Surface Tension Calculator

Surface Tension Calculator MCP Connector for Claude

A+

Calculates surface tension, capillary rise, and work of cohesion.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized tools for fluid dynamics analysis. It allows AI agents to calculate the effective surface tension of liquids using calculate_surface_tension, determine vertical capillary rise with calculate_capillary_rise, compute the energy required for surface separation via calculate_work_of_cohesion, and interpret liquid-surface interactions using analyze_wetting_behavior.

fluid-dynamicssurface-tensioncapillary-actionphysics-toolschemistry

4 tools expose this connector's capabilities to your AI agent.

analyze_wetting_behavior

g., Perfect Wetting, High Wettability) based on the contact angle. Interprets the contact angle to describe how the liquid interacts with the tube surface

calculate_surface_tension

Determines the effective surface tension of a liquid, accounting for the presence of surfactants

calculate_capillary_rise

Calculates the vertical height a liquid will rise in a specific tube

calculate_work_of_cohesion

Calculates the energy required to separate the liquid surface

See how to talk to your AI agent using Surface Tension Calculator.

What is the capillary rise for water with a surface tension of 0.072 N/m, density of 1000 kg/m³, and a tube radius of 0.001 m with a contact angle of 0 degrees?

The capillary rise for the water in a 1mm radius tube is approximately 0.0353 meters.

Calculate the work of cohesion for a liquid with a surface tension of 0.05 N/m.

The work of cohesion for the liquid is 0.05 J/m².

How would a liquid with a contact angle of 150 degrees interact with a surface?

A liquid with a contact angle of 150 degrees is categorized as Non-Wetting.

You can calculate effective surface tension, capillary rise height, work of cohesion, and analyze wetting behavior based on contact angles.

Related Connectors