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Titlebook: ISAC and ARIEL: The TRIUMF Radioactive Beam Facilities and the Scientific Program; A Laboratory Portrai Jens Dilling,Reiner Krücken,Lia Mer

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The experimental facilities at ISAC, (up to 16 AMeV, depending on the mass-to-charge ratio of the isotopes). There is a corresponding suite of experimental installations on the floor, most of them permanently, which are uniquely matched to the requirements of the scientific goals as well as to the conditions as the arise at rare-beam
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Precision nuclear ,-decay half-life measurements,odel. At ISAC, nuclear .-decay lifetimes are measured with high-precision (.0.05 %) by direct . counting using a 4. continuous flow gas proportional counter coupling to a fast tape transport system. This facility has provided the most precise half-life measurements for several superallowed . emitter
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TITAN: An ion trap facility for on-line mass measurement experiments,ence for very neutron-rich or -deficient isotopes, one can extract detailed information about nuclear structure from separation energies or binding energies. Mass measurements are important to uncover new phenomena, to test new theoretical predictions, or to refine model approaches. For example, the
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Electron-capture branching ratio measurements of odd-odd intermediate nuclei in double-beta decay at TRIUMF are the central components. The technique will be applied to the intermediate odd-odd nuclei in double-beta decay. The decay properties of these nuclei will constrain theoretical models dealing with the evaluation of the nuclear matrix elements for both the 2. and the 0. mode. The present s
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,-NMR, pumping, a .Li. ion beam having a large nuclear spin polarisation and low energy (nominally 30 keV) can be generated. When implanted into materials these ions penetrate to shallow depths comparable to length scales of interest in the physics of surfaces and interfaces between materials. Such low-en
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I. Bylinskii,M. K. Craddocklogy for the resolution of DNA fragments, polymerase chain reaction (PCR) products, polynucleotides, proteins, and other compounds. Capillary electrophoresis (CE) which was introduced in 1981 in its modern and practical instrumental format by Jorgenson and Lukacs (.) for the separation of charged mo
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