Search alternatives:
significant deviation » significant variation (Expand Search), significant elevation (Expand Search), significant variations (Expand Search)
increase decrease » increased release (Expand Search)
deviation angle » pennation angle (Expand Search), elevation angle (Expand Search)
significant deviation » significant variation (Expand Search), significant elevation (Expand Search), significant variations (Expand Search)
increase decrease » increased release (Expand Search)
deviation angle » pennation angle (Expand Search), elevation angle (Expand Search)
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13001
Head and neck morphology of MPS VII, MPS VII-GUSB, MPS VII/SAP-CNP and MPS VII-GUSB/SAP-CNP mice.
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13019
Enhancement of Superionic Conductivity by Halide Substitution in Strongly Stacking Faulted Li<sub>3</sub>HoBr<sub>6–<i>x</i></sub>I<sub><i>x</i></sub> Phases
Published 2022“…Almost all members of the solid solution series show strong stacking fault disorder, whereas the intralayer cation disorder systematically increases with increasing iodide content. The substitution of bromide by iodide in Li<sub>3</sub>HoBr<sub>6–<i>x</i></sub>I<sub><i>x</i></sub> leads to an increasing lattice softness and therefore to a higher ionic conductivity and to a lower activation energy. …”
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13020
Enhancement of Superionic Conductivity by Halide Substitution in Strongly Stacking Faulted Li<sub>3</sub>HoBr<sub>6–<i>x</i></sub>I<sub><i>x</i></sub> Phases
Published 2022“…Almost all members of the solid solution series show strong stacking fault disorder, whereas the intralayer cation disorder systematically increases with increasing iodide content. The substitution of bromide by iodide in Li<sub>3</sub>HoBr<sub>6–<i>x</i></sub>I<sub><i>x</i></sub> leads to an increasing lattice softness and therefore to a higher ionic conductivity and to a lower activation energy. …”