Billiards Cut Angle Calculator

Billiards Cut Angle Calculator MCP Connector for Claude

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Deterministic geometry engine for precision pool and billiards shot mechanics.

3 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a deterministic geometry engine for precision pool and billiards shot mechanics. It allows AI agents to calculate exact aiming points using ghost ball geometry, determine tangent lines for stun shots, and predict friction-induced throw deviation. Additionally, it uses the diamond system to predict cue ball rebound angles and exit points after hitting a rail, accounting for applied English. Use calculate_impact_geometry to find the ideal aiming position, estimate_throw_deviation to account for friction, and predict_rail_rebound to plan rail shots.

billiardspoolgeometryphysics-engineshot-mechanics

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

calculate_impact_geometry

Determines the precise aiming point and fundamental angles for a specific shot

estimate_throw_deviation

Predicts how much friction will pull the object ball off its intended geometric path

predict_rail_rebound

Uses the diamond system to predict the cue ball's path after hitting a cushion

See how to talk to your AI agent using Billiards Cut Angle Calculator.

Calculate the impact geometry for a shot where the cue ball is at (10, 10), the object ball is at (20, 20), and the pocket is at (30, 10), with a ball radius of 2.85.

The ideal ghost ball position is at (15.94, 15.94) with a cut angle of 45.0 degrees and a tangent line angle of 45.0 degrees.

What is the estimated throw deviation for a cut angle of 30 degrees with a spin intensity of 0.5?

The estimated angular deviation caused by friction is 1.25 degrees.

Predict the rail rebound for an entry angle of 45 degrees using 'right' spin with a strength of 0.8 and a diamond fraction of 0.5.

The predicted exit angle is 52.3 degrees and the exit point is at (45.2, 12.8).

You can use the `calculate_impact_geometry` tool. Provide the coordinates for the cue ball, object ball, and target pocket to receive the precise ghost ball position and cut angle.

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