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Metal spinning, also known as spin forming or spinning or metal turning most commonly, is a metalworking process by which a disc or tube of metal is rotated at high speed and formed into an axially symmetric part. [1]
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If H 2 (M,Z 2) vanishes, M is spin. For example, S n is spin for all . (Note that S 2 is also spin, but for different reasons; see below.) The complex projective plane CP 2 is not spin. More generally, all even-dimensional complex projective spaces CP 2n are not spin. All odd-dimensional complex projective spaces CP 2n+1 are spin.
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For example, for the standard ferromagnetic Potts model in , a phase transition exists for all real values , [7] with the critical point at = (+). The phase transition is continuous (second order) for 1 ≤ q ≤ 4 {\displaystyle 1\leq q\leq 4} [ 8 ] and discontinuous (first order) for q > 4 {\displaystyle q>4} .
For example, renormalization in QED modifies the mass of the free field electron to match that of a physical electron (with an electromagnetic field), and will in doing so add a term to the free field Lagrangian which must be cancelled by a counterterm in the interaction Lagrangian, that then shows up as a two-line vertex in the Feynman diagrams.
The general mathematical formalism used to describe and solve the Heisenberg model and certain generalizations is developed in the article on the Potts model.; In the continuum limit the Heisenberg model (2) gives the following equation of motion
For example, here is an article about the specific conditions that were found to work well for melt spinning Fe-B and Fe-Si-B alloys. In general, melt spinners will run with some variation in the following variables depending on the desired product.