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Zhang (Georgia Southern U., US) hopes to accomplish three goals with this volume. One is to add a piece of firework to the centennial celebrations of general relativity; to introduce a deeper theory that transcends spacetime; and to reveal the ubiquitous effects of quantum entanglement in simple logical comprehendible terms. Distinguishing it from the spacetime geometry proposed by Galileo, Newton, Lorenz, and Einstein, he characterizes YinYang bipolar geometry as an equilibrium-based unifying computing paradigm with a minimal but most general axiomatization of physics. Among his topics are the quest for definable causality, bipolar quantum lattice and dynamic triangular norms, and bipolar quantum linear algebra and cellular automata. Annotation c2011 Book News, Inc., Portland, OR (booknews.com)