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Theory of matrix structural analysis

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The article was published on 1985-01-01 and is currently open access. It has received 1710 citations till now. The article focuses on the topics: Design structure matrix & Direct stiffness method.

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A hierarchical circuit-level design methodology for microelectromechanical systems

TL;DR: A circuit-level methodology for hierarchical design and nodal simulation of microelectromechanical systems (MEMS) is presented in this article, where a layout-based schematic view is introduced as a geometrically intuitive MEMS representation that is transformed into a schematic suitable for behavioral simulation.
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The bending of single layer graphene sheets: the lattice versus continuum approach

TL;DR: In this paper, the out-of-plane bending behavior of single layer graphene sheets (SLGSs) is investigated using a special equivalent atomistic-continuum model, where the C-C bonds are represented by deep shear bending and axial stretching beams and the graphene properties by a homogenization approach.
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Aerodynamic flutter analysis of suspension bridges by a modal technique

TL;DR: In this paper, a modal technique was used to predict the flutter speed of suspension bridges based on a selection of the lowest vertical and torsional natural mode shapes, which yields an unsymmetric matrix eigenvalue problem.
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Hybrid Modeling of Ball Screw Drives With Coupled Axial, Torsional, and Lateral Dynamics

TL;DR: In this paper, the lateral dynamics of the screw is explicitly incorporated into the hybrid finite element model of ball screw drives, which provides a more realistic platform for a designer to optimize the drive parameters for high speed-high acceleration machine tool applications, where the ball screw vibrations limit the fatigue life of the mechanism, bandwidth of the servo systems, and positioning accuracy of the machine.