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Can a 200-year-old prophecy and a non-believer save two worlds from destruction? Linsora Anselm is a Khizaran archeologist. She “hears” voices from the past, making her perfect for the job, but she’s stuck in prison after sticking up for her principles—that is, until a mysterious individual pays the guards to help her escape. How will she react when she discovers her champion is the devil incarnate? When Permac breaks Linsora out of prison, he can’t understand why. He’s drawn to her… but she threatened to kill him more than once because she doesn’t trust his ability to sense and influence emotions. She believes he and his race are evil, and she could be right. Forced together, they journey through the cosmos in search of historical facts they (and the rest of the galaxy) thought were correct. They discover pockets of truth on faraway planets—as well as a 200-year-old prophecy that seems to intertwine Linsora and Permacs’ destinies. Through a galaxy of fate, love, deception, and the unknown, Permac and Linsora must learn to trust each other to protect their two worlds. Otherwise, the prophecy says war will annihilate everything in its path. Khizara is an action-packed, adventure-filled space opera of mystery, love, archaeology, and bad guys that can control the emotions of others with a thought. If you’re a fan of Issac Asimov, Arthur C. Clarke, Ray Bradbury, or Frank Herbert, you’ll love this story.
This book constitutes the post-conference proceedings of the 5th International Conference on Machine Learning for Networking, MLN 2022, held in Paris, France, November 28–30, 2022. The 12 full papers presented in this book were carefully reviewed and selected from 27 submissions. The papers present novel ideas, results, experiences and work-in-process on all aspects of Machine Learning and Networking.
UGC NET History Solved Previous Year Papers | 25+ Papers | 2012 Onwards | On Page Solutions
There are global concerns about the proliferation and misuse of club drugs and novel psychoactive substances, yet we know little about their harms and research on clinical management and treatment remains limited. This book fills the knowledge gap by providing a detailed overview of the research evidence available to date. The book provides a framework that allows readers to understand this large number of new drugs, using classifications based on primary psychoactive effect. Within this framework, the book provides detailed reviews of the more commonly used drugs. Each chapter explores pharmacology, patterns and mode of use, acute and chronic harms, and clinical interventions supported by research evidence. An invaluable resource for clinical staff, this book will support clinicians working in the emergency department, substance misuse and addiction services, mental health services, primary care, sexual health services and more. It will also be of interest to academics and those developing drug policy.
The global miniature devices market is poised to surpass a valuation of $12–$15 billion USD by the year 2030. Lab-on-a-chip (LOC) devices are a vital component of this market. Comprising a network of microchannels, electrical circuits, sensors, and electrodes, LOC is a miniaturized integrated device platform used to streamline day-to-day laboratory functions, run cost-effective clinical analyses and curb the need for centralized instrumentation facilities in remote areas. Compact design, portability, ease of operation, low sample volume, short reaction time, and parallel investigation stand as the pivotal factors driving the widespread acceptance of LOC within the biomedical community. In this book, the Editors meticulously explore LOC through three key ‘Ts’: Theories (microfluidics, microarrays, instrumentation, software); Technologies (additive manufacturing, artificial intelligence, computational thinking, smart consumables, scale-up tactics, and biofouling); and Trends (biomedical analysis, point-of-care diagnostics, personalized healthcare, bioactive synthesis, disease diagnosis, and space applications) This comprehensive text not only provides readers with a thorough understanding of the current advancements in the LOC domain but also offers valuable insights to support the utilization of miniaturized devices for enhanced healthcare practices. Aimed at career researchers looking for instruction in the topic and newcomers to the area, the book is also useful for undergraduate and postgraduate students embarking on new studies or for those interested in reading about the LOC platform.
This book is intended as an innovative overview of current formal verification methods, combined with an in-depth analysis of some advanced techniques to improve the scalability of these methods, and close the gap between design and verification in computer-aided design. Formal Verification: Scalable Hardware Verification with Symbolic Simulation explains current formal verification methods and provides an in-depth analysis of some advanced techniques to improve the scalability of these methods and close the gap between design and verification in computer-aided design. It provides the theoretical background required to present such methods and advanced techniques, i.e. Boolean function representations, models of sequential networks and, in particular, some novel algorithms to expose the disjoint support decompositions of Boolean functions, used in one of the scalable approaches.