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Titlebook: Geometric Algebra with Applications in Science and Engineering; Eduardo Bayro Corrochano,Garret Sobczyk Book 2001 Birkhäuser Boston 2001 A

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Geometric Algebra in Quantum Information Processing by Nuclear Magnetic Resonanceadox does not violate special relativity because it cannot be used to transmit . faster than light [., .]. Over the last few years, physicists have begun to systematically apply these concepts to quantum systems. This was initiated by the discovery, due to Benioff [.], Feynman [.] and Deutsch [.], t
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ctrodynamics and relativity taught by Hestenes at Arizona State University from 1966 to 1967. He still vividly remembers a feeling of disbelief that the fundamental geometric product of vectors could have been left out of his undergraduate mathematics education. Geometric algebra provides a rich, general math978-1-4612-6639-6978-1-4612-0159-5
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Geometric Algebra in Quantum Information Processing by Nuclear Magnetic Resonanceryptographic, communication, and computational feats that are widely believed to be classically impossible [., ., ., ., ., .], as shown for example by the polynomial-time quantum algorithm for integer factorization due to Shor [.]. As a result, the field has now been the subject of numerous popular
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Modelling & Control of the U.K. Economy,e most important Lie algebras [.]. Using the bivector representation of a Lie operator, we can easily compute a variety of invariants useful in robotics and image analysis. In our study of rigid motion in the .-dimensional affine plane, we use both the structure of the Lie algebra alongside the oper
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https://doi.org/10.1007/978-1-4471-2037-7ryptographic, communication, and computational feats that are widely believed to be classically impossible [., ., ., ., ., .], as shown for example by the polynomial-time quantum algorithm for integer factorization due to Shor [.]. As a result, the field has now been the subject of numerous popular
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