Surfboard Physics Engine

Surfboard Physics Engine MCP Connector for Claude

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Calculate rotational inertia, maneuverability, and turning resistance for surfboards.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized physics engine to model surfboard behavior. It allows AI agents to calculate the moment of inertia around longitudinal, transverse, and vertical axes using calculate_rotational_inertia. Users can evaluate agility via calculate_maneuverability_index, determine how heavy a board feels with calculate_turning_resistance, or compare different board designs using compare_board_profiles.

surfboardphysicsrotational-inertiamaneuverabilitydynamics

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

calculate_maneuverability_index

Provides a single metric to describe how easy it is to perform quick turns or adjustments

calculate_rotational_inertia

Determines the fundamental resistance to rotation around the primary axes

calculate_turning_resistance

Quantifies the force/torque required to initiate a directional change

compare_board_profiles

Allows a user to compare the rotational characteristics of two different surfboard shapes or weight distributions

See how to talk to your AI agent using Surfboard Physics Engine.

Calculate the rotational inertia for a surfboard that is 2kg, 1.8m long, and 0.5m wide.

The longitudinal inertia is 0.324 kg·m², the transverse inertia is 0.153 kg·m², and the vertical inertia is 0.041 kg·m².

How maneuverable is a board with longitudinal inertia 0.2, transverse inertia 0.1, and vertical inertia 0.05?

The maneuverability score is 85.0, which is rated as High responsiveness.

What is the turning resistance for a 3kg board with vertical inertia 0.08 and transverse inertia 0.2?

The turning torque is 0.48 Nm, resulting in a Medium resistance level.

You can calculate rotational inertia, maneuverability scores, turning resistance, and compare different surfboard profiles.

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