Butter Trick Mechanics

Butter Trick Mechanics MCP Connector for Claude

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Physics-based calculations for snowboarding butter tricks.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a physics-based calculation engine for snowboarding 'butter' tricks. It determines the mechanical requirements for board flexion and rider balance. Use calculate_press_physics to find required weight shifts and press depth, find_balance_position to locate the optimal stability point, analyze_stance_impact to evaluate lateral stability, and predict_trick_outcome to assess the feasibility of a maneuver.

snowboardingphysicsbutter-tricksmechanicssports-science

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

analyze_stance_impact

Evaluates how the rider's stance configuration influences the difficulty of the butter trick

calculate_press_physics

Determines the physical displacement required to initiate and maintain a press

find_balance_position

Identifies the optimal longitudinal position for the rider to maintain stability during a specific trick

predict_trick_outcome

Summarizes the mechanical feasibility of a planned maneuver

See how to talk to your AI agent using Butter Trick Mechanics.

How much weight shift do I need for a 75kg rider on a board with 5 flex for a 2 second press?

The required weight shift is 12.5 cm and the expected press depth is 4.2 cm.

Where should a 60kg rider stand for a 180-degree rotation on a flex 3 board?

The optimal balance point is 15.0 cm from the center of the board with a stability rating of 0.85.

Will a 80kg rider succeed at a high-rotation trick on a stiff board?

The predicted difficulty score is 7.5 and the success probability is 0.62.

You can use the `calculate_press_physics` tool by providing the rider's weight, the board's flex coefficient, and the intended press duration.

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