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Dynamics Calculator — Projectiles & Vibration

Two exam-workhorse calculators in one place: projectile trajectory (range, maximum height, time of flight) and single-degree-of-freedom free vibration (natural frequency, period, damped frequency). Pick your unit system, enter the inputs, and check the result against your hand calculation.

Projectile motion

R = v0² sin 2θ/g   hmax = v0² sin²θ/(2g)   T = 2v0 sin θ/g

v0launch speed (m/s or ft/s)
θlaunch angle above the horizontal (degrees)
g9.81 m/s² (SI) or 32.2 ft/s² (US)

Assumes launch and landing at the same elevation and no air resistance — the standard FE idealisation.

Mass–spring vibration

ωn = √(k/m)   fn = ωn/(2π)   τ = 1/fn   fd = fn√(1 − ζ²)

mmass: enter kg in SI; in US units enter the weight in lb and the calculator converts with m = W/g
kspring stiffness (N/m or lb/ft)
ζdamping ratio, dimensionless (0 for undamped)

For study and checking only. These calculators run entirely in your browser — nothing is sent anywhere. They are meant to verify your hand calculations while you study; on the exam you will work by hand with the NCEES reference handbook.

Worked example: projectile range, height, and flight time

Launch speed v0 = 25 m/s at θ = 35° above the horizontal, from ground level (g = 9.81 m/s²). Find R, hmax, and T.

Exam tip: range needs sin 2θ — at 45° it doesn’t matter (sin 90° = 1), so the trap only bites at every other launch angle.

Go deeper

Preparing for exam day? The 110-question FE Civil practice exam is a full 5-hour-20-minute rehearsal with detailed solutions.