Startseite Solution to Stellarator Boundary Value Problems with Set of Simple Toroidal Harmonic Functions
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Solution to Stellarator Boundary Value Problems with Set of Simple Toroidal Harmonic Functions

  • W. Dommaschk
Veröffentlicht/Copyright: 2. Juni 2014

Received: 1981-1-21
Published Online: 2014-6-2
Published in Print: 1981-3-1

© 1946 – 2014: Verlag der Zeitschrift für Naturforschung

Artikel in diesem Heft

  1. NH4+ Ion Motions in Some Ammonium Salts
  2. Monte Carlo Calculations on Molten T1C1, TlBr and Til
  3. Nachweis der re-entrant nematischen Phase an verschiedenen homologen biaromatischen Flussigkristallen durch Untersuchung binarer Mischsysteme / Re-entrant Nematic Phase Established for Several Homologous Biaromatic Liquid Crystals by Investigation of Binary Mixed Systems
  4. Ober Phaseniibergange von Ammonium-Alkali-Jodiden und verwandten Halogeniden / Phase Transitions of Ammonium-alkali Iodides and Related Halides
  5. Localization of Conduction Band Electrons in Polycrystalline Ti02 Studied by ESR
  6. Comparative Dynamics of Atmosphere-Ocean-Models within the Description of the Perturbed Global Carbon Cycle
  7. Solution to Stellarator Boundary Value Problems with Set of Simple Toroidal Harmonic Functions
  8. On the Derivation of Strong and Electro-weak Interactions in Functional Quantum Theory of the Nonlinear Spinor Field as a Lepton-hadron Model with Quark-confinement
  9. Correlation in the Ground State of He Atom
  10. Ein einfaches graphentheoretisches Verfahren zur Abschatzung der Resonanz- und Grenzorbitalenergien alternierender polycyclisdier aromatisdier Kohlenwasserstoffe / A Simple Graph-theoretical Scheme for the Estimation of Resonance and Frontier Orbital Energies of Alternant Polycyclic Aromatic Hydrocarbons
  11. Characterization of the High Temperature Form of Fe2(MoO4)3
  12. Investigation of the Molecular Geometry of Donor-Acceptor Complexes by the NDDO Method
  13. Correlation of Zero Field Splittings and Site Distortions III. MnBr42- and Crystal Structure Refinements for Rb3ZnBr5 and Cs2ZnBr4
  14. Zwischenmolekulare Schwingungskopplung. Oberwellen von 12CO3– – -Kctten beim 13CO3– – substituiertcn BaCO3 / Intermolecular Vibrational-Coupling of the Out-of-plane-vibration. Short Waves of 12CO32- -chains in 13CO3— Enriched BaCO3
  15. Correlations Between Carbonyl Vibrational Properties of Polycyclic Aromatic Aldehydes and Electronic Properties of the Corresponding Hydrocarbons
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