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Atomic Masses and Fundamental Constants 5

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Table of Contents

  1. Altmetric Badge
    Book Overview
  2. Altmetric Badge
    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
Attention for Chapter 80: A Measurement of the Gyromagnetic Ratio of the Proton by the Strong Field Method
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Chapter title
A Measurement of the Gyromagnetic Ratio of the Proton by the Strong Field Method
Chapter number 80
Book title
Atomic Masses and Fundamental Constants 5
Published by
Springer, Boston, MA, January 1976
DOI 10.1007/978-1-4684-2682-3_80
Book ISBNs
978-1-4684-2684-7, 978-1-4684-2682-3
Authors

B. P. Kibble, Kibble, B. P.

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The data shown below were compiled from readership statistics for 13 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 13 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 5 38%
Other 2 15%
Student > Doctoral Student 1 8%
Student > Master 1 8%
Unknown 4 31%
Readers by discipline Count As %
Physics and Astronomy 6 46%
Engineering 2 15%
Business, Management and Accounting 1 8%
Economics, Econometrics and Finance 1 8%
Arts and Humanities 1 8%
Other 0 0%
Unknown 2 15%