Skip to main content
Calkulon

learn.howToCalculate

learn.whatIsHeading

The rocket equation (Tsiolkovsky) relates rocket velocity change to exhaust velocity and mass ratio. It's fundamental to space mission planning and launch vehicle design.

Formule

The calculator applies ΔV = v_e × ln(m_initial / m_final)

Stapsgewijze handleiding

  1. 1Enter initial mass, final mass, and exhaust velocity
  2. 2The calculator applies ΔV = v_e × ln(m_initial / m_final)
  3. 3Results show achievable velocity change

Uitgewerkte voorbeelden

Invoer
v_e = 4000 m/s, m_initial = 100 tonnes, m_final = 10 tonnes
Resultaat
ΔV ≈ 9,210 m/s
Sufficient for Earth orbit

Veelgemaakte fouten om te vermijden

  • Using natural logarithm (ln) instead of log₁₀
  • Confusing initial mass with fuel mass

Veelgestelde vragen

Why does mass ratio matter so much?

The logarithmic relationship means doubling the mass ratio roughly doubles the velocity change, making efficiency critical.

What determines exhaust velocity?

Exhaust velocity depends on propellant energy density and engine efficiency; chemical rockets are typically 3000-4500 m/s.

Klaar om te berekenen? Probeer de gratis Rocket Equation-rekenmachine

Probeer het zelf →

Instellingen