Green-lagrange Strain

Green-Lagrange strain is a finite-deformation measure that quantifies changes in length within a material while referring to its original, undeformed configuration. It is calculated from the deformation gradient through the right Cauchy-Green deformation tensor, with E = 1/2(C − I), so rigid-body rotations do not produce strain and nonlinear stretching effects are retained. In engineering, this measure supports analysis of structures and materials undergoing large displacements or rotations, including elastomers, soft tissues, and metal forming processes. It helps formulate constitutive models, evaluate deformation, and predict stress and stability when small-strain assumptions are no longer adequate.

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Research

JoVE Journal - Biology

The Green Monster Process for the Generation of Yeast Strains Carrying Multiple Gene Deletions

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Cited by 13 •

2012

The Green Monster method enables the rapid assembly of multiple deletions marked with a reporter gene encoding green fluorescent protein. This method is based on driving yeast strains through repeated cycles of sexual assortment of deletions and fluorescence-based enrichment of cells carrying more deletions.

Education

JoVE Science Education - Engineering

Quantitative Strain Mapping of an Abdominal Aortic Aneurysm

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2023

Source: Hannah L. Cebull1, Arvin H. Soepriatna1, John J. Boyle2 and Craig J. Goergen1 1Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana 2Mechanical Engineering & Materials Science, Washington University in St. Louis, St Louis, Missouri The mechanical behavior of soft tissues, such as blood vessels, skin, tendons, and other organs, are strongly influenced by their composition of elastin and collagen, which provide elasticity and strength. The fiber...

Lagrange Multipliers: One Constraint

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2026

In constrained optimization, the objective is to maximize or minimize a quantity while satisfying a fixed condition. A standard example is a rectangular pen built against a barn wall using 100 meters of fencing. Because the wall provides one side of the enclosure, only the other three sides require fencing. The problem is to find the dimensions that produce the greatest possible area.Let L represent the length parallel to the wall and W the width perpendicular to it. The area of the pen is A =...

Lagrange Multipliers: Two Constraints

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2026

The method of Lagrange multipliers with two constraints is used to optimize a function subject to two independent constraints. In many applications, the objective function represents a quantity to be maximized or minimized, such as cost, area, distance, or energy. The two constraints represent requirements that the solution must satisfy, such as fixed volume, limited resources, or prescribed dimensions.For a function of three variables, each constraint forms a surface in three-dimensional space.

Lagrange Multipliers: Problem Solving

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2026

A silo with a cylindrical base, flat bottom, and hemispherical roof is a common design in agricultural and industrial storage due to its structural efficiency and ease of construction. Optimizing its dimensions to maximize storage capacity for a given amount of material—i.e., a fixed surface area—is a classic problem in applied calculus and engineering design. The key parameters are the radius r of the base and the height h of the cylindrical section.The total volume of the silo is obtained by...

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