Equations of Motion

The equations of motion relate displacement, velocity, acceleration, and time for objects moving with constant acceleration. We use the following symbols:

u: Initial Velocity
v: Final Velocity
a: Constant Acceleration
t: Time
s: Displacement

Equation 1: The Velocity Equation

v = u + at

Derivation: Acceleration (a) is the rate of change of velocity: a = (v – u) / t. Rearranging gives v = u + at.

Equation 2: The Displacement Equation

s = ut + ½at²

Derivation: Displacement is the area under a v-t graph (rectangle + triangle): Area = ut + ½(t)(v – u). Since v – u = at, we get s = ut + ½at².

Equation 3: The Timeless Equation

v² = u² + 2as

Derivation: Combining v = u + at and s = [(u + v) / 2] * t to eliminate time (t) results in v² = u² + 2as.

Example Problem: The Braking Car

Problem: A car traveling at 30 m/s applies its brakes and stops in 6 seconds. Calculate acceleration and distance.

1. Givens: u = 30 m/s, v = 0 m/s, t = 6 s

2. Acceleration: 0 = 30 + a(6) → a = -5 m/s² (Deceleration)

3. Displacement: s = (30)(6) + ½(-5)(6²) → s = 90 meters

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