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Alfvén Velocity Calculator.
Calculate magnetohydrodynamic Alfvén speed from field strength and mass density.
Set your values
Results update as you type.
Use Cases
Plasma Physics Research
Determine the speed of Alfvén waves in laboratory or astrophysical plasmas to understand wave propagation and energy transport.
Example: Calculate Alfvén speed in the solar corona with B = 0.001 T and ρ = 1e-12 kg/m³.
MHD Simulations
Set initial conditions or verify results in magnetohydrodynamic simulations by computing characteristic wave speeds.
Example: Use for a tokamak plasma with B = 5 T and ρ = 1e-7 kg/m³.
Frequently Asked Questions
- What is Alfvén velocity?
- Alfvén velocity is the speed at which Alfvén waves travel along magnetic field lines in a plasma. It depends on the magnetic field strength and the mass density of the plasma.
- How is Alfvén velocity calculated?
- The Alfvén velocity is calculated using the formula v = B / sqrt(μ₀ρ), where B is the magnetic field strength in teslas, ρ is the mass density in kg/m³, and μ₀ is the permeability of free space (4π × 10⁻⁷ H/m).
- What units are used for the inputs?
- The calculator requires the magnetic field in teslas (T) and the mass density in kilograms per cubic meter (kg/m³). The result is given in meters per second (m/s).
Tips & Common Mistakes
Tips
- Ensure the magnetic field is in teslas; convert from gauss by dividing by 10,000.
- Mass density must be in kg/m³; convert from g/cm³ by multiplying by 1000.
- For quick estimates, remember that Alfvén speed increases with magnetic field strength and decreases with density.
- Use consistent units to avoid errors; the calculator assumes SI units.
Common Mistakes to Avoid
- Forgetting to convert magnetic field from gauss to teslas, leading to results off by a factor of 10,000.
- Using mass density in g/cm³ instead of kg/m³, which overestimates the speed by a factor of about 31.6.
- Confusing Alfvén velocity with sound speed; they are different wave speeds in plasma.
Last updated: August 13, 2026