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211
211

Femtosecond spectroscopy of solid hydrogen - diss.fu
Femtosecond spectroscopy of solid hydrogen - diss.fu

Ultrashort, Strongly Focused Laser Pulses in Free Space
Ultrashort, Strongly Focused Laser Pulses in Free Space

... electromagnetic fields components that satisfy Maxwell’s equations exactly, the Hertz potential method is employed. Second, to solve the Helmholtz equation rigorously, the complex-source/sink method is exploited. Third, to model ultrafast pulses whose duration could be as short as one optical cycle ...
Nanosecond Time-Dependent Stokes Shift at the Tunnel
Nanosecond Time-Dependent Stokes Shift at the Tunnel

... the polarity, accessibility and mobility of the dye and its microenvironment for both of the mutants. The obtained experimental data are consistent with the results obtained by molecular dynamics calculations and correlate with the anatomy of the tunnel mouths, which were proposed to have a strong i ...
SO2 DETECTION USING PLASMON DAMPING By ELI KASA
SO2 DETECTION USING PLASMON DAMPING By ELI KASA

Tuning the Molecular Properties of Polybenzimidazole by
Tuning the Molecular Properties of Polybenzimidazole by

Deviation from Universality in Collisions of Ultracold 6Li2 Molecules
Deviation from Universality in Collisions of Ultracold 6Li2 Molecules

... the atoms can affect molecule-atom collisions, but not molecule-molecule collisions for which the rate coefficients deduced from the two experiments differ by more than a factor of 100 [38]. The Rice results are also incompatible with recent work inferring Li2 þLi from three-body atomic loss [16], ...
Optimisation of Quantum Trajectories Driven by Strong-Field
Optimisation of Quantum Trajectories Driven by Strong-Field

SPECTROSCOPIC MANIFESTATION OF DYE PAIR
SPECTROSCOPIC MANIFESTATION OF DYE PAIR

Aalborg University 2010
Aalborg University 2010

Molecular Orbitals Chapter 5 : Molecular Orbitals
Molecular Orbitals Chapter 5 : Molecular Orbitals

Topological Superconductivity in Artificial Heterostructures
Topological Superconductivity in Artificial Heterostructures

Ca(ii), Cd(ii), Cu(ii) and Pb(ii)
Ca(ii), Cd(ii), Cu(ii) and Pb(ii)

1. Introduction - Radioengineering
1. Introduction - Radioengineering

Interference [Hecht Ch. 9] Lai if necessary.  1
Interference [Hecht Ch. 9] Lai if necessary. 1

Optical Phonon Interacting with Electrons in Carbon Nanotubes
Optical Phonon Interacting with Electrons in Carbon Nanotubes

Adaptive Control of Ultrashort Laser Pulses for
Adaptive Control of Ultrashort Laser Pulses for

Measurement of the THz emission from a femtosecond laser filament
Measurement of the THz emission from a femtosecond laser filament

Ultrafast Acoustic Phonon Ballistics in Semiconductor Heterostructures
Ultrafast Acoustic Phonon Ballistics in Semiconductor Heterostructures

... the quantum well region launches a displacement impulse which propagates through the surrounding AlGaAs and to the surface. This mechanism can be viewed as the initial nonequilibrium contribution of the deformation potential (which is normally averaged over time, electron energy, etc.), and is stron ...
The Calculation of Molecular Similarity: Principles and Practice
The Calculation of Molecular Similarity: Principles and Practice

... •  Training-set used to give values for β0 and β1, and the equations were then applied to a test-set of 100 molecule-pairs previously considered by the EMA CHMP •  A value of p > 0.5 means that a pair is predicted to be similar and simple 2D fingerprints (BCI, Daylight, ECFP4 etc) had > 95% correct ...
PCCPwww
PCCPwww

New perspectives for Rashba spin–orbit coupling
New perspectives for Rashba spin–orbit coupling

Get PDF - OSA Publishing
Get PDF - OSA Publishing

Conformational studies of aliphatic secondary ozonides
Conformational studies of aliphatic secondary ozonides

52 - University of Strathclyde
52 - University of Strathclyde

< 1 ... 4 5 6 7 8 9 10 11 12 ... 70 >

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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