973 resultados para Correlation of forces


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Este artículo es producto de los avances de una investigación enmarcada en el proyecto "Territorio, Actividad Industrial y Mercado de Trabajo. Estudio de casos en el Gran La Plata", que tiene como principales objetivos analizar las relaciones entre territorio, políticas públicas, sector industrial y empleo del Gran La Plata en el ciclo de la posconvertibilidad. Dicha investigación atiende específicamente a las relaciones entre Estado, actores y territorio y parte de considerar a este último en toda su complejidad. En el presente trabajo pretendemos mostrar cómo las continuidades y rupturas que se dan en el sector industrial argentino a partir de la posconvertibilidad pueden observarse en el Gran La Plata y en la dinámica de las grandes industrias de la microrregión. En este territorio se expresa la puja de proyectos políticos estratégicos que identificamos a escala nacional, los cuales imponen diferentes lógicas y territorialidades, dando lugar a diversas situaciones en el sector industrial. Es decir, podemos observar una dualidad y un conjunto de contradicciones (que atraviesan al propio Estado) que producen en el territorio distintas configuraciones que se definen en cada situación de acuerdo con las correlaciones de fuerzas existentes

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El trabajo analiza cómo se distribuyen las cargas y beneficios del modelo de acumulación post-convertibilidad, 2002-2007, entre las fracciones de clase. En este sentido exploramos la constitución de un sistema de transferencias de ingresos en el que convergen en un proceso dinámico la inflación, las políticas económicas y las estrategias de acumulación de los agentes económicos. Desde una perspectiva que amplía el modo de abordaje del debate sobre la distribución del ingreso, postulamos la conformación de un sistema de transferencias en base al análisis de dos núcleos vinculados: uno ligado a transferencias operadas a partir de la articulación de políticas económicas y transformaciones estructurales, y otro que es en sí mismo un mecanismo de transferencia de importante relevancia y alcance explicativo: la inflación. La evolución diferencial de los precios afecta la capacidad de apropiación, por los agentes económicos, del ingreso socialmente producido, expresando así cambios en las relaciones de fuerzas

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El presente artículo se propone realizar un ejercicio de caracterización del modelo de acumulación postconvertibilidad en la Argentina, 2002-2007, analizando sus relaciones con las políticas económicas aplicadas y los cambios en la correlación de fuerzas entre fracciones de clase. En este sentido analizaremos sintéticamente distintas fracciones de clase, tanto dominantes como subalternas, identificando las principales políticas y condiciones estructurales del modelo que las afectan para ver cómo se distribuyen las 'cargas' y 'beneficios' del nuevo modelo. De este modo percibiremos el cambio en la correlación de fuerzas entre fracciones de clase al mismo tiempo que estudiaremos las acciones estatales tendientes a constituir condiciones de compensación y estabilización del modelo a través de un sistema de transferencias de ingresos, que encuentra en el Estado aun actor fundamental

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Este artículo es producto de los avances de una investigación enmarcada en el proyecto "Territorio, Actividad Industrial y Mercado de Trabajo. Estudio de casos en el Gran La Plata", que tiene como principales objetivos analizar las relaciones entre territorio, políticas públicas, sector industrial y empleo del Gran La Plata en el ciclo de la posconvertibilidad. Dicha investigación atiende específicamente a las relaciones entre Estado, actores y territorio y parte de considerar a este último en toda su complejidad. En el presente trabajo pretendemos mostrar cómo las continuidades y rupturas que se dan en el sector industrial argentino a partir de la posconvertibilidad pueden observarse en el Gran La Plata y en la dinámica de las grandes industrias de la microrregión. En este territorio se expresa la puja de proyectos políticos estratégicos que identificamos a escala nacional, los cuales imponen diferentes lógicas y territorialidades, dando lugar a diversas situaciones en el sector industrial. Es decir, podemos observar una dualidad y un conjunto de contradicciones (que atraviesan al propio Estado) que producen en el territorio distintas configuraciones que se definen en cada situación de acuerdo con las correlaciones de fuerzas existentes

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El trabajo analiza cómo se distribuyen las cargas y beneficios del modelo de acumulación post-convertibilidad, 2002-2007, entre las fracciones de clase. En este sentido exploramos la constitución de un sistema de transferencias de ingresos en el que convergen en un proceso dinámico la inflación, las políticas económicas y las estrategias de acumulación de los agentes económicos. Desde una perspectiva que amplía el modo de abordaje del debate sobre la distribución del ingreso, postulamos la conformación de un sistema de transferencias en base al análisis de dos núcleos vinculados: uno ligado a transferencias operadas a partir de la articulación de políticas económicas y transformaciones estructurales, y otro que es en sí mismo un mecanismo de transferencia de importante relevancia y alcance explicativo: la inflación. La evolución diferencial de los precios afecta la capacidad de apropiación, por los agentes económicos, del ingreso socialmente producido, expresando así cambios en las relaciones de fuerzas

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El presente artículo se propone realizar un ejercicio de caracterización del modelo de acumulación postconvertibilidad en la Argentina, 2002-2007, analizando sus relaciones con las políticas económicas aplicadas y los cambios en la correlación de fuerzas entre fracciones de clase. En este sentido analizaremos sintéticamente distintas fracciones de clase, tanto dominantes como subalternas, identificando las principales políticas y condiciones estructurales del modelo que las afectan para ver cómo se distribuyen las 'cargas' y 'beneficios' del nuevo modelo. De este modo percibiremos el cambio en la correlación de fuerzas entre fracciones de clase al mismo tiempo que estudiaremos las acciones estatales tendientes a constituir condiciones de compensación y estabilización del modelo a través de un sistema de transferencias de ingresos, que encuentra en el Estado aun actor fundamental

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Este artículo es producto de los avances de una investigación enmarcada en el proyecto "Territorio, Actividad Industrial y Mercado de Trabajo. Estudio de casos en el Gran La Plata", que tiene como principales objetivos analizar las relaciones entre territorio, políticas públicas, sector industrial y empleo del Gran La Plata en el ciclo de la posconvertibilidad. Dicha investigación atiende específicamente a las relaciones entre Estado, actores y territorio y parte de considerar a este último en toda su complejidad. En el presente trabajo pretendemos mostrar cómo las continuidades y rupturas que se dan en el sector industrial argentino a partir de la posconvertibilidad pueden observarse en el Gran La Plata y en la dinámica de las grandes industrias de la microrregión. En este territorio se expresa la puja de proyectos políticos estratégicos que identificamos a escala nacional, los cuales imponen diferentes lógicas y territorialidades, dando lugar a diversas situaciones en el sector industrial. Es decir, podemos observar una dualidad y un conjunto de contradicciones (que atraviesan al propio Estado) que producen en el territorio distintas configuraciones que se definen en cada situación de acuerdo con las correlaciones de fuerzas existentes

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El trabajo analiza cómo se distribuyen las cargas y beneficios del modelo de acumulación post-convertibilidad, 2002-2007, entre las fracciones de clase. En este sentido exploramos la constitución de un sistema de transferencias de ingresos en el que convergen en un proceso dinámico la inflación, las políticas económicas y las estrategias de acumulación de los agentes económicos. Desde una perspectiva que amplía el modo de abordaje del debate sobre la distribución del ingreso, postulamos la conformación de un sistema de transferencias en base al análisis de dos núcleos vinculados: uno ligado a transferencias operadas a partir de la articulación de políticas económicas y transformaciones estructurales, y otro que es en sí mismo un mecanismo de transferencia de importante relevancia y alcance explicativo: la inflación. La evolución diferencial de los precios afecta la capacidad de apropiación, por los agentes económicos, del ingreso socialmente producido, expresando así cambios en las relaciones de fuerzas

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The notion of autonomy arises in feminism as theory and action for horizontal and building self-appointed women in the project of social transformation. As part of the feminist movement - political subject of women - the autonomy is established dynamically, back and forth from the socio-historical context that sign and thus the correlation of forces that is with the women's group . Thus, for this work it was necessary to feminism take on your current process, which set the transitional period of "onguização" of feminist organizations (1980 to 2000), which discusses the relative loss of autonomy before the alliance as State and dependence on development agencies, for the current period, which incorporates discourses and practices through autonomous groups and their militants. Therefore, this study is based on research of autonomous feminism of young women, characterized as another radical and political integration proposed for that period. The aim then was to analyze the organizational capacity of autonomous feminist collective in Natal/RN, from the knowledge of the structure and dynamics of a group and understanding the consubstantiality gender, 'race'/ethnicity, class for the process organization. And with the participation of the Coletivo Autônomo Feminista Leila Diniz. This was in organizational transition, ending his career as ONGs and leaving for autonomous militancy. In order to achieve the so-objectification proposal, literature review was performed of the categories, feminism, autonomy, patriarchy, feminist activist conscientiously and collective; documentary research relating to the Group; participant observations within their meetings; and a themed workshop with some militants Autonomous Collective, which was produced pictures and speeches. The materialization of these instruments provided research analysis on the elements that constitute the young feminists and contemporary autonomous organizations, in view of the multiple experiences and the diversity of women who configures the subject [the subject] while feminist collective total. As well as taking a feminist militancy conscience expressed by the group studied the necessary re-appropriation of each other in combating patriarchal femininity, the hierarchical naturalizations marking the sex of women and the recognition as sex class for feminist autonomous organization for women's liberation.

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A research project was conducted at Queensland University of Technology on the relationship between the forces at the wheel-rail interface in track and the rate of degradation of track. Data for the study was obtained from an instrumented vehicle which ran repeatedly over a section of Queensland Rail's track in Central Queensland over a 6-month period. The wheel-rail forces had to be correlated with the elements of roughness in the test track profile, which were measured with a variety of equipment. At low frequencies, there was strong correlation between forces and profile, as expected, but diminishing correlation as frequencies increased.

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Impedance cardiography is an application of bioimpedance analysis primarily used in a research setting to determine cardiac output. It is a non invasive technique that measures the change in the impedance of the thorax which is attributed to the ejection of a volume of blood from the heart. The cardiac output is calculated from the measured impedance using the parallel conductor theory and a constant value for the resistivity of blood. However, the resistivity of blood has been shown to be velocity dependent due to changes in the orientation of red blood cells induced by changing shear forces during flow. The overall goal of this thesis was to study the effect that flow deviations have on the electrical impedance of blood, both experimentally and theoretically, and to apply the results to a clinical setting. The resistivity of stationary blood is isotropic as the red blood cells are randomly orientated due to Brownian motion. In the case of blood flowing through rigid tubes, the resistivity is anisotropic due to the biconcave discoidal shape and orientation of the cells. The generation of shear forces across the width of the tube during flow causes the cells to align with the minimal cross sectional area facing the direction of flow. This is in order to minimise the shear stress experienced by the cells. This in turn results in a larger cross sectional area of plasma and a reduction in the resistivity of the blood as the flow increases. Understanding the contribution of this effect on the thoracic impedance change is a vital step in achieving clinical acceptance of impedance cardiography. Published literature investigates the resistivity variations for constant blood flow. In this case, the shear forces are constant and the impedance remains constant during flow at a magnitude which is less than that for stationary blood. The research presented in this thesis, however, investigates the variations in resistivity of blood during pulsataile flow through rigid tubes and the relationship between impedance, velocity and acceleration. Using rigid tubes isolates the impedance change to variations associated with changes in cell orientation only. The implications of red blood cell orientation changes for clinical impedance cardiography were also explored. This was achieved through measurement and analysis of the experimental impedance of pulsatile blood flowing through rigid tubes in a mock circulatory system. A novel theoretical model including cell orientation dynamics was developed for the impedance of pulsatile blood through rigid tubes. The impedance of flowing blood was theoretically calculated using analytical methods for flow through straight tubes and the numerical Lattice Boltzmann method for flow through complex geometries such as aortic valve stenosis. The result of the analytical theoretical model was compared to the experimental impedance measurements through rigid tubes. The impedance calculated for flow through a stenosis using the Lattice Boltzmann method provides results for comparison with impedance cardiography measurements collected as part of a pilot clinical trial to assess the suitability of using bioimpedance techniques to assess the presence of aortic stenosis. The experimental and theoretical impedance of blood was shown to inversely follow the blood velocity during pulsatile flow with a correlation of -0.72 and -0.74 respectively. The results for both the experimental and theoretical investigations demonstrate that the acceleration of the blood is an important factor in determining the impedance, in addition to the velocity. During acceleration, the relationship between impedance and velocity is linear (r2 = 0.98, experimental and r2 = 0.94, theoretical). The relationship between the impedance and velocity during the deceleration phase is characterised by a time decay constant, ô , ranging from 10 to 50 s. The high level of agreement between the experimental and theoretically modelled impedance demonstrates the accuracy of the model developed here. An increase in the haematocrit of the blood resulted in an increase in the magnitude of the impedance change due to changes in the orientation of red blood cells. The time decay constant was shown to decrease linearly with the haematocrit for both experimental and theoretical results, although the slope of this decrease was larger in the experimental case. The radius of the tube influences the experimental and theoretical impedance given the same velocity of flow. However, when the velocity was divided by the radius of the tube (labelled the reduced average velocity) the impedance response was the same for two experimental tubes with equivalent reduced average velocity but with different radii. The temperature of the blood was also shown to affect the impedance with the impedance decreasing as the temperature increased. These results are the first published for the impedance of pulsatile blood. The experimental impedance change measured orthogonal to the direction of flow is in the opposite direction to that measured in the direction of flow. These results indicate that the impedance of blood flowing through rigid cylindrical tubes is axisymmetric along the radius. This has not previously been verified experimentally. Time frequency analysis of the experimental results demonstrated that the measured impedance contains the same frequency components occuring at the same time point in the cycle as the velocity signal contains. This suggests that the impedance contains many of the fluctuations of the velocity signal. Application of a theoretical steady flow model to pulsatile flow presented here has verified that the steady flow model is not adequate in calculating the impedance of pulsatile blood flow. The success of the new theoretical model over the steady flow model demonstrates that the velocity profile is important in determining the impedance of pulsatile blood. The clinical application of the impedance of blood flow through a stenosis was theoretically modelled using the Lattice Boltzman method (LBM) for fluid flow through complex geometeries. The impedance of blood exiting a narrow orifice was calculated for varying degrees of stenosis. Clincial impedance cardiography measurements were also recorded for both aortic valvular stenosis patients (n = 4) and control subjects (n = 4) with structurally normal hearts. This pilot trial was used to corroborate the results of the LBM. Results from both investigations showed that the decay time constant for impedance has potential in the assessment of aortic valve stenosis. In the theoretically modelled case (LBM results), the decay time constant increased with an increase in the degree of stenosis. The clinical results also showed a statistically significant difference in time decay constant between control and test subjects (P = 0.03). The time decay constant calculated for test subjects (ô = 180 - 250 s) is consistently larger than that determined for control subjects (ô = 50 - 130 s). This difference is thought to be due to difference in the orientation response of the cells as blood flows through the stenosis. Such a non-invasive technique using the time decay constant for screening of aortic stenosis provides additional information to that currently given by impedance cardiography techniques and improves the value of the device to practitioners. However, the results still need to be verified in a larger study. While impedance cardiography has not been widely adopted clinically, it is research such as this that will enable future acceptance of the method.

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With an objective to understand the nature of forces which contribute to the disjoining pressure of a thin water film on a steel substrate being pressed by an oil droplet, two independent sets of experiments were done. (i) A spherical silica probe approaches the three substrates; mica, PTFE and steel, in a 10 mM electrolyte solution at two different pHs (3 and 10). (ii) The silica probe with and without a smeared oil film approaches the same three substrates in water (pH = 6). The surface potential of the oil film/water was measured using a dynamic light scattering experiment. Assuming the capacity of a substrate for ion exchange the total interaction force for each experiment was estimated to include the Derjaguin-Landau-Verwey-Overbeek (DLVO) force, hydration repulsion, hydrophobic attraction and oil-capillary attraction. The best fit of these estimates to the force-displacement characteristics obtained from the two sets of experiment gives the appropriate surface potentials of the substrates. The procedure allows an assessment of the relevance of a specific physical interaction to an experimental configuration. Two of the principal observations of this work are: (i) The presence of a surface at constant charge, as in the presence of an oil film on the probe, significantly enhances the counterion density over what is achieved when both the surfaces allow ion exchange. This raises the corresponding repulsion barrier greatly. (ii) When the substrate surface is wettable by oil, oil-capillary attraction contributes substantially to the total interaction. If it is not wettable the oil film is deformed and squeezed out. (C) 2010 Elsevier Inc. All rights reserved.

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The present study reports a two dimensional NMR experiment which separates single quantum spectra of enantiomers from that of a racemic mixture. This is a blend of selective double quantum refocusing, for resolving couplings and chemical shift interactions along two dimensions followed by correlation of the selectively excited protons to the entire coupled spin network. The concept is solely based on the presence of distinct intra methyl dipolar couplings of different enantiomers when dissolved in chiral orienting media. The analysis of single enantiomer spectrum obtained from respective F-2 cross sections yield all the spectral information. (C) 2011 Elsevier Inc. All rights reserved.

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Materials with widely varying molecular topologies and exhibiting liquid crystalline properties have attracted considerable attention in recent years. C-13 NMR spectroscopy is a convenient method for studying such novel systems. In this approach the assignment of the spectrum is the first step which is a non-trivial problem. Towards this end, we propose here a method that enables the carbon skeleton of the different sub-units of the molecule to be traced unambiguously. The proposed method uses a heteronuclear correlation experiment to detect pairs of nearby carbons with attached protons in the liquid crystalline core through correlation of the carbon chemical shifts to the double-quantum coherences of protons generated through the dipolar coupling between them. Supplemented by experiments that identify non-protonated carbons, the method leads to a complete assignment of the spectrum. We initially apply this method for assigning the C-13 spectrum of the liquid crystal 4-n-pentyl-4'-cyanobiphenyl oriented in the magnetic field. We then utilize the method to assign the aromatic carbon signals of a thiophene based liquid crystal thereby enabling the local order-parameters of the molecule to be estimated and the mutual orientation of the different sub-units to be obtained.

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The simulation of complex chemical systems often requires a multi-level description, in which a region of special interest is treated using a computationally expensive quantum mechanical (QM) model while its environment is described by a faster, simpler molecular mechanical (MM) model. Furthermore, studying dynamic effects in solvated systems or bio-molecules requires a variable definition of the two regions, so that atoms or molecules can be dynamically re-assigned between the QM and MM descriptions during the course of the simulation. Such reassignments pose a problem for traditional QM/MM schemes by exacerbating the errors that stem from switching the model at the boundary. Here we show that stable, long adaptive simulations can be carried out using density functional theory with the BLYP exchange-correlation functional for the QM model and a flexible TIP3P force field for the MM model without requiring adjustments of either. Using a primary benchmark system of pure water, we investigate the convergence of the liquid structure with the size of the QM region, and demonstrate that by using a sufficiently large QM region (with radius 6 Å) it is possible to obtain radial and angular distributions that, in the QM region, match the results of fully quantum mechanical calculations with periodic boundary conditions, and, after a smooth transition, also agree with fully MM calculations in the MM region. The key ingredient is the accurate evaluation of forces in the QM subsystem which we achieve by including an extended buffer region in the QM calculations. We also show that our buffered-force QM/MM scheme is transferable by simulating the solvated Cl(-) ion.