21,813 research outputs found

    Psychoanalytic theory and textual interpretation

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    The affective underpinnings of soft power

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    The concept of soft power occupies a prominent place in International Relations, foreign policy, and security studies. Primarily developed by Joseph S. Nye, the concept is typically drawn upon to emphasize the more intangible dimensions of power in a field long dominated by overtly material (i.e. military) power. Recently, some scholars have reframed soft power — specifically the key notion of attraction — as a narrative and linguistic process. This literature, however, has downplayed some of the other deep-seated underpinnings of soft power, which this article argues lie in the dynamics of affect. Building upon the International Relations affect and aesthetics literatures, this article develops the concept of soft power as rooted in the political dynamics of emotion and introduces the concept of affective investment. The attraction of soft power stems not only from its cultural influence or narrative construction, but more fundamentally from audiences’ affective investments in the images of identity that it produces. The empirical import of these ideas is offered in an analysis of the construction of American attraction in the war on terror

    Fourth-order flows in surface modelling

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    This short article is a brief account of the usage of fourth-order curvature flow in surface modelling

    Anesthetizing the Public Conscience: Lethal Injection and Animal Euthanasia

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    Identity, affective attachments, and US-Iranian nuclear politics

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    Blind Dates: When Should the Statute of Limitations Begin to Run on a Method-of-Execution Challenge?

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    This Article is the first to take a comprehensive look at the issue of statute-of-limitations accrual in method-of-execution cases. In other words, when does the clock start ticking on a death row inmate\u27s right to challenge the way in which the state intends to execute him? Most circuit courts have held that method-of-execution challenges accrue at the completion of the direct appeal process. This means that death row inmates in these jurisdictions must file method-of-execution challenges years, and sometimes even decades, before an actual execution is scheduled. Although this approach has been the subject of much criticism, even the dissenting view would tie the accrual date to a particular stage of the death row inmate\u27s appeals

    Nonequilibrium gating and voltage dependence of the ClC-0 Cl- channel.

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    The gating of ClC-0, the voltage-dependent Cl- channel from Torpedo electric organ, is strongly influenced by Cl- ions in the external solution. Raising external Cl- over the range 1-600 mM favors the fast-gating open state and disfavors the slow-gating inactivated state. Analysis of purified single ClC-0 channels reconstituted into planar lipid bilayers was used to identify the role of Cl- ions in the channel's fast voltage-dependent gating process. External, but not internal, Cl- had a major effect on the channel's opening rate constant. The closing rate was more sensitive to internal Cl- than to external Cl-. Both opening and closing rates varied with voltage. A model was derived that postulates (a) that in the channel's closed state, Cl- is accessible to a site located at the outer end of the conduction pore, where it binds in a voltage-independent fashion, (b) that this closed conformation can open, whether liganded by Cl- or not, in a weakly voltage-dependent fashion, (c) that the Cl(-)-liganded closed channel undergoes a conformational change to a different closed state, such that concomitant with this change, Cl- ion moves inward, conferring voltage-dependence to this step, and (d) that this new Cl(-)-liganded closed state opens with a very high rate. According to this picture, Cl- movement within the pre-open channel is the major source of voltage dependence, and charge movement intrinsic to the channel protein contributes very little to voltage-dependent gating of ClC-0. Moreover, since the Cl- activation site is probably located in the ion conduction pathway, the fast gating of ClC-0 is necessarily coupled to ion conduction, a nonequilibrium process

    Wearing Surface Testing: Yukon River Bridge

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    INE/AUTC 12.2
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