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A network of 85 passive collectors for aeolian sediment spanning numerous plant communities, soil types, and land-use histories covering approximately 4000 square kilometers across southeastern Utah was used to sample horizontal emissions of aeolian sediment.
Samples were excited with vertically polarized light at 495 nm, and both vertical and horizontal emissions were monitored at 520 nm (8-nm bandwidth).
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Samples were excited with vertically polarized light at 495 nm and both vertical and horizontal emission was monitored at 520 nm.
Hence, this simulation study further confirms the hypothesis that the lancet affects mostly the vertical dimension of the emission pattern features while leaving the horizontal dimensions of the emission pattern features unchanged.
Surface concentrations are calculated by dispersing emissions in horizontal strata, taking chemical reactivity and transport processes into account.
G-factor was determined by measuring emission intensity with emission polarizers set to horizontal and vertical positions after horizontally polarized excitation.
In this figure, the horizontal axis represents production-based emissions and the vertical axis, consumption-based emissions.
Furthermore, our simulations demonstrate a significant sensitivity of L-band emission at horizontal polarization with respect to the density of the lowest snow layer as the result of refraction and impedance matching by the snowpack.
The goal of this campaign was to reconstruct the three-dimensional (3D) distribution of the auroral emission and horizontal distribution of the energy spectra of precipitating electrons from the multiple auroral images using the tomographic inversion technique (Aso et al. 1998; Gustavsson 1998; Tanaka et al. 2011).
The steady-state polarization (P) of a fluorophore is defined by the ratio of I H− I V to I H+ I V, in which I H and I V are the emission intensities horizontal and vertical to the microscope stage.
The Cryogenic Infrared Spectrometers and Telescopes for the Atmosphere (CRISTA) instrument was developed to provide global measurements of atmospheric infrared emissions with increased horizontal resolution.
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