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Enhanced attitude tracking control of spacecraft via inner and outer loop sliding mode design. [PDF]
Fang X, Wen M.
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Can Asymmetrical Mechanical Loading Be Accurately Inferred From the Analysis of Skeletal Material? [PDF]
Profico A, Jeffery N, Karakostis FA.
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Between stethoscope and algorithm: is Canadian medical education ready for AI-enabled care? [PDF]
Khan A.
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Scaling and mechanical optimality of bristled wings in microinsects. [PDF]
Kolomenskiy D +3 more
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Adaptive hierarchical filtering particle swarm optimization for multiple magnetic dipoles modeling of space equipment. [PDF]
Liu Y +6 more
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Development of intelligent controller for high performance electric drives with hybrid CSA and RERNN technique. [PDF]
Prabhakaran J +3 more
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Progress of Theoretical Physics, 1959
The problem of nuclear moments of inertia is considered taking into account the effect of the internal motion phenomenologically. The kinetic energy of the internal motion is assumed to take the form of that of a symmetrical top. When the interactions between the irrotational and the internal motions are strong, the total system has a rotational energy
Miyazima, Tatuoki, Wada, Yasushi
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The problem of nuclear moments of inertia is considered taking into account the effect of the internal motion phenomenologically. The kinetic energy of the internal motion is assumed to take the form of that of a symmetrical top. When the interactions between the irrotational and the internal motions are strong, the total system has a rotational energy
Miyazima, Tatuoki, Wada, Yasushi
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2016
Moments of Inertia are used in beam theories (cf. Volume 2). Moments of second order of an area A, as for example of a cross sectional area of a beam, are defined as follows.
Dietmar Gross +4 more
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Moments of Inertia are used in beam theories (cf. Volume 2). Moments of second order of an area A, as for example of a cross sectional area of a beam, are defined as follows.
Dietmar Gross +4 more
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Proceedings of the Physical Society. Section A, 1957
A formula proposed by the author for the calculation of the moment of inertia of a nuclear system is discussed. A simple calculation using the model of a deformed oscillator well for the mean nuclear potential gives the result MΣZ2 for a prolate distribution, approximately half the rigid moment; it is suggested that this result incorporates most of the
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A formula proposed by the author for the calculation of the moment of inertia of a nuclear system is discussed. A simple calculation using the model of a deformed oscillator well for the mean nuclear potential gives the result MΣZ2 for a prolate distribution, approximately half the rigid moment; it is suggested that this result incorporates most of the
openaire +2 more sources

