Physics:Quantum Magnetohydrodynamics: Difference between revisions
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Revision as of 22:39, 17 May 2026
Magnetohydrodynamics (MHD) describes the behavior of conducting fluids such as plasmas.
It is derived as a macroscopic limit of kinetic theory.
Fundamental equations
Magnetohydrodynamics is described by a set of coupled equations:
Continuity equation (mass conservation):
Momentum equation:
Induction equation:
Magnetic constraint:
Limitations
MHD does not include effects described by transport theory or drift physics.
See also
Table of contents (217 articles)
Index
Core theory
Applications and extensions
Full contents
1. Foundations (14) Back to index
2. Conceptual and interpretations (14) Back to index
3. Mathematical structure and systems (15) Back to index
4. Atomic and spectroscopy (14) Back to index
5. Wavefunctions and modes (9) Back to index
6. Quantum dynamics and evolution (21) Back to index
7. Measurement and information (9) Back to index
8. Quantum information and computing (15) Back to index
102. Physics:Quantum BB84
9. Quantum optics and experiments (10) Back to index
10. Open quantum systems (15) Back to index
11. Quantum field theory (23) Back to index
12. Statistical mechanics and kinetic theory (9) Back to index
13. Condensed matter and solid-state physics (17) Back to index
181. Physics:Quantum well
186. Physics:Quantum dot
14. Plasma and fusion physics (8) Back to index
15. Timeline (8) Back to index
16. Advanced and frontier topics (16) Back to index
References
Author: Harold Foppele
Source attribution: Magnetohydrodynamics
