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Pushing and Pulling II: Temporal and Spatial Distributions of Out-migrating Juvenile Blueback Herring in the Presence of an Ultrasonic Fish Guidance System at a Hydroelectric Project
Varieties of distributive rotational lattices
A rotational lattice is a structure (L;\vee,\wedge, g) where
L=(L;\vee,\wedge) is a lattice and g is a lattice automorphism of finite order.
We describe the subdirectly irreducible distributive rotational lattices. Using
J\'onsson's lemma, this leads to a description of all varieties of distributive
rotational lattices.Comment: 7 page
Hierarchies from Fluxes in String Compactifications
Warped compactifications with significant warping provide one of the few
known mechanisms for naturally generating large hierarchies of physical scales.
We demonstrate that this mechanism is realizable in string theory, and give
examples involving orientifold compactifications of IIB string theory and
F-theory compactifications on Calabi-Yau four-folds. In each case, the
hierarchy of scales is fixed by a choice of RR and NS fluxes in the compact
manifold. Our solutions involve compactifications of the Klebanov-Strassler
gravity dual to a confining N=1 supersymmetric gauge theory,and the hierarchy
reflects the small scale of chiral symmetry breaking in the dual gauge theory.Comment: 35 pages. v2: minor eqn. and reference change
The evolution of cooperation and altruism--a general framework and a classification of models.
One of the enduring puzzles in biology and the social sciences is the origin and persistence of intraspecific cooperation and altruism in humans and other species. Hundreds of theoretical models have been proposed and there is much confusion about the relationship between these models. To clarify the situation, we developed a synthetic conceptual framework that delineates the conditions necessary for the evolution of altruism and cooperation. We show that at least one of the four following conditions needs to be fulfilled: direct benefits to the focal individual performing a cooperative act; direct or indirect information allowing a better than random guess about whether a given individual will behave cooperatively in repeated reciprocal interactions; preferential interactions between related individuals; and genetic correlation between genes coding for altruism and phenotypic traits that can be identified. When one or more of these conditions are met, altruism or cooperation can evolve if the cost-to-benefit ratio of altruistic and cooperative acts is greater than a threshold value. The cost-to-benefit ratio can be altered by coercion, punishment and policing which therefore act as mechanisms facilitating the evolution of altruism and cooperation. All the models proposed so far are explicitly or implicitly built on these general principles, allowing us to classify them into four general categories
Branes at Quantum Criticality
In this paper we propose new non-relativistic p+1 dimensional theory. This
theory is defined in such a way that the potential term obeys the principle of
detailed balance where the generating action corresponds to p-brane action.
This condition ensures that the norm of the vacuum wave functional of p+1
dimensional theory is equal to the partition function of p-brane theory.Comment: 17 pages, references added, typos fixed,v2. minor change
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