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Atomic and Ionic Radii of Elements 1–96
Atomic and Ionic Radii of Elements 1–96

... lighter p-block elements, and some deviations are seen in the d-blocks where a few elements show dramatic changes in atomic valence orbital occupation, which affects the radii (Supporting Information, Figure S1). The relative size given by our radii for Group 1 and 2 atoms is at variance with the Ba ...
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Direct welding of fused silica with femtosecond fiber laser
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... of the welding lines is 10 mm long. From the camera picture as shown in Fig. 6, there is clearly a rectangular section (black rectangular region) that does not show any interference fringe all the way along the sample from left to right. This shows very good complete one edge sealing along the whole ...
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... released. The most uniform solvation was achieved in a rotating-bomb calorimeter, but the comparison with Parr’s system analyzed here is not relevant given the fact that this is a static bomb. (8) The possible influence of the dilution energy in water for the more readily solvable H2SO4 (6) will be ...
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Measurement of the THz emission from a femtosecond laser filament
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... radiation between 0.1 and 2.7 THz (see inset in Figure 1 case A). In addition, three optional filters (B, C and D in Figure 1), whose transmissions had been measured with a THz spectrometer could be added in front of the bolometer. A Z-cut quartz lens inside the 4K Dewar focused the THz beam on a si ...
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... to access a region of large PCI growth, primarily because of the relatively few number of actuators in the system and the limited dynamic range of the adaptive optics hardware. We did intend, however, for the 69-channel experiments to provide early data for code verification well before the completi ...
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... physisorbed and chemisorbed species. a) Physisorption takes place at larger distance d N 0.3 nm and is associated with weak van der Waals interaction energies around 0.1 eV. Chemisorption, in contrast, originates from the formation of strong covalent or ionic bonds at shorter distances. b) In the co ...
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Rutherford backscattering spectrometry



Rutherford backscattering spectrometry (RBS) is an analytical technique used in materials science. Sometimes referred to as high-energy ion scattering (HEIS) spectrometry, RBS is used to determine the structure and composition of materials by measuring the backscattering of a beam of high energy ions (typically protons or alpha particles) impinging on a sample.
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