36 resultados para Air turbine power take-off


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With the surge of interest in miniaturized implanted medical devices (IMDs), implantable power sources with small dimensions and biocompatibility are in high demand. Implanted battery/supercapacitor devices are commonly packaged within a case that occupies a large volume, making miniaturization difficult. In this study, we demonstrate a polymer electrolyte-enabled biocompatible magnesium-air battery device with a total thickness of approximately 300 μm. It consists of a biocompatible polypyrrole-para(toluene sulfonic acid) cathode and a bioresorbable magnesium alloy anode. The biocompatible electrolyte used is made of choline nitrate (ionic liquid) embedded in a biopolymer, chitosan. This polymer electrolyte is mechanically robust and offers a high ionic conductivity of 8.9 × 10(-3) S cm(-1). The assembled battery delivers a maximum volumetric power density of 3.9 W L(-1), which is sufficient to drive some types of IMDs, such as cardiac pacemakers or biomonitoring systems. This miniaturized, biocompatible magnesium-air battery may pave the way to a future generation of implantable power sources.

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PurposeSelective Estrogen Receptor Modulators (SERMs) reduce the risk of breast cancer for women at increased risk by 38%. However, uptake is extremely low and the reasons for this are not completely understood. The aims of this study were to utilize time trade-off methods to determine the degree of risk reduction required to make taking SERMs worthwhile to women, and the factors associated with requiring greater risk reduction to take SERMs. MethodsWomen at increased risk of breast cancer (N = 107) were recruited from two familial cancer clinics in Australia. Participants completed a questionnaire either online or in pen and paper format. Hierarchical multiple linear regression analysis was used to analyze the data. ResultsOverall, there was considerable heterogeneity in the degree of risk reduction required to make taking SERMs worthwhile. Women with higher perceived breast cancer risk and those with stronger intentions to undergo (or who had undergone) an oophorectomy required a smaller degree of risk reduction to consider taking SERMs worthwhile. ConclusionWomen at increased familial risk appear motivated to consider SERMs for prevention. A tailored approach to communicating about medical prevention is essential. Health professionals could usefully highlight the absolute (rather than relative) probability of side effects and take into account an individual’s perceived (rather than objective) risk of breast cancer.

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Herein, we demonstrate that a flexible, air-permeable, thermoelectric (TE) power generator can be prepared by applying a TE polymer (e.g. poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate)) coated commercial fabric and subsequently by linking the coated strips with a conductive connection (e.g. using fine metal wires). The poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) coated fabric shows very stable TE properties from 300 K to 390 K. The fabric device can generate a TE voltage output (V) of 4.3 mV at a temperature difference (ΔT) of 75.2 K. The potential for using fabric TE devices to harvest body temperature energy has been discussed. Fabric-based TE devices may be useful for the development of new power generating clothing and self-powered wearable electronics.

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Purpose– The purpose of this paper is to investigate small business owner/manager’s exposure to unethical behavior, and to examine the influence of unethical exposure on organizational intention to implement ethical policies and practices.

Design/methodology/approach– Using a sample of 209 Australian small accounting firms with a path analysis, this paper adopts a modified ethical decision-making model to test the relationship between exposure and personal attitudes toward unethical behavior, and the relationship between exposure and intentions to implement ethical policies and practices at firm level.

Findings– The results show that increased exposure to unethical behavior triggered stronger personal attitudes with small accounting firm owners/managers tending toward accepting unethical behavior. In contrast, at the firm level, more exposure to unethical behavior creates cautious overtones and motivates owners/managers to take action and implement more ethical policies, with the underlying aim of addressing serious ethical issues.

Research limitations/implications– The study tests the ethical decision-making model but focuses only on three constructs (i.e. exposure, attitude and response). The aim is to examine whether extensive exposure to unethical behavior would change personal attitudes toward accepting such behavior, and whether unethical exposure would trigger firm owner/managers to take action and address the ethical dilemma by establishing some ethical guidelines. Other important variables (such as subjective norm, personal locus of control) embedded in the ethical decision-making model should be included in future research.

Practical implications–
The study draws attention to ethical dilemmas encountered by many small accounting professionals and their organizations. It addresses the importance of upholding the ethical standard and avoiding the extensive exposure to unethical behavior. It also emphasizes the needs for small businesses to establish some ethical policies and practices.

Originality/value– The paper is purposely set out to reduce the gap in studying how small accounting firms make decisions in implementing their ethical policies and practices to address the rampant ethical dilemma faced by their employees as a result of many corporate scandals and financial crises of the past decade. The results are particularly valuable for small accounting firm owners/managers. The findings also have educational and policy implications.

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The current paper considers the asymptotic local power of second-generation panel unit root tests that are robust to the presence of cross-section dependence in the form of common factors. As a basis for our analysis, we take the PANIC approach of Bai and Ng (2004, 2010), which is one of the single most popular and general second-generation approaches around.

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Electric vehicles (EVs) have recently gained much popularity as a green alternative to fossil-fuel cars and a feasible solution to reduce air pollution in big cities. The use of EVs can also be extended as a demand response tool to support high penetration of renewable energy (RE) sources in future smart grid. Based on the certainty equivalent adaptive control (CECA) principle and a customer participation program, this paper presents a novel control strategy using optimization technique to coordinate not only the charging but also the discharging of EV batteries to deal with the intermittency in RE production. In addition, customer charging requirements and schedules are incorporated into the optimization algorithm to ensure customer satisfaction, and further improve the control performance. The merits of this scheme are its simplicity, efficiency, robustness and readiness for practical applications. The effectiveness of the proposed control algorithm is demonstrated by computer simulations of a power system with high level of wind energy integration.