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2. On the Description of the Excited Paired States of Atomic Nuclei.
3. Semiphenomenological Model Approach to Continuous Spectrum States. I.
4. On the Theory of the Optical Potential for Even-Even Deformed Nuclei.
5. The Scattering on the Bound State and the Two-Particle Resonances.
6. On the GYARMATI Principle and the Canonical Equations of Thermodynamics.
7. Variable Stars and the Frequence Dependence of the Speed of Light in a Gravitational Field.
8. Pion P T Distribution and a Test of Scaling Hypothesis at an Incident Proton Energy of 24 GeV.
9. Semiphenomenological Model Approach to Continuous Spectrum States. II.
10. Degenerate Electron Gas at Finite Temperatures. II.
11. On the SU(3) Mass Formulae.
12. On the Molecular‐Kinetic Theory of the Collective Motion in Liquids.
13. Semiphenomenological Model of the Nucleus and its Application to Description of the Rotational Spectra. I.
14. Semiphenomenological Model of the Nucleus and its Application to Description of the Rotational Spectra. II.
15. Theory of Nondegenerate two Component Systems with COULOMB Interaction.
16. On the Molecular-Kinetic Theory of the Collective Motion in Liquids.
17. Semiphenomenological model of the nucleus and its application to description of the rotational spectra. I.
18. Semiphenomenological model of the nucleus and its application to description of the rotational spectra. II.
19. Theory of nondegenerate two component systems with C OULOMB interaction.
20. The effect of plasma resonance on the propagation of surface waves along plasma-vacuum channel.
21. Theory of the lonization Equilibrium in Dense Plasmas.
22. On Exponential-Asymptotic Stability Properties of B OLTZMANN's Equation and a Class of its Modifications.
23. Compton Scattering and Induced Compton Scattering in a Constant Electromagnetic Field.
24. Nonlinear Interaction of Electrostatic Waves in a Plasma.
25. On the Asymptotic Behaviour of the Form Factors.
26. Elektrischer und magnetischer Widerstand bei Schwingungen.
27. On the Molecular-Kinetic Theory of the Collective Motion in Liquids.
28. Semiphenomenological Model of the Nucleus and its Application to Description of the Rotational Spectra. I.
29. Semiphenomenological Model of the Nucleus and its Application to Description of the Rotational Spectra. II.
30. Theory of Nondegenerate two Component Systems with C OULOMB Interaction.
31. The Effect of Plasma Resonance on the Propagation of Surface Waves along Plasma-Vacuum Channel.
32. Skineffekt in zylindrischen Leitern.
33. Die Grenzwerte der kürzesten akustischen Wellen.
34. Zweite Antwort an Hrn. Witte.
35. Crystal as a Quasi-equilibrium System.
36. On the Theory of Rotation of Strongly Deformed Nuclei.
37. On Exact Solutions of the Relativistic Two-Particle Problem.
38. Linear Response Theory of Longitudinal Plasma Excitations.
39. Rotational Motion of Deformed Nuclei.
40. Separation of Variables and Coupling between Rotational and Intrinsic Motion in Deformed Nuclei.
41. Die Frequenzabhängigkeit der Leitfähigkeit und des interionischen Anteils der Dielektrizitätskonstante elektrolytischer Lösungen.
42. On Analytic Continuability of Wave Functions.
43. Effective Particle Interaction Via a Bose-Field.
44. Theory of Second Order Isotope Shift.
45. S-Matrix for the One-Dimensional Schrödinger Equation and its Behaviour in the Quasi-Classical Region.
46. The Existence of Interfacial Couples in Infinitesimal Elasticity.
47. Free Volume Approach to Polysiobutylene melt Viscosity under Pressure.
48. On Flammersfeld's Range-Energy Relation for Electrons.
49. The Existence Domain of Complex Dielectric Constant of Binary Mixture.
50. The Ratio of Specific Heats γ as a Fundamental Physical Property of Liquids.
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