.
Hooke's Law relates to the elasticity of elastic objects, such as metal springs, and how they stretch in proportion to the force that acts on them.
Its all to do with Hookes law................
No, by definition Hooke's law relates to linear elastic only; when outside the elastic region it does not apply.
An equation is balanced when the number of each kind of atoms and the total charge of all particles are the same or equal for both the reactants and the products (ie on both sides of the equation).
Constitutional Law