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Neutrons uncover new density waves in fermion liquids

Scientists working at the Institut Laue-Langevin, one of the world's leading centres for neutron science, have carried out the first investigation of two-dimensional fermion liquids using neutron scattering, and discovered a new type of very short wave-length density wave. The team believe their discovery, published in Nature, will interest researchers looking at electronic systems, since high temperature superconductivity could result from this type of density fluctuations.

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100 Years Ago: Marie Curie Wins 2nd Nobel Prize

From Scientific American , November 25, 1911, Volume 105 FEMINISM very nearly won a great victory in the French Academy of Sciences on January 23rd, 1911, when, in the election of a successor to the deceased academician Gernez, Marie Sklodowska Curie was defeated by two votes. At a joint meeting of the five academies which compose the Institut de France, a majority had opposed the admission of women, as contrary to tradition, but each academy was left to decide the question for itself. [More]

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A new technique for understanding quantum effects in water

It covers over two thirds of our planet, is essential for life on Earth and its chemical formula is one of the few most people can name, but we still have much to learn about the structure of H2O. Now, scientists working in Grenoble have developed a new technique using oxygen isotopes to study in detail the structure of disordered oxide materials such as water in biological processes or glasses in lasers and telecommunication devices

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Physics group corrals record number of neutrons into one place

(PhysOrg.com) -- Neutrons, the particles that along with protons, exist in the nuclei of atoms (except for hydrogen) have been intensely studied ever since their discovery in the 1930’s. And while many interesting developments have occurred as a result (fission reactions, etc) physicists have continued to be frustrated in their attempts to get a closer look at them, due to their not having an electric charge which could be used to hold them in place.

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Neutron scattering confirms DNA is as stretchy as nylon

(PhysOrg.com) -- Neutron scientists at the Institut Laue-Langevin (ILL, France) have measured how fast sound travels along DNA to determine its ‘stiffness’. These findings help to explain how DNA folds, coils and denatures.

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