Impact Force Physics Engine

Impact Force Physics Engine MCP Connector for Claude

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Calculates impact forces, knee loads, and injury risks for landings.

4 tools Official Updated Oct 1, 2026 Official Vinkius Partner

This MCP server provides a physics-based engine to estimate the physical impact of landings. It uses the impulse-momentum theorem to calculate peak impact force, knee joint stress, and injury risk based on fall height, rider weight, snow hardness, and body posture. Use get_impact_force to find the primary force, get_knee_load to assess joint stress, or simulate_landing_scenarios to compare different landing configurations for safety optimization.

physicsimpactsafetysnowbiomechanics

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

get_injury_risk

Provides a safety assessment based on the calculated physical stresses

get_knee_load

Estimates the specific force transmitted through the knee joints

get_impact_force

Calculates the primary peak impact force experienced by the rider

simulate_landing_scenarios

Compares multiple landing configurations to see which minimizes force

See how to talk to your AI agent using Impact Force Physics Engine.

Calculate the impact force for a 75kg rider falling 3 meters onto packed snow with a stiff landing at a 45 degree angle.

The peak impact force for this landing is 2450 N with a deceleration time of 0.15 seconds.

What is the injury risk for a 80kg rider who hit the ice with a 5000 N impact force?

The risk level is High, indicating a significant probability of injury due to the force-to-weight ratio.

Estimate the knee load for a 70kg rider falling 2 meters onto powder using a flexed position.

The estimated knee load is 420 N with a low joint stress level.

A flexed position extends the deceleration time, which reduces the peak impact force and the load on the knees compared to a stiff landing.

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