Snowboard Effective Edge Calculator

Snowboard Effective Edge Calculator MCP Connector for Claude

A+

Calculate effective edge length, edge hold force, and turn stability for snowboards.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized computational engine for analyzing snowboard performance. By modeling edge contact geometry and environmental factors, it allows AI agents to determine how a board will behave in various snow conditions. Use simulate_snow_interaction to get a complete overview of engagement, force, and stability, or use specific tools like calculate_edge_geometry and calculate_edge_hold for granular physical metrics.

snowboardingphysicsedge-geometryperformancesnow-conditions

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

calculate_edge_geometry

Determines the primary physical engagement metrics of the snowboard during a turn

calculate_edge_hold

Calculates the resistive force provided by the snow to prevent sliding

evaluate_turn_stability

Assesses the predictability and grip of the turn

simulate_snow_interaction

Predicts how the edge will behave by combining geometry and environmental resistance

See how to talk to your AI agent using Snowboard Effective Edge Calculator.

What is the effective edge length for a 155cm board with a 30mm sidecut at a 45 degree angle and 5mm snow penetration?

The effective edge length is 112.4 cm with an engagement ratio of 0.725.

Calculate the edge hold force for a 110cm effective edge in hardpack snow with a 75kg rider.

The edge hold force is 452.8 N.

Will my turn be stable? I have a 120cm effective edge, a stiff board (8/10), hardpack snow, and a 30 degree turn angle.

The stability score is 0.85, indicating a highly predictable and secure turn.

You can use the `simulate_snow_interaction` tool to perform a full simulation that combines geometry, hold force, and stability into a single result.

Related Connectors