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Titlebook: Hyperbolic Triangle Centers; The Special Relativi A.A. Ungar Book 2010 Springer Science+Business Media B.V. 2010 Application special relati

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A. A. Ungaretic probes are reviewed in which structured solvent in small molecule and macromolecular complexes have been identified and characterized. By determination of the principal hyperfine (hf) coupling components . of magnetic nuclei in the vicinity of the paramagnetic probe, electron-nucleus distances
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A. A. Ungartes, thanks to its full compatibility with standard CMOS technology. Conventional on-chip RC oscillators combine resistors with complementary temperature coefficients to achieve a low-temperature coefficient (TC). While this can successfully eliminate the first-order temperature dependency after a t
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A. A. Ungartes, thanks to its full compatibility with standard CMOS technology. Conventional on-chip RC oscillators combine resistors with complementary temperature coefficients to achieve a low-temperature coefficient (TC). While this can successfully eliminate the first-order temperature dependency after a t
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lers. While quartz crystal-based references can achieve the desired performance, they are bulky and expensive and suffer from a long start-up time. Hence, techniques for implementing power-efficient frequency references that can be fully integrated in standard CMOS technology and achieve excellent f
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Einstein Gyrovector Spacesn gyrovector spaces. As an example, Einstein scalar multiplication enables hyperbolic lines to be calculated with respect to Cartesian coordinates just as Euclidean lines are calculated with respect to Cartesian coordinates. Along with remarkable analogies that Einstein scalar multiplication shares
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Euclidean and Hyperbolic Barycentric Coordinatesrticle system in classical mechanics, and Theorem 3.2, p. 64, about the mass and the center of momentum velocity of a particle system in relativistic mechanics. Theorem 3.3 naturally suggests the introduction of the concept of barycentric coordinates into Euclidean geometry. Guided by analogies, we
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