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67 results on '"B. F. Irgaziev"'

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1. Electric Properties of Organic-on-Inorganic n-Si/VOPc Heterojunction

2. Analysis of β+ decay of 13N nucleus using a modified one-particle approach

3. Proton Capture Cross-section for 12C at Low Energy

4. Re-analysis of radiative capture11C(p, γ)12N at low energy

5. Radiative capture of proton by $^{13}\mbox{C}$ at low energy

6. Astrophysical S-factor for radiative capture of proton by 13C at low energy

7. Resonance properties including asymptotic normalization coefficients deduced from phase-shift data without the effective-range function

8. Radiative capture of proton by C 12 $^{12}\mathrm{C}$ at low energy

9. Algorithm for calculations of asymptotic nuclear coefficients using phase-shift data for charged-particle scattering

10. Estimation of the nuclear distortion in the Coulomb breakup of 6Li into α + d in the field of 208Pb ion

12. Three-Body Treatment of the pep Reaction in the Sun

13. Recent Results for the Effects of Distortion in the Inter-Cluster Motion in Light Nuclei and Application to Nuclear Astrophysics

16. Experimental study to explore theBe8-induced nuclear reaction via the Trojan horse method

18. Extracting the complex energy of broad resonances by the S-matrix pole method

19. Calculating the characteristics of neutron-deuteron and proton-deuteron systems in a two-body potential model

20. Effect of Coulomb forces on the position of the pole in the scattering amplitude and on its residue

21. Characteristics of the discrete and continuous spectra of the 4He + Λ system

22. The resonance pole and the residue of the scattering amplitude while the Coulomb forces gradually decrease

23. The inhomogeneous Schrödinger equation for the off-shell wave function

24. On the normalization of the Gamov resonant wave function in the configuration space

25. Characteristics of scattering of Λ hyperons from nuclei within the potential model

26. Determination of the nuclear vertex constants for the 7Be ↔ 3He4He vertex using theN/D equations and calculation of the astrophysical S factor for the 4He(3He, γ)7Be reaction

27. Vertex constants (asymptotic normalization coefficients) and mean-square radii of hypernuclei in the potential model

28. Improvement of the high-accuracyO17(p,α)N14reaction-rate measurement via the Trojan Horse method for application toO17nucleosynthesis

29. Resonance-state properties from a phase shift analysis with theS-matrix pole method and the effective-range method

30. Resonance strength measurement at astrophysical energies: The 17O(p,α)14N reaction studied via Trojan Horse Method

31. Trojan Horse Method: recent results in nuclear astrophysics

32. THM determination of the 65 keV resonance strength intervening in the 17O(p,α)14N reaction rate

33. Coulomb breakup of light nuclei in the field of a heavy ion at relativistic collision energies

34. Measurement of the 10 keV resonance in theB10(p,α0)Be7reaction via the Trojan Horse method

35. 17O(p,α)14N reaction measurement at astrophysical energies

36. Distortion Effects on Trojan Horse Applications

37. The 65 keV resonance in the 17O(p,α)14N thermonuclear reaction

38. Few-body problems in nuclear astrophysics

39. Three-body calculation of the rate of the reactionp+p+e→d+νein the Sun

40. The 17O(p,α)14N reaction measurement via the Trojan horse method and its application to 17O nucleosynthesis

41. Influence of the d-state component of the deuteron wave function on the application of the Trojan horse method

42. Distortion effects in Trojan Horse applications

43. Coulomb breakup of6Li intoα+din the field of a208Pb ion

44. Reexamination of the astrophysicalSfactor for theα+d→6Li+γreaction

45. New high accuracy measurement of theO17(p,α)N14reaction rate at astrophysical temperatures

46. Bound, virtual, and resonanceS-matrix poles from the Schrödinger equation

47. Indirect techniques in nuclear astrophysics

48. DWBA momentum distribution and its effect on THM

49. Effects of distortion of the intercluster motion inH2,He3,H3,Li6, andBe9on Trojan horse applications

50. First measurement of the 18O(p,α)15N cross section at astrophysical energies

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