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Projectile motion occurs when an object is launched into the air and moves under the influence of gravity alone (ignoring air resistance). The defining characteristic is that the horizontal and vertical components of motion are completely independent of each other.
Time of flight (T): The total time the projectile is in the air. T = 2u sinθ/g. This is twice the time to reach maximum height.
Maximum height (H): The highest point reached. H = u² sin²θ / (2g). Maximum height occurs at θ = 90°.
Horizontal range (R): The horizontal distance covered. R = u² sin(2θ) / g. Maximum range occurs at θ = 45°.
A ball is kicked at 25 m/s at 30° above the horizontal. Find: (a) time of flight, (b) maximum height, (c) range. (g = 10 m/s²)
Resolve: u⊂x; = 25 cos30° = 21.7 m/s u⊂y; = 25 sin30° = 12.5 m/s
(a) Time of flight: At maximum height, v⊂y; = 0. t⊂up; = u⊂y;/g = 12.5/10 = 1.25 s. Total T = 2 × 1.25 = 2.5 s
(b) Maximum height: H = u⊂y;²/(2g) = 156.25/20 = 7.8 m
(c) Range: R = u⊂x; × T = 21.7 × 2.5 = 54.2 m
Unit: s (seconds)
Unit: m (metres)
Unit: m (metres)
Unit: m/s
Unit: m/s
Unit: m/s