Spin Landing Timing

Spin Landing Timing MCP Connector for Claude

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Calculate precise spin initiation and landing milestones for aerial rotations.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides specialized computational tools for athletes and coaches to master aerial rotations. By analyzing rotation dynamics, it calculates critical flight milestones such as initiation timing and spotting points. Use calculate_rotation_dynamics to determine angular velocity, get_landing_schedule to map out flight timestamps, predict_landing_stability to assess landing risks, and optimize_spin_params to adjust rotation for target goals.

gymnasticsdivingrotationphysicsathletics

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

calculate_rotation_dynamics

Determines the fundamental rotational characteristics of a spin

get_landing_schedule

Calculates the exact timestamps for critical flight milestones

optimize_spin_params

Suggests adjustments to the rotation or air time to hit a specific target rotation

predict_landing_stability

Evaluates the risk of over-rotation or under-rotation based on approach conditions

See how to talk to your AI agent using Spin Landing Timing.

Calculate the rotation dynamics for a 360 degree spin with 1.5 seconds of air time using a grabbed position.

The angular velocity is 240 deg/s with a rotation speed factor of 1.2.

I have 2.0 seconds of air time and want to complete a 540 degree rotation. When should I start the spin if I am using a grabbed position?

The rotation should be initiated at 0.45 seconds into the flight to ensure a stable landing.

Check my landing risk for a 720 degree spin with an approach speed of 3.5 m/s and 240 deg/s angular velocity.

The landing risk is Moderate. It is recommended to open earlier to increase stability.

You can use `predict_landing_stability` to evaluate the risk of over-rotation based on your approach speed and angular velocity.

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