Jump Height Estimation

Jump Height Estimation MCP Connector for Claude

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Physics engine for kiteboarding jump metrics.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a specialized physics engine for kiteboarders to simulate jump trajectories. By modeling projectile motion with kite-driven lift and aerodynamic drag, it allows users to calculate critical flight data. Use calculate_jump_metrics to get a full profile including maximum height and hang time, analyze_lift_efficiency to understand kite lift contribution, estimate_landing_impact to evaluate landing safety, or compare_jump_scenarios to evaluate different takeoff conditions.

kiteboardingphysicsaerodynamicssports-sciencesimulation

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

estimate_landing_impact

Evaluates the safety/intensity of the landing based on the flight trajectory

analyze_lift_efficiency

Determines how much of the jump's height is attributed to kite lift versus pure projectile motion

calculate_jump_metrics

Provides a full profile of the jump based on the initial takeoff conditions

compare_jump_scenarios

Compares two different sets of takeoff conditions to see which yields a higher jump

See how to talk to your AI agent using Jump Height Estimation.

Calculate the jump metrics for a 75kg rider with a kite speed of 15m/s, a 30 degree takeoff angle, and a kite position of 5m.

The maximum height reached is 4.2 meters with a total hang time of 1.8 seconds and a landing speed of 12.5 m/s.

Is a landing with a 15m/s speed and 85kg weight considered high risk?

Yes, the landing is flagged as high risk due to the high impact force estimated for that weight and speed.

How much does the kite lift contribute to my jump height?

The kite lift contributes approximately 35% to the total height compared to a standard ballistic jump.

You need to provide the kite speed, rider weight, takeoff angle, and the relative vertical position of the kite.

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