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Storing and manipulating quantum information using atomic
Storing and manipulating quantum information using atomic

chap6 (WP)
chap6 (WP)

A STUDY ON STRUCTURAL ASPECTS AND MICROBIAL ACTIVITY OF (E)-4- PYRIDINECARBOXALDEHYDE-3-HYDROXY-5-(HYDROXYMETHYL)-2-METHYL-OXIME
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... with Z=4, with space group P-1 and cell dimensions: a=6.6067(15) Å, b=9.726(2) Å and c=14.805(3) Å. The data obtained confirmed that the title compound crystallizes in the non planar form, assembled as 3-D tetramer, involving inter and intramolecular hydrogen bonding. The equilibrium studies were ca ...
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... is in agreement with the theory of Bohn and Julienne [20]. The observation of unitarity-limited saturation of KPA has important implications, for example, in the observation of atom-molecule oscillations and coherent control (which often requires understanding the strongly driven regime) [20–25]. Ou ...
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... he speed of light in vacuum (c < 3 3 108 m/s) is an important physical constant that appears in Maxwell’s theory of electromagnetism. For this reason, scientists have endeavored to measure it with very high precision, making it one of the most accurately known of all physical constants. The situatio ...
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... show an oscillation at the delay time of t = 20 fs, and this might be induced by the multiple scattering effect of pump pulse within the photonic crystal as mentioned above. The weak oscillation appearing before t = −15 fs in the experimental data 关see Fig. 3共a兲兴 is not found in theory 关see Fig. 3共b ...
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... are launched into the fiber using an achromatic lens. Two chirped mirrors compensate for pulse lengthening in air. (b) Diagnostics. Upper, the VUV spectrum is measured with an evacuated scanning monochromator equipped with a scintillator and a photomultiplier tube (PMT); lower, the UV-NIR and DUV sp ...
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Optical solitons and its applications  Final report Physics 568 (Nonlinear optics)
Optical solitons and its applications Final report Physics 568 (Nonlinear optics)

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Two-dimensional nuclear magnetic resonance spectroscopy

Two-dimensional nuclear magnetic resonance spectroscopy (2D NMR) is a set of nuclear magnetic resonance spectroscopy (NMR) methods which give data plotted in a space defined by two frequency axes rather than one. Types of 2D NMR include correlation spectroscopy (COSY), J-spectroscopy, exchange spectroscopy (EXSY), and nuclear Overhauser effect spectroscopy (NOESY). Two-dimensional NMR spectra provide more information about a molecule than one-dimensional NMR spectra and are especially useful in determining the structure of a molecule, particularly for molecules that are too complicated to work with using one-dimensional NMR.The first two-dimensional experiment, COSY, was proposed by Jean Jeener, a professor at the Université Libre de Bruxelles, in 1971. This experiment was later implemented by Walter P. Aue, Enrico Bartholdi and Richard R. Ernst, who published their work in 1976.
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