In recent years, augmented reality & virtual reality (AR/VR) has been seen as a technology with huge potential to give companies an operational and competitive advantage. But despite the use of new technologies, companies still face challenges and cannot immediately achieve performance. In addition, companies must adopt attractive technologies and analyse the areas where these technologies can be adopted, which emphasizes the importance of establishing appropriate e-government practices. This study explores how AR/VR governance is applied to support the development of sustainable AR/VR applications and analyse the negative impacts based on application domains. The study illustrates what practices are used to obtain information that helps engage technologies by overcoming obstacles with recommended actions that lead to desired results. The research helps to identify the most important scopes and limitations of AR/VR in e-governance.
Scan based design is a very popular approach to sequential circuit testing. Full scan designs often involve significant hardware and performance overheads. Partial scan design, with it's low overhead, offers an alternative to the f i l l scan design. The main problem in partial scan design is minimizing the magnitude of the set of flip-flops to be included in the scan chain. In the past, many solutions to this problem have been proposed. In this paper, we propose a fault coverage driven solution to this problem. Unlike ezisting techniques, our solution is targeted towards achieving 100% fault coverage while minimizing the set of flipflops to be included in the scan chain.
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