Carve Turn Radius Physics

Carve Turn Radius Physics MCP Connector for Claude

A+

Physics-based calculator for snowboard carving mechanics and performance.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a suite of physics-based tools to analyze snowboard carving performance. It calculates the actual turning radius using sidecut geometry, quantifies G-forces experienced during turns, determines the required edge hold force to prevent slipping, and evaluates overall carve stability. By accounting for variables like edge angle, snow hardness, and board flex, it helps riders and gear designers understand the mechanics of high-performance carving.

snowboardingphysicscarvingmechanicssports-science

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

analyze_carve_stability

Evaluates if the current turn parameters are sustainable or likely to result in a slip

calculate_carve_radius

Determines the actual radius of the turn being performed based on geometry and engagement

calculate_edge_hold

Calculates the total force the edge must exert to maintain the carve without slipping

calculate_turn_intensity

Quantifies the physical load experienced by the rider during the turn

See how to talk to your AI agent using Carve Turn Radius Physics.

What is my turning radius if my edge angle is 45 degrees and my sidecut radius is 15 meters?

Your calculated turning radius is 10.61 meters.

How much G-force will I feel if I turn at a radius of 12 meters at a speed of 10 m/s?

You will experience approximately 0.85 Gs during this turn.

Calculate the edge hold force for a 70kg rider at a 10m radius and 12 m/s speed on groomed snow (1.0 hardness).

The required edge hold force is 1018.56 Newtons.

You can use the `calculate_carve_radius` tool by providing your edge angle and the sidecut radius of your board.

Related Connectors