Results 211 to 220 of about 4,621 (264)
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2019 Chinese Control Conference (CCC), 2019
The calculation formula of the stator-winding self-induction coefficient of salient-pole synchronous generator is deduced based on the motor unified theory. However, there is a certain deficiency, that is, the analysis of the high-order term is abandoned, which produces errors.
Chang Sheng Yuan +2 more
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The calculation formula of the stator-winding self-induction coefficient of salient-pole synchronous generator is deduced based on the motor unified theory. However, there is a certain deficiency, that is, the analysis of the high-order term is abandoned, which produces errors.
Chang Sheng Yuan +2 more
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Identification of Coefficient of Self Inductance
Applied Mechanics and Materials, 2014The self-inductance is the inherent phenomenon in a wire. Through the comparison of two kinds of method for solving the self-inductance, stated that note in the current contribution rate problem in the process by the first method to solve the self-inductance coefficient.
Hui Qiu Du +3 more
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Self-Inductance of a Racetrack Coil
IEEE Transactions on Applied Superconductivity, 2012Superconducting racetrack coils are used for magnetic levitation, magnetic resonance imaging, etc. When using racetrack coils, it is important to determine the coil characteristics (the resistance, self-inductance, mutual inductance, and distributed capacity of the coil).
K. Ishida +4 more
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Self-inductance of chiral conducting nanotubes
Physical Review B, 1999Chiral conductivity in nanotubes has recently been predicted theoretically. The realization and application of chiral conducting nanotubes can be of great interest from both fundamental and technological viewpoints. These chiral currents, if they are realized, can be detected by measuring the self-inductance.
Yoshiyuki Miyamoto +3 more
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Alternating Asymmetric Self‐Induction in Functionalized Pyrrolidine Oligomers
Angewandte Chemie International Edition, 2013Artificial structurally well-defined polymers have excited interest as functional mimetics of natural biomacromolecules, exhibiting additional properties not occurring in the living world. Specific conformational organization of natural and synthetic polymeric objects leading to unique folding accounts for the molecular recognition, which is one of the
Kudryavtsev, K. V. +7 more
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A simulated non-linear self-inductance
Mathematics and Computers in Simulation, 1971The paper gives the description of a circuit for the simulation of self-inductances. After a discussion of several parameters influencing the quality-factor Q of the simulated self-inductance, it is shown that the circuit is also able, owing to a function generator, to simulate a non-linear self-inductance. Several records show the results which can be
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DCL v0.2.1 (Affine Field Self-Induction)
## 🔹 Abstract (EN) *Dynagénèse Complex Lambert (DCL)* establishes a self-referential computational framework where an energy-like variable \(E\) seeks its own consistency through the tautological relation \[ E = W(\phi(E)) \] with \(\phi(E)\) a morphodynamic field and \(W\) the Lambert function expressing recursive balance between self ...Royer, Patrick +1 more
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Self-inductance of the elliptical loop
Proceedings of the Institution of Electrical Engineers, 1963The paper states briefly how Maxwell's geometric mean distance is used to reduce the self-inductance of a thin conductor to that of a pair of equivalent filaments. It then develops a method for splitting the standard Neumann double integral, used for finding the inductance of such filaments, into two sets of infinite series.
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Electromagnetic levitation forces and self-inductance
British Journal of Applied Physics, 1966A self-inductance expression for electromagnetic levitation forces, F = ½ I02 [partial differntial]L[partial differntial]x is shown to be of general applicability.
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Demonstration model of self inductance using relay
Resonance, 2016Using an electrical component like a relay, the phenomenon of self inductance caneasily be demonstrated to undergraduate students. By wiring simple electrical components like relay, neon bulb and a DC power supply, intermittent back electromotive force (emf) can be generated in the range from 60 to 100 volt.
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