Impact of modulus of elasticity of silicone hydrogel contact lenses on meibomian glands morphology and function: Clinical and Experimental Optometry: Vol 104, No 7
![Gradient moduli lens models: how material properties and application of forces can affect deformation and distributions of stress | Scientific Reports Gradient moduli lens models: how material properties and application of forces can affect deformation and distributions of stress | Scientific Reports](https://media.springernature.com/full/springer-static/image/art%3A10.1038%2Fsrep31171/MediaObjects/41598_2016_Article_BFsrep31171_Fig1_HTML.jpg)
Gradient moduli lens models: how material properties and application of forces can affect deformation and distributions of stress | Scientific Reports
![Young's modulus of four different contact lenses of constant BVP=−0.5,... | Download Scientific Diagram Young's modulus of four different contact lenses of constant BVP=−0.5,... | Download Scientific Diagram](https://www.researchgate.net/profile/Brian-Derby/publication/259499116/figure/fig4/AS:267889676648472@1440881284500/Youngs-modulus-of-four-different-contact-lenses-of-constant-BVP-05-measured-across_Q640.jpg)
Young's modulus of four different contact lenses of constant BVP=−0.5,... | Download Scientific Diagram
![A thick rope of density p and length L is hung from a rigid support. The increase in lens of the rope due to its own weight is (Y is the Young's modulus). A thick rope of density p and length L is hung from a rigid support. The increase in lens of the rope due to its own weight is (Y is the Young's modulus).](https://d10lpgp6xz60nq.cloudfront.net/web-thumb/415584153_web.png)
A thick rope of density p and length L is hung from a rigid support. The increase in lens of the rope due to its own weight is (Y is the Young's modulus).
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