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Titlebook: Geometric Algebra Applications Vol. I; Computer Vision, Gra Eduardo Bayro-Corrochano Book 2019 Springer International Publishing AG, part o

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楼主: 巡洋
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Geometric Calculusfor Mathematics and Physics.) [138] may have difficulties to understand the subject and practitioners have difficulties to try the equations in certain applications. For this reason, this chapter presents the most relevant equations for applications proposed by D. Hestenes and G. Sobczyk (Hestenes a
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Lie Algebras, Lie Groups, and Algebra of IncidenceLanguage for Mathematics and Physics.) [138] Chap. 8 and a late article of Ch. Doran, D. Hestenes and F. Sommen (Doran, Hestenes, Sommen and Van Acker (1993). Journal of Mathematical Physics, 34(8), pp. 3642–3669.) [72] Sect. IV may have difficulties to understand the subject and practitioners have
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2D, 3D, and 4D Geometric Algebrasof a cubic equation in terms of conjugated complex numbers. A Norwegian surveyor, Caspar Wessel, was in 1798 the first one to represent complex numbers by points on a plane with its vertical axis imaginary and horizontal axis real. This diagram was later known as the Argand diagram, although the tru
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Kinematics of the 2D and 3D Spaces for applications in computer vision and kinematics. We start with an introduction to 4D geometric algebra for 3D kinematics. Then we reformulate, using 3D and 4D geometric algebras, the classic model for the 3D motion of vectors. Finally, we compare both models, that is, the one using 3D Euclidean
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The Geometric Algebras ,, s of Plücker coordinates and the points and planes in terms of bivectors. The reader can find a comparison of representations of points, lines, and planes using vector calculus, . and . in Chap. .. Extending the degrees of freedom of the mathematical system, in the conformal geometric algebra ., usi
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Quaternion–Clifford Fourier and Wavelet Transformssystem of the geometric algebra, it is possible to develop different kinds of Clifford Fourier and wavelet transforms which are very useful for image filtering, pattern recognition, feature detection, image segmentation, texture analysis, and image analysis in frequency and wavelet domains. These te
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Geometric Neurocomputing relationships between the physical signals of external objects and the internal signals of a biological creature by using extrinsic vectors to represent those signals coming from the world and intrinsic vectors to represent those signals originating in the internal world. We can also assume that ex
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