C. P. Poole and H. A. Farach, The Theory of Magnetic Resonance (Wiley, New C. P. Schlichter, Principles of Magnetic Resonance (Harper and Row, New. Magnetic resonance techniques, and in particularly electron spin resonance (ESR), are very powerful and frequently used for probing the oxidation and coordination environment of transition metal ions (TMI) in heterogeneous catalysts. There are a wide variety of ESR techniques. Abstract. Nuclear magnetic resonance (NMR) provides an experimental setting to explore physical implementa- .. Noise can be controlled in principle through quantum error correction. In order that  C.P. Schlichter.
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Ground state properties of neutron-rich Mg isotopes – INSPIRE-HEP
Atomic Spectra and Radiative Transitions, Review of particle physics. H den and C. Direct measurement of the masses of Li and Na with an on-line mass spectrometer – Thibault, Catherine et al.
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Beta decay of Na Relativistic mean-field study of Mg isotopes – Ren, Zhongzhou et al. Table of nuclear moments – Raghavan, Pramila Atom.
Precision lifetime measurement for the 3p levels of MgII using frequency-doubled laser radiation to excite a fast ion beam. BErratum: Measurement of the electric quadrupole moments of Na. The Neutron halo of extremely neutron-rich nuclei – Hansen, P.
K X-ray isotope shifts. Magic numbers in exotic nuclei and spin isospin properties of it N N interaction – Otsuka, Takaharu et al.
The particle-hole interaction and the beta decay of B – Millener, D. The Nuclear Many Body Problem, The nuclear shell model towards the drip lines – Brown, B. Collapse of the conventional shell-model ordering in the very-neutron-rich isotopes of Na and Mg – Wildenthal, B. Nuclear moments and differences in mean square charge radii of short-lived neon isotopes by collinear laser spectroscopy – Geithner, R. Isotope shifts and nuclearcharge radii in singly ionized Ca.
Tables, graphs and references – Audi, G. Crossing of single-particle energy levels resulting from nneutron excess in the sd shell. Table of nuclear magnetic dipole and electric quadrupole moments – Stone, N. Large collectivity of Mg – Iwasaki, H. The principles of nuclear magnetism, Isotope Shifts in Atomic Spectra, Ground state properties of neutron-rich Mg isotopes: Electric and nuclear transition strength in 30,32Mg. This site is also available in the following languages: Principles of Magnetic Resonance, Varying shell gap and deformation in N approximately 20 unstable nuclei studied by the Monte Carlo shell model – Utsuno, Yutaka et al.
Isotope shift calculations for atoms with one valence electron – Berengut, J. Changes in mean-square nuclear charge radii from optical isotope shifts, International Conference on Exotic Nuclei and Atomic Masses: Quadrupole collectivity of 28 Ne and the boundary of the island of inversion – Iwasaki, H. State-dependent volume isotope shifts of low-lying states of group-IIa and -IIb elements. Beta decay of Na and their descendants – Detraz, C. Review C submitted, Physical Experiment and theory – Baumann, P.
Shape transition in the neutron rich sodium isotopes – Campi, X. Data reduction and error analysis for the physical sciences, Large deformation of the very neutron-rich nucleus Mg from intermediate-energy Coulomb excitation – Motobayashi, T.
The Ame atomic mass evaluation II.
Quasiconfigurations and the theory of effective interactions. Handbook of Nuclear Properties, Status of the nuclear shell model – Brown, B.
Shapes and shells in nuclear structure, Reaction matrix elements for the 0f-1p shell nuclei – Kuo, T. C72Erratum: Spins, magnetic moments, and isotope shifts of Na by high resolution laser spectroscopy of the atomic D-1 line – Huber, G.
Changes in mean-square nuclear charge radii from optical isotope shifts – Heilig, K. C18Erratum: Theoretical nuclear physics,