Science, Volume 313, Issues 5789-5794John Michels (Journalist) American Association for the Advancement of Science, 2006 |
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Page 954
... crystal . ( A ) Micrograph of a d = 2.32 μm silica sphere in an h = 5 μm layer of 5CB with a hyperbolic hedgehog ... crystal form two - dimensional crystal structures that are bound by topological defects . Two basic crystalline ...
... crystal . ( A ) Micrograph of a d = 2.32 μm silica sphere in an h = 5 μm layer of 5CB with a hyperbolic hedgehog ... crystal form two - dimensional crystal structures that are bound by topological defects . Two basic crystalline ...
Page 956
... crystals , as shown in Fig . 3D . The crystal is easily formed by pairs of antiparallel ferro- electric colloidal chains that form a parallelo- gram unit cell with lattice constants a = 2.95 ± 0.03 μm , b = 2.84 ± 0.02 μm , and y = 61 ...
... crystals , as shown in Fig . 3D . The crystal is easily formed by pairs of antiparallel ferro- electric colloidal chains that form a parallelo- gram unit cell with lattice constants a = 2.95 ± 0.03 μm , b = 2.84 ± 0.02 μm , and y = 61 ...
Page 1099
... crystals studied at 50 mK is shown ( Fig . 3 , crystals 1 and 2 ) . In- side the tube , crystal 1 showed one cusp , which vanished after 1000 s . As long as this cusp was visible , the h ( t ) between the interface level inside and ...
... crystals studied at 50 mK is shown ( Fig . 3 , crystals 1 and 2 ) . In- side the tube , crystal 1 showed one cusp , which vanished after 1000 s . As long as this cusp was visible , the h ( t ) between the interface level inside and ...
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