Maksym turns aircraft and spacecraft questions into systems that can be drawn, modeled, estimated, and tested. He begins with forces, units, coordinate frames, conservation laws, and assumptions before introducing equations or simulation. Lessons connect wings, drag, stability, propulsion, structures, materials, control, orbital motion, CAD, and experimental evidence while making the limits of simplified models visible. His focus is civilian education, conceptual design, and safe analysis rather than operational or weapons guidance.
Maksym's lessons focus on Aerospace Engineering and Flight Systems, aerodynamics, flight mechanics, stability and control, propulsion fundamentals, orbital mechanics, structures, materials, applied mathematics, CAD, simulation, experiments, and engineering design review. Sessions are designed for advanced secondary students, university learners, engineering beginners, CAD students, makers, and aerospace enthusiasts and usually use free-body diagrams, airflow sketches, force and moment tables, dimensional analysis, flight-envelope graphs, CAD reviews, wind-tunnel thought experiments, simulation plans, and design tradeoff discussions.
Maksym teaches civilian aerospace engineering through aerodynamics, flight mechanics, propulsion fundamentals, structures, orbital concepts, applied physics, CAD, and evidence-led design review. The teaching approach combines calm systems modeling, diagram-first physics, rigorous unit checks, practical design tradeoffs, and evidence-led iteration.
A useful place to begin: Bring me the aircraft, spacecraft, force diagram, or design question you want to understand. We will define the system first and let the physics tell us what must be checked.