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Unearthing Ethnocentrism in Music Research: Latin American Experiences with Ethnomusicology
Latin American Studie
Chiral fermions and gauge-fixing in five-dimensional theories
We study in detail the issue of gauge-fixing in theories with one universal
extra dimension, i.e. theories where both bosons and fermions display
Kaluza-Klein (KK) excitations. The extra dimension is compactified using the
standard orbifold construction for a massless chiral fermion. We carry out the
gauge-fixing procedure at the level of the five-dimensional theory and
determine the tree-level propagators and interaction vertices needed for
performing perturbative calculations with the effective four-dimensional theory
resulting after the compactification. The gauge-independence of the tree-level
S-matrix involving massive KK modes is verified using specific examples. In
order to obtain massive fermionic zero modes one has to enlarge the theory by
introducing a set of mirror fermions, a construction which is carried out in
detail. Finally, the gauge-independence of the tree-level S-matrix involving
the resulting new mass-eigenstates is proved by resorting to generalized
current conservation equations.Comment: 10 pages, 5 figures, revtex and axodra
Magnetohydrodynamic waves driven by p-modes
Waves are observed at all layers of the solar atmosphere and the magnetic
field plays a key role in their propagation. While deep down in the atmosphere
the p-modes are almost entirely of acoustic nature, in the upper layers
magnetic forces are dominating, leading to a large variety of new wave modes.
Significant advances have been made recently in our understanding of the
physics of waves interaction with magnetic structures, with the help of
analytical theories, numerical simulations, as well as high-resolution
observations. In this contribution, we review recent observational findings and
current theoretical ideas in the field, with an emphasis on the following
questions: (i) Peculiarities of the observed wave propagation in network, plage
and facular regions; (ii) Role of the mode transformation and observational
evidences of this process; (iii) Coupling of the photosphere, chromosphere, and
above by means of waves propagating in magnetic structures.Comment: Proceeding of meeting "Eclipse on the Coral Sea: Cycle 24 Ascending
GONG 2012 / LWS/SDO-5 / SOHO 27", November 12 - 16, 2012, Palm Cove,
Queenslan
A targeted management of the nutrient solution in a soilless tomato crop according to plant needs
The adoption of closed soilless systems is useful in minimizing the environmental impact of the greenhouse crops. Instead, a significant problem in closed soilless systems is represented by the accumulation of ions in the recycled nutrient solution (NS), in particular the unabsorbed or poorly absorbed ones. To overcome such problem, we: (1) studied the effect of several values of the electrical conductivity (EC) of NS in a NFT (Nutrient Film Technique) system on a cherry type tomato crop, and (2) define a NS (called recovery solution), based on the concept of uptake concentration and transpiration-biomass ratio, that fits the real needs of the plant with respect to water and nutrients. Three levels of EC set point (SP), above which the NS was completely replaced (SP5, SP7.5, and SP10 for the EC limit of 5, 7.5, and 10 dS m(-1), respectively), were established. The SP10 treatment yield was not different from other treatments, and it allowed a better quality of the berries (for dry matter and total soluble solids) and higher environmental sustainability due to a lower discharge of total nutrients into the environment (37 and 59% with respect to SP7.5 and SP5, respectively). The recovery solution used in the second trial allowed a more punctual NS management, by adapting to the real needs of the crop. Moreover, it allowed a lesser amount of water and nutrients to be discharged into the environment and a better use of brackish water, due to a more accurate management of the EC of the NS. The targeted management, based on transpirationbiomass ratio, indicates that, in some stages of the plant cycle, the NS used can be diluted, in order to save water and nutrients. With such management a closed cycle can be realized without affecting the yield, but improving the quality of the tomato berries
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