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Shape analysis of the amygdala, hippocampus and thalamus in former American football players. [PDF]
John O +26 more
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Phenotyping Viral Reservoirs to Reveal HIV-1 Hiding Places. [PDF]
Chen W, Berkhout B, Pasternak AO.
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Bridging Science and Hope: integrating and Communicating Lived experience in Accelerating Medicines Partnership® Schizophrenia Program. [PDF]
Asgari-Targhi A +44 more
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Response study of tower crane and elastic plate under dynamic complicated excitation. [PDF]
Liu F, Chen H.
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Hypar Shell on Pasternak Foundation
Journal of Engineering Mechanics, 1992This paper deals with nonlinear static and dynamic analysis of hyperbolic paraboloid shells on Pasternak foundations. The governing differential equation of a hypar shell on a Pasternak foundation is reduced to that of a plate on a double elastic foundation.
D. N. Paliwal, S. N. Sinha, A. Ahmad
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Fractional modeling of Pasternak-type viscoelastic foundation
Mechanics of Time-Dependent Materials, 2016In this paper, we propose a fractional Pasternak-type foundation model to characterize the time-dependent properties of the viscoelastic foundation. With varying fractional orders, the proposed model can govern the traditional Winkler model, Pasternak model, and viscoelastic model.
Wei Cai, Wen Chen, Wenxiang Xu
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Shallow Spherical Shells on Pasternak Foundation
Journal of Engineering Mechanics, 1986Static and dynamic analysis of fully clamped shallow spherical shells, subjected to uniform normal pressure on concave side and continuously supported on Pasternak foundation on the convex side, is made using Berger's and modified Berger's techniques.
D. N. Paliwal +2 more
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Natural frequencies of Timoshenko beams on pasternak foundations
Journal of Sound and Vibration, 1977A study of the natural vibrations of a Timoshenko beam on a Pasternak-type foundation is presented. Frequency equations are derived for beams with different end restraints. A specific example is given to show the effects of rotary inertia, shear deformation, and foundation constants on the natural frequencies of the beam.
Wang, T. M., Stephens, J. E.
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