Of all the characters bequeathed to us by the Hebrew Bible, none is more compelling or complex than David. Divinely blessed, musically gifted, brave, and eloquent, David's famous slaying of Goliath also confirms that he is a redoubtable man of war. Yet, when his son Absalom rebels, David is dogged by the accusation than he will lose his kingdom because he is not merely a man of war, but a man of 'bloods' - guilty of shedding innocent blood. In this book, for the first time, this language of 'innocent blood' and 'bloodguilt' is traced throughout David's story in the books of Samuel and 1 Kings. The theme emerges initially in Saul's pursuit of David and resurfaces regularly as David rises and men like Nabal, Saul, Ishbosheth, and Abner fall. Innocent blood and bloodguilt also turn out to be central to David's reign. This is seen in a surprising way in David's killing of Uriah, but also in the subsequent deaths of his sons, Amnon and Absalom, his general, Amasa, and even in David's encounters with Shimei. The problem rears its head again when the innocent blood of the Gibeonites shed by Saul comes back to haunt David's kingdom. Finally, the problem reappears when Solomon succeeds David and orchestrates the executions of Joab and Shimei, and the exile of Abiathar. Attending carefully to the text and drawing extensively on previous biblical scholarship, David J. Shepherd suggests that innocent blood is not only a pre-eminent concern of David, and his story in Samuel and 1 Kings, but also shapes the entirety of David's history.
The musings and wisdom of a personal journey.From the Publisher:David A Britner, a man that many affectionately call “my guru,” shares his favorite stories and experiences in easy to understand writings that effectively open the doorway to metaphysical concepts and ideas that anyone can understand.
This book addresses higher–lower level decision autonomy for autonomous vehicles, and discusses the addition of a novel architecture to cover both levels. The proposed framework’s performance and stability are subsequently investigated by employing different meta-heuristic algorithms. The performance of the proposed architecture is shown to be largely independent of the algorithms employed; the use of diverse algorithms (subjected to the real-time performance of the algorithm) does not negatively affect the system’s real-time performance. By analyzing the simulation results, the book demonstrates that the proposed model provides perfect mission timing and task management, while also guaranteeing secure deployment. Although mainly intended as a research work, the book’s review chapters and the new approaches developed here are also suitable for use in courses for advanced undergraduate or graduate students.
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