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Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega
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The effect of isolated ridges and grooves on static menisci in rectangular channels | Journal of Fluid Mechanics | Cambridge Core
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Capillary surfaces in and around exotic cylinders with application to stability analysis | Journal of Fluid Mechanics | Cambridge Core
![Computation | Free Full-Text | Contact Angle Effects on Pore and Corner Arc Menisci in Polygonal Capillary Tubes Studied with the Pseudopotential Multiphase Lattice Boltzmann Model Computation | Free Full-Text | Contact Angle Effects on Pore and Corner Arc Menisci in Polygonal Capillary Tubes Studied with the Pseudopotential Multiphase Lattice Boltzmann Model](https://www.mdpi.com/computation/computation-04-00012/article_deploy/html/images/computation-04-00012-g007a.png)
Computation | Free Full-Text | Contact Angle Effects on Pore and Corner Arc Menisci in Polygonal Capillary Tubes Studied with the Pseudopotential Multiphase Lattice Boltzmann Model
![Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega](https://pubs.acs.org/cms/10.1021/acsomega.2c04359/asset/images/medium/ao2c04359_0006.gif)
Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega
![The meniscus on the outside of a circular cylinder: From microscopic to macroscopic scales - ScienceDirect The meniscus on the outside of a circular cylinder: From microscopic to macroscopic scales - ScienceDirect](https://ars.els-cdn.com/content/image/1-s2.0-S0021979718310026-ga1.jpg)
The meniscus on the outside of a circular cylinder: From microscopic to macroscopic scales - ScienceDirect
![Cross section of a meniscus in a cylindrical tube with θ = 10° and a... | Download Scientific Diagram Cross section of a meniscus in a cylindrical tube with θ = 10° and a... | Download Scientific Diagram](https://www.researchgate.net/publication/7869134/figure/fig3/AS:667202936111120@1536084984260/Cross-section-of-a-meniscus-in-a-cylindrical-tube-with-th-10-and-a-normalized-volume-of.png)
Cross section of a meniscus in a cylindrical tube with θ = 10° and a... | Download Scientific Diagram
![Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega](https://pubs.acs.org/cms/10.1021/acsomega.2c04359/asset/images/large/ao2c04359_0009.jpeg)
Calculation of the Meniscus Shape Formed under Gravitational Force by Solving the Young–Laplace Differential Equation Using the Bézier Curve Method | ACS Omega
![Computation | Free Full-Text | Contact Angle Effects on Pore and Corner Arc Menisci in Polygonal Capillary Tubes Studied with the Pseudopotential Multiphase Lattice Boltzmann Model Computation | Free Full-Text | Contact Angle Effects on Pore and Corner Arc Menisci in Polygonal Capillary Tubes Studied with the Pseudopotential Multiphase Lattice Boltzmann Model](https://www.mdpi.com/computation/computation-04-00012/article_deploy/html/images/computation-04-00012-g006.png)