![]() ![]() ![]() Habtamu, Kassahun Degarege, Abraham Ye-Ebiyo, Yemane Erko, Berhanuĭecisions on individual or community treatment and evaluation of chemotherapy based control programs depend on parasitological diagnostic techniques. As a first application we show that this Einstein Gauss-Bonnet Katz action yields, without any extra ingredients, the expected mass of the Boulware-Deser black hole.Ĭomparison of the Kato- Katz and FLOTAC techniques for the diagnosis of soil-transmitted helminth infections. However, we show that they coincide if one replaces the background of the Katz procedure by a product manifold. The boundary term constructed in this paper allows to deal with a general background and is not equivalent to the Gibbons-Hawking-Myers boundary term. When translated into tensorial language, this boundary term is the generalization to this theory of the Katz boundary term and vector for general relativity. We propose a boundary term to the Einstein-Gauss-Bonnet action for gravity, which uses the Chern-Weil theorem plus a dimensional continuation process, such that the extremization of the full action yields the equations of motion when Dirichlet boundary conditions are imposed. Scaling Up Renewable Energy Generation: Aligning Targets and Incentives with GridĮinstein-Gauss-Bonnet theory of gravity: The Gauss-Bonnet- Katz boundary termĭeruelle, Nathalie Merino, Nelson Olea, Rodrigo Integrating Variable Renewable Energy to the Grid: Key Issues. ![]() , Arizona State University (2006-2008) Featured Publications Katz, J. ![]()
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