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Physical Chemistry Chemical Physics : PCCP
|
July 25, 2012
Charge localization increases chemical expansion in cerium-based oxides
Dario Marrocchelli, Sean R Bishop, Harry L Tuller, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
June 10, 2011
A dipole polarizable potential for reduced and doped CeO(2) obtained from first principles
Mario Burbano, Dario Marrocchelli, Bilge Yildiz, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
November 21, 2012
Mechanisms of network collapse in GeO2 glass: high-pressure neutron diffraction with isotope substitution as arbitrator of competing models
Kamil Wezka, Philip S Salmon, Anita Zeidler, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
September 7, 2012
Density-driven structural transformations in network forming glasses: a high-pressure neutron diffraction study of GeO2 glass up to 17.5 GPa
Philip S Salmon, James W E Drewitt, Dean A J Whittaker, et al.
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of 2
Search research articles
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Showing results (11-20 of 14) with videos related to
Sort By:
Page
of 2
You have reached the last page of results.
This site can display upto 14 results.
Physical Chemistry Chemical Physics : PCCP
|
July 25, 2012
Charge localization increases chemical expansion in cerium-based oxides
Dario Marrocchelli, Sean R Bishop, Harry L Tuller, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
June 10, 2011
A dipole polarizable potential for reduced and doped CeO(2) obtained from first principles
Mario Burbano, Dario Marrocchelli, Bilge Yildiz, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
November 21, 2012
Mechanisms of network collapse in GeO2 glass: high-pressure neutron diffraction with isotope substitution as arbitrator of competing models
Kamil Wezka, Philip S Salmon, Anita Zeidler, et al.
Journal of Physics. Condensed Matter : an Institute of Physics Journal
|
September 7, 2012
Density-driven structural transformations in network forming glasses: a high-pressure neutron diffraction study of GeO2 glass up to 17.5 GPa
Philip S Salmon, James W E Drewitt, Dean A J Whittaker, et al.
Page
of 2