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Project Status

🚧 In Development

Rocket Trajectory Simulator 🚀

A Python-based engineering project that simulates the trajectory of a rocket using fundamental physics and projectile motion equations.

Project Objective

The purpose of this project is to explore how launch angle and initial velocity affect rocket flight performance through mathematical modeling and simulation.

Research Question

How do launch angle and initial velocity influence a rocket's maximum height, flight time, and horizontal range?

Engineering Areas

  • Aerospace Engineering
  • Physics
  • Mathematical Modeling
  • Python Programming
  • Data Visualization

Project Features

Maximum Height Calculation

Calculate the highest point reached during flight.

Flight Time Calculation

Determine how long the rocket remains in the air.

Horizontal Range Calculation

Estimate the total distance traveled.

Trajectory Visualization

Display the rocket's flight path using graphical plots.

Physics Concepts

  • Projectile Motion
  • Gravity
  • Velocity Components
  • Flight Dynamics
  • Mathematical Modeling

Skills Demonstrated

  • Python Programming
  • Aerospace Fundamentals
  • Physics-Based Simulation
  • Data Analysis
  • Mathematical Modeling
  • Engineering Problem Solving

Future Improvements

  • Air Resistance Simulation
  • Thrust Modeling
  • Multi-Stage Rockets
  • Variable Gravity Environments
  • Interactive User Interface

Rocket Trajectory Simulator

Project Files

  • Python Source Code
  • Simulation Outputs
  • Graphs and Visualizations
  • Documentation

Author

Sarp AKAR

About

Python-based aerospace engineering project simulating rocket trajectories using physics and mathematical modeling.

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