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To ft/s: × 3. To m/s: × 0.9144. To mph: × 2.045.
1 yd/s = 0.9144 m/s = 3.29 km/h = 2.045 mph = 3 ft/s.
For example, 1 Yard per Second (yd/s) = 0.002661233993 Mach (20°C, 1 atm) (Ma).
| Yard per Second (yd/s) | Mach (20°C, 1 atm) (Ma) |
|---|---|
| 0.1 | 0.0002661233993 |
| 0.5 | 0.001330616997 |
| 1 | 0.002661233993 |
| 2 | 0.005322467986 |
| 5 | 0.01330616997 |
| 10 | 0.02661233993 |
| 25 | 0.06653084983 |
| 50 | 0.1330616997 |
| 100 | 0.2661233993 |
| 500 | 1.330616997 |
| 1000 | 2.661233993 |
Yard per second measures distance in yards traveled in one second.
1 yd/s = 0.9144 m/s = 3.29 km/h = 2.045 mph = 3 ft/s.
To ft/s: × 3. To m/s: × 0.9144. To mph: × 2.045.
Sprint speeds in track and field (10–12 yd/s for elite sprinters), projectile velocities, and some fluid flow measurements.
Usain Bolt peak: ~13.5 yd/s. NFL wide receiver sprint: ~11 yd/s. Baseball thrown: ~40–45 yd/s.
Confusing with ft/s — yd/s is 3× faster. Mixing up with mph.
1 yd/s = 3 ft/s = 0.9144 m/s. Multiply by ~2 to get approximate mph.
Mach number is the ratio of an object's speed to the speed of sound in the surrounding medium. Mach 1 at 20°C, 1 atm equals approximately 343.6 m/s (1,235 km/h).
Mach = velocity ÷ speed_of_sound. At 20°C: Mach 1 = 343.6 m/s. Speed of sound = √(γRT/M) where γ = heat capacity ratio.
To m/s (at 20°C): × 343.6. To km/h (at 20°C): × 1,237. Note: changes with altitude and temperature.
Fighter jets (Mach 1.5–2.5), commercial aircraft (Mach 0.8–0.85), space shuttle reentry (Mach 25), and missile speeds.
Concorde: Mach 2.04. SR-71 Blackbird: Mach 3.3. X-15: Mach 6.7. Meteorites enter at Mach 50+. Subsonic <1, supersonic >1, hypersonic >5.
Thinking Mach is constant — it varies with temperature/altitude. At 30,000 ft, Mach 1 ≈ 295 m/s (colder air = slower sound).
Mach 1 = speed of sound. Below Mach 1 = subsonic. Mach 1–5 = supersonic. Above Mach 5 = hypersonic. It's a ratio, not a fixed speed.



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