921 resultados para Degress of Freedom


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The early provisions protecting freedom of association in Australian federal industrial relations law supported trade union security. The interests of individuals were seen as adequately protected by collective groups. This principle dominated the industrial relations laws from 1904 to the mid-1970s. However, from the late 1970s, the laws were incrementally altered to promote freedom of choice and the rights of individuals not to be part of trade unions. The reframing of the laws also reflected changes in the wider Australian community, manifested particularly in the decline of union density rates. These changes were also part of an international trend, favouring the ideology of neoliberalism which contributed to an unsympathetic environment for trade unions. The current Fair Work Act 2009 (Cth) has signalled a return to collectivism, although freedom of choice is at the heart of the laws rather than the promotion of collective groups. In the absence of legislative support promoting the viability of collective groups, this freedom to choose is threatened, leaving many workers with little choice but to disassociate.

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This thesis asks: Is freedom possible on a cognitive level, or do particular emotions negate freedom? It examines various theories of emotion, from both a cognitive and a physiological perspective, ultimately demonstrating a resonance between particular Eastern and Western theories of emotional life.

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This article concerns the free vibration of a single-degree-of-freedom (SDOF) system with three types of nonlinear damping. One system considered is where the spring and the damper are connected to the mass so that they are orthogonal, and the vibration is in the direction of the spring. It is shown that, provided the displacement is small, this system behaves in a similar way to the conventional SDOF system with cubic damping, in which the spring and the damper are connected so they act in the same direction. For completeness, these systems are compared with a conventional SDOF system with quadratic damping. By transforming all the equations of motion of the systems so that the damping force is proportional to the product of a displacement dependent term and velocity, then all the systems can be directly compared. It is seen that the system with cubic damping is worse than that with quadratic damping for the attenuation of free vibration. [DOI: 10.1115/1.4005010]

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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We set up a new calculational framework for the Yang-Mills vacuum transition amplitude in the Schrodinger representation. After integrating out hard-mode contributions perturbatively and performing a gauge-invariant gradient expansion of the ensuing soft-mode action, a manageable saddle-point expansion for the vacuum overlap can be formulated. In combination with the squeezed approximation to the vacuum wave functional this allows for an essentially analytical treatment of physical amplitudes. Moreover, it leads to the identification of dominant and gauge-invariant classes of gauge field orbits which play the role of gluonic infrared (IR) degrees of freedom. The latter emerge as a diverse set of saddle-point solutions and are represented by unitary matrix fields. We discuss their scale stability, the associated virial theorem and other general properties including topological quantum numbers and action bounds. We then find important saddle-point solutions (most of them solitons) explicitly and examine their physical impact. While some are related to tunneling solutions of the classical Yang-Mills equation, i.e. to instantons and merons, others appear to play unprecedented roles. A remarkable new class of IR degrees of freedom consists of Faddeev-Niemi type link and knot solutions, potentially related to glueballs.