EASA Part-66 · Module 8 — 8.2 Aerodynamics / Theory of Flight · B1/B2

Lift, Angle of Attack & the Stall

Objective: use L = ½ρV²S·Cʟ to explain how lift varies with angle of attack, airspeed, density and area, and why exceeding the critical angle causes a stall.

Aerofoil & airflow

Lift coefficient vs angle of attack

Angle α
0°
Lift coeff. Cₗ
0
Lift L
0kN
State
0
L = ½·ρ·V²·S·Cₗ  ·  Cₗ rises with α until the stall

Lift depends on air density, the square of speed, wing area and the lift coefficient Cₗ. Cₗ climbs almost linearly as you raise the angle of attack — until the critical angle (about 15° here), where the airflow separates from the upper surface and the wing stalls, so Cₗ falls even though the angle is higher. The stall is set by ANGLE, not speed.