Kite Jump Parabola

Kite Jump Parabola MCP Connector for Claude

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Physics engine for modeling kiteboarder jump trajectories.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a high-fidelity physics engine to model the parabolic trajectory of a kiteboarder. By integrating projectile motion with continuous kite lift and redirection forces, it allows AI agents to calculate precise jump profiles. Use calculate_jump_trajectory to get a full path analysis, get_max_height to find peak altitude, or get_landing_metrics to predict impact distance and speed. It is ideal for simulating how different takeoff velocities and kite lift forces affect a rider's flight.

Available Tools

calculateJumpTrajectoryTool, getMaxHeightTool, getLandingMetricsTool, compareJumpScenariosTool, calculateJumpTrajectory, getMaxHeight, getLandingMetrics, compareJumpScenarios

kiteboardingphysicstrajectorysimulationaerodynamics

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

compareJumpScenarios

Answers "Which setup (different kite or weight) results in a higher/longer jump?"

getLandingMetrics

Answers "Where will the rider land and how hard will it be?"

getMaxHeight

Answers "How high will the rider go?"

calculateJumpTrajectory

Provides a full physical profile of the jump, including the path taken and key performance metrics

See how to talk to your AI agent using Kite Jump Parabola.

Calculate the full trajectory for a rider with 15 m/s takeoff velocity, 30 degree angle, 400N kite lift, and 75kg weight.

The rider will reach a maximum height of 8.4 meters and travel a total horizontal distance of 22.5 meters, landing with a velocity of 14.2 m/s.

How high will a rider go with 12 m/s velocity, 45 degree angle, 300N lift, and 80kg weight?

The maximum height reached will be 5.2 meters.

Where will the rider land if they take off at 10 m/s at a 20 degree angle with 200N lift and 70kg weight?

The rider will land 12.8 meters from the takeoff point with an impact speed of 9.5 m/s.

The kite lift acts as a continuous upward force that reduces the net downward acceleration caused by gravity, allowing for higher and longer jumps. Tools available: `calculateJumpTrajectoryTool`, `getMaxHeightTool`, `getLandingMetricsTool`.

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