Adaptive fractional-order non-singular terminal sliding mode control for omnidirectional quadrotors based on WRBF neural network. [PDF]
Ma R, Gu Q, Ding L, Li Y, Sun C, Wu H.
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Liquid‐Mediated Sintering of SnO2 Scaffolds for Hybrid Integration of Conductive Cu3(HHTP)2
A versatile strategy for creating hybrid metal–oxide/metal‐organic framework architectures by combining flame spray pyrolysis with liquid‐mediated sintering and vapor‐assisted growth. Porous SnO2 films are transformed into mechanically robust nano–microcluster arrays that are interconnected with conductive Cu3(HHTP)2.
Luke J. Taglini +4 more
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Lumped-parameter model as a non-invasive tool to assess coronary blood flow in AAOCA patients
Valentina Ceserani +14 more
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As human‐modified landscape and climate changes proliferate, maintaining biodiversity and understanding the function and quality of available habitat is imperative. As anurans (frogs/toads) such as Pseudacris crucifer, can be an indicator species of habitat quality and ecosystem productivity, studying the anuran community in a mixed‐land use region ...
Brian C. Kron, Karen V. Root
wiley +1 more source
Computational Modelling of Cancer Nanomedicine: Integrating Hyperthermia Treatment Into a Multiphase Porous-Media Tumour Model. [PDF]
Wirthl B +3 more
europepmc +1 more source
Unraveling Heat Integration Opportunities in SOFC-Ethanol Reformer Systems across Steam Reforming, Partial Oxidation, and Autothermal Reforming Pathways. [PDF]
Beathalter EF +4 more
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A mechanical lumped-element model of the human middle ear for bone conduction hearing. [PDF]
Guan X.
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Lumped Parameter Building Model Calibration using Particle Swarm Optimization
Carlos Andrade-Cabrera +4 more
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Lumped parameter model of cardiovascular-respiratory interaction
2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), 2013The aim of this work was to develop a lumped parameter model of the cardiovascular system and to couple it with a model of respiratory mechanics. In comparison to existing models, modifications and additions have been implemented to include a model of the upper limb vasculature employing the electrical analogy of hemodynamic variables.
Fabrizio, Gaudenzi, Alberto P, Avolio
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