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Atomic Masses and Fundamental Constants 5
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
The Measurement of Fundamental Constants (Metrology) and Its Effect on Scientific and Technical Progress
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Chapter 2
Constantes Physiques et Métrologie
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Chapter 3
Gamma-Ray Energies for Calibration of Ge(Li) Spectrometers
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Chapter 4
Primary Standards for Gamma Energy Determinations
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Chapter 5
Precision Measurement of Relative γ-ray Energies with a Curved Crystal Diffractometer
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Chapter 6
Visible to Gamma-Ray Wavelength Ratio
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Chapter 7
Determination of Proton Binding Energies for 89 Y, 90 Zr, 91 Nb and 93 Tc from (p,,γ) Reaction Q-Values
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Chapter 8
A New Method for Measurement of Proton Beam Energies
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Chapter 9
Superallowed β-Decay: From Nuclear Masses to the Z Vector Boson
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Chapter 10
Masses of T Z = + 5/2 Nuclei in the s-d Shell from β-Decay Measurements
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Chapter 11
Mass Differences of Proton-Rich Atoms Near A = 116 and A = 190
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Chapter 12
Total β-Decay Energies of Nuclei Far from Stability: Evidence for the Wigner Symmetry Energy in Rb and Kr Masses
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Chapter 13
Total Beta Decay Energies of Neutron-Rich Fission Products
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Chapter 14
Far Beta-Unstable Alpha-Particle Emitting Nuclei
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Chapter 15
Precision Measurement of Q-Values by Means of the Munich Time-of-Flight System and the Q3D-Spectrograph
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Chapter 16
Measurements of Nuclear Masses Far from Stability
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Chapter 17
Some (p,n) and (α,n) Reaction Energies Relevant to Superallowed Beta Decay
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Chapter 18
Accurate Q-value Measurements and Masses in the Iron region
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Chapter 19
Precision Energy Measurements with the MSU Cyclotron
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Chapter 20
New Tests of the Isobaric Multiplet Mass Equation
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Chapter 21
Isobaric Mass Quartets
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Chapter 22
The Mass Spectroscopic Work of L.G. Smith
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Chapter 23
L.G. Smith’s Precision RF-Mass-Spectrometer Transferred from Princeton to Delft
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Chapter 24
Present Status of the Program of Atomic Mass Determinations at the University of Manitoba
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Chapter 25
Recent Doublet Results and Measurement Technique Development at the University of Minnesota
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Chapter 26
Double Focusing Mass Spectrometers of Second Order
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Chapter 27
On a Two-Stage Double-Focusing Mass Spectroscope under Construction at Osaka University
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Chapter 28
Atomic Mass Measurements Using Time-of-Flight Mass Spectroscopy
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Chapter 29
Mass Spectrometry of Unstable Nuclei
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Chapter 30
The Activities of the II. Physical Institute of the University of Giessen in the Investigation of Short-Lived Heavy Nuclei
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Chapter 31
Attempts to Obtain Highly Resolved Mass Spectra of Short-Lived Fission Products with the Lohengrin Separator
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Chapter 32
The Mass Determination in Relation to Nuclear Structure and to the Theory of Nuclear Matter
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Chapter 33
Self-Consistent Calculations of Nuclear Total Binding Energies
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Chapter 34
Shell and Pairing Effects in Spherical Nuclei Close to the Nucleon Drip Lines
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Chapter 35
Hartree-Fock Calculation of Nuclear Binding Energy of Sodium Isotopes
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Chapter 36
Nuclear Mass Systematics and Exotic Nuclei
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Chapter 37
The Validity of the Strutinsky Method for the Determination of Nuclear Masses
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Chapter 38
Nucleon Correlation Effects in Mass Systematics
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Chapter 39
Interpolation Mass Formulae
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Chapter 40
Nuclidic Mass Relationships and Mass Equations (III)
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Chapter 41
The Liquid Drop Mass Formula as a Shell Model Average
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Chapter 42
Magic Neutron-Rich Nuclei and a New Semi-Empirical Shell-Correction Term
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Chapter 43
Structure of Nuclear Energy Surface and the Atomic Mass Formula
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Chapter 44
Atomic Mass Extrapolations
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Chapter 45
Time and Frequency
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Chapter 46
Applications of Frequency Standards
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Chapter 47
Stabilized Lasers and the Speed of Light
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Chapter 48
The Realization of the Second
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Chapter 49
Stability and Reproducibility of He-Ne-Lasers Stabilized by Saturated Absorption in Iodine
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Chapter 50
Performance and Limitations of Iodine Stabilized Lasers
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Chapter 51
Reproducibility of Methane- and Iodine-Stabilized Optical Frequency Standards
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Chapter 52
Some Experimental Factors Affecting the Reproducibility and Stability of Methane-Stabilized Helium-Neon Lasers
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Chapter 53
Molecular Beam Stabilized Argon Laser
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Chapter 54
Frequency Stabilization of an Ar + Laser with Molecular Iodine
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Chapter 55
Saturated-Absorption-Stabilized N 2 O Laser for New Frequency Standards
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Chapter 56
Optically pumped far-infrared laser for infrared frequency measurements
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Chapter 57
Two-Photon Lasers
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Chapter 58
Light-Shifts Precision Measurements of the 0–0 Transition in a 133 Cs Gas Cell
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Chapter 59
Comparaison de Longueurs d’onde à L’aide d’un Interféromètre de Michelson
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Chapter 60
Wavelength Intercomparison of Laser Radiations Using Servo-Lock Interferometry
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Chapter 61
A Field Compensated Interferometer for Wavelength Comparison
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Chapter 62
Determination of New Wavelength Standards in the Infrared by Vacuum Fourier Spectroscopy
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Chapter 63
Preliminary Wavelength Measurements of a 127 I 2 Stabilized Laser at IMGC
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Chapter 64
Wavelength Measurements in the UV and Vacuum UV
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Chapter 65
Applications of the Josephson Effect
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Chapter 66
A Brief Review of the A.C. Josephson Effect Determination of 2e/h
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Chapter 67
Determination of 2e/h at the B.I.P.M.
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Chapter 68
2e/h Determination by Josephson Effect in ETL
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Chapter 69
Etape d’une détermination absolue du coefficient 2e/h au L.C.I.E.
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Chapter 70
Cryogenic Voltage Standard at PTB
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Chapter 71
Review of the Measurement of μ p /μ N
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Chapter 72
Magnetic Moment of the Proton in H 2 O in Units of the Bohr Magneton
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Chapter 73
A Progress Report on the g-2 Resonance Experiments
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Chapter 74
New Electron and Positron g-2 Experiments at the University of Michigan
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Chapter 75
New Measurement of (g-2) of the Muon
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Chapter 76
Status of Anomalous Magnetic Moment Calculations for Electron and Muon
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Chapter 77
A New Mass-Spectrometric Method for the Measurement of γ p ’
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Chapter 78
Experiment with Magnetically Isolated Calculable Solenoid for γ p ’ Determination
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Chapter 79
Determination of the Gyromagnetic Ratio of the Proton γ P ’
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Chapter 80
A Measurement of the Gyromagnetic Ratio of the Proton by the Strong Field Method
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Chapter 81
Recent Estimates of the Avogadro Constant
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Chapter 82
Re-Evaluation of the Rydberg Constant
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Chapter 83
Rydberg Constant Measurement Using cw Dye Laser and H* Atomic Beam
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Chapter 84
Fast Beam Measurement of Hydrogen Fine Structure
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Chapter 85
A New Determination of the Faraday by Means of the Silver Coulometer
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Chapter 86
A Value for the Faraday Based on a High-Precision Coulometric Titration of 4-Aminopyridine
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Chapter 87
Initial Results from a New Measurement of the Newtonian Gravitational Constant
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Chapter 88
Constants of Electric and Magnetic Polarizabilities of Proton
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Chapter 89
A New Determination of the Gas Constant by an Acoustic Technique
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Chapter 90
A Determination of the Density and Dilatation of Pure Water of Known Isotopic Composition
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Chapter 91
Recent Solar Oblateness Observations: Data, Interpretation, and Significance for Experimental Relativity
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Chapter 92
A Laboratory Experiment to Measure the Time Variation of Newton’s Gravitational Constant
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Chapter 93
An Experimental Limit on the Time Variation of the Fine Structure Constant
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Chapter 94
Bound on the Secular Variation of the Gravitational Interaction
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Chapter 95
Understanding the Fundamental Constants
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Chapter 96
Present Status of Atomic Masses
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Chapter 97
Present Status of the Fundamental Constants
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Chapter 98
Summary of the Conference
Overall attention for this book and its chapters
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Book overview
1. The Measurement of Fundamental Constants (Metrology) and Its Effect on Scientific and Technical Progress
2. Constantes Physiques et Métrologie
3. Gamma-Ray Energies for Calibration of Ge(Li) Spectrometers
4. Primary Standards for Gamma Energy Determinations
5. Precision Measurement of Relative γ-ray Energies with a Curved Crystal Diffractometer
6. Visible to Gamma-Ray Wavelength Ratio
7. Determination of Proton Binding Energies for 89 Y, 90 Zr, 91 Nb and 93 Tc from (p,,γ) Reaction Q-Values
8. A New Method for Measurement of Proton Beam Energies
9. Superallowed β-Decay: From Nuclear Masses to the Z Vector Boson
10. Masses of T Z = + 5/2 Nuclei in the s-d Shell from β-Decay Measurements
11. Mass Differences of Proton-Rich Atoms Near A = 116 and A = 190
12. Total β-Decay Energies of Nuclei Far from Stability: Evidence for the Wigner Symmetry Energy in Rb and Kr Masses
13. Total Beta Decay Energies of Neutron-Rich Fission Products
14. Far Beta-Unstable Alpha-Particle Emitting Nuclei
15. Precision Measurement of Q-Values by Means of the Munich Time-of-Flight System and the Q3D-Spectrograph
16. Measurements of Nuclear Masses Far from Stability
17. Some (p,n) and (α,n) Reaction Energies Relevant to Superallowed Beta Decay
18. Accurate Q-value Measurements and Masses in the Iron region
19. Precision Energy Measurements with the MSU Cyclotron
20. New Tests of the Isobaric Multiplet Mass Equation
21. Isobaric Mass Quartets
22. The Mass Spectroscopic Work of L.G. Smith
23. L.G. Smith’s Precision RF-Mass-Spectrometer Transferred from Princeton to Delft
24. Present Status of the Program of Atomic Mass Determinations at the University of Manitoba
25. Recent Doublet Results and Measurement Technique Development at the University of Minnesota
26. Double Focusing Mass Spectrometers of Second Order
27. On a Two-Stage Double-Focusing Mass Spectroscope under Construction at Osaka University
28. Atomic Mass Measurements Using Time-of-Flight Mass Spectroscopy
29. Mass Spectrometry of Unstable Nuclei
30. The Activities of the II. Physical Institute of the University of Giessen in the Investigation of Short-Lived Heavy Nuclei
31. Attempts to Obtain Highly Resolved Mass Spectra of Short-Lived Fission Products with the Lohengrin Separator
32. The Mass Determination in Relation to Nuclear Structure and to the Theory of Nuclear Matter
33. Self-Consistent Calculations of Nuclear Total Binding Energies
34. Shell and Pairing Effects in Spherical Nuclei Close to the Nucleon Drip Lines
35. Hartree-Fock Calculation of Nuclear Binding Energy of Sodium Isotopes
36. Nuclear Mass Systematics and Exotic Nuclei
37. The Validity of the Strutinsky Method for the Determination of Nuclear Masses
38. Nucleon Correlation Effects in Mass Systematics
39. Interpolation Mass Formulae
40. Nuclidic Mass Relationships and Mass Equations (III)
41. The Liquid Drop Mass Formula as a Shell Model Average
42. Magic Neutron-Rich Nuclei and a New Semi-Empirical Shell-Correction Term
43. Structure of Nuclear Energy Surface and the Atomic Mass Formula
44. Atomic Mass Extrapolations
45. Time and Frequency
46. Applications of Frequency Standards
47. Stabilized Lasers and the Speed of Light
48. The Realization of the Second
49. Stability and Reproducibility of He-Ne-Lasers Stabilized by Saturated Absorption in Iodine
50. Performance and Limitations of Iodine Stabilized Lasers
51. Reproducibility of Methane- and Iodine-Stabilized Optical Frequency Standards
52. Some Experimental Factors Affecting the Reproducibility and Stability of Methane-Stabilized Helium-Neon Lasers
53. Molecular Beam Stabilized Argon Laser
54. Frequency Stabilization of an Ar + Laser with Molecular Iodine
55. Saturated-Absorption-Stabilized N 2 O Laser for New Frequency Standards
56. Optically pumped far-infrared laser for infrared frequency measurements
57. Two-Photon Lasers
58. Light-Shifts Precision Measurements of the 0–0 Transition in a 133 Cs Gas Cell
59. Comparaison de Longueurs d’onde à L’aide d’un Interféromètre de Michelson
60. Wavelength Intercomparison of Laser Radiations Using Servo-Lock Interferometry
61. A Field Compensated Interferometer for Wavelength Comparison
62. Determination of New Wavelength Standards in the Infrared by Vacuum Fourier Spectroscopy
63. Preliminary Wavelength Measurements of a 127 I 2 Stabilized Laser at IMGC
64. Wavelength Measurements in the UV and Vacuum UV
65. Applications of the Josephson Effect
66. A Brief Review of the A.C. Josephson Effect Determination of 2e/h
67. Determination of 2e/h at the B.I.P.M.
68. 2e/h Determination by Josephson Effect in ETL
69. Etape d’une détermination absolue du coefficient 2e/h au L.C.I.E.
70. Cryogenic Voltage Standard at PTB
71. Review of the Measurement of μ p /μ N
72. Magnetic Moment of the Proton in H 2 O in Units of the Bohr Magneton
73. A Progress Report on the g-2 Resonance Experiments
74. New Electron and Positron g-2 Experiments at the University of Michigan
75. New Measurement of (g-2) of the Muon
76. Status of Anomalous Magnetic Moment Calculations for Electron and Muon
77. A New Mass-Spectrometric Method for the Measurement of γ p ’
78. Experiment with Magnetically Isolated Calculable Solenoid for γ p ’ Determination
79. Determination of the Gyromagnetic Ratio of the Proton γ P ’
80. A Measurement of the Gyromagnetic Ratio of the Proton by the Strong Field Method
81. Recent Estimates of the Avogadro Constant
82. Re-Evaluation of the Rydberg Constant
83. Rydberg Constant Measurement Using cw Dye Laser and H* Atomic Beam
84. Fast Beam Measurement of Hydrogen Fine Structure
85. A New Determination of the Faraday by Means of the Silver Coulometer
86. A Value for the Faraday Based on a High-Precision Coulometric Titration of 4-Aminopyridine
87. Initial Results from a New Measurement of the Newtonian Gravitational Constant
88. Constants of Electric and Magnetic Polarizabilities of Proton
89. A New Determination of the Gas Constant by an Acoustic Technique
90. A Determination of the Density and Dilatation of Pure Water of Known Isotopic Composition
91. Recent Solar Oblateness Observations: Data, Interpretation, and Significance for Experimental Relativity
92. A Laboratory Experiment to Measure the Time Variation of Newton’s Gravitational Constant
93. An Experimental Limit on the Time Variation of the Fine Structure Constant
94. Bound on the Secular Variation of the Gravitational Interaction
95. Understanding the Fundamental Constants
96. Present Status of Atomic Masses
97. Present Status of the Fundamental Constants
98. Summary of the Conference
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