Frontside Spin Mechanics Engine

Frontside Spin Mechanics Engine MCP Connector for Claude

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Analyze snowboarding and skiing spin physics, from takeoff dynamics to landing stability.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a high-fidelity analytical engine for freestyle athletes and coaches. It models the complex physics of frontside spins by calculating takeoff dynamics using analyze_takeoff_dynamics, determining flight characteristics with calculate_rotation_profile, and predicting landing success via evaluate_landing_stability. It also accounts for environmental variables through simulate_wind_conditions to ensure precise rotation modeling.

snowboardingskiingphysicsrotationathletics

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

analyze_takeoff_dynamics

Calculates the immediate physical state at the moment of edge release

calculate_rotation_profile

Determines the flight characteristics of the spin

evaluate_landing_stability

Predicts the success of the landing based on the rotation performed

simulate_wind_conditions

Adjusts the rotation profile based on environmental factors

See how to talk to your AI agent using Frontside Spin Mechanics Engine.

Calculate the takeoff dynamics for an approach speed of 8 m/s, an edge angle of 35 degrees, and a wind-up intensity of 12.

The required edge pressure is 450N with an initial angular momentum of 96 kg·m²/s and a release vector of [0.8, 0.6].

What is the rotation profile for a 60 kg athlete with 100 initial momentum using a melon grab?

The rotation axis tilt is 12 degrees, the spin velocity is 4.5 rad/s, and the moment of inertia modifier is 1.15.

Evaluate the landing stability for a spin velocity of 5.0 rad/s, an axis tilt of 5 degrees, and a landing slope of 30 degrees.

The stability score is 0.92, indicating a Low landing risk.

The engine uses `analyze_takeoff_dynamics` to process approach speed, edge angle, and wind-up intensity to determine the initial physical state.

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