Snowboard Running Length Calculator

Snowboard Running Length Calculator MCP Connector for Claude

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Calculate effective running length, float zone, and edge engagement for snowboards.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides precise geometric analysis for snowboard performance. It calculates the effective running length, which is the active edge distance between contact points, and determines the float zone for buoyancy. Use get_effective_running_length to find the active edge length, get_float_zone_metrics to analyze buoyancy, get_edge_engagement_analysis to determine carving grip, or compare_profiles to evaluate different board geometries for a specific rider.

snowboardinggeometryequipmentphysicssports-tech

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

compare_profiles

g., ["camber", "rocker"]) for a specific rider and board length. Compares how different board geometries would perform for the same rider

get_edge_engagement_analysis

Determines how much grip the board provides for carving

get_effective_running_length

Calculates the primary measurement of the board's active edge length

get_float_zone_metrics

Analyzes the buoyancy characteristics of the board

See how to talk to your AI agent using Snowboard Running Length Calculator.

What is the effective running length for a 155cm board with a camber profile for a 75kg rider?

The effective running length for your 155cm camber board is 132.5cm, with an edge engagement of 128cm and a float zone of 11.5cm.

How much float will I get with a 150cm rocker board with a blunt nose?

The float zone for your 150cm rocker board with a blunt nose is 22.4cm, providing a high buoyancy score for powder riding.

Compare a camber profile and a rocker profile for a 85kg rider on a 160cm board.

For a 160cm board and 85kg rider, the camber profile provides an effective running length of 138cm, while the rocker profile provides 125cm.

Increased rider weight increases board flex, which shifts contact points toward the center and reduces the effective running length.

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