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A surface model of nonlinear, non-steady-state phloem transport
Published 2017-07-01Subjects: Get full text
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342
Mathematical Modeling of Eigenvibrations of the Shallow Shell with an Attached Oscillator
Published 2024-01-01Subjects: Get full text
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Effect of different restorative design on stress concentration of lithium disilicate and monolithic zirconia endocrown on a mandibular molar - a finite element analysis
Published 2025-02-01“…Different restorative materials were used on a mandibular molar using a finite element analysis. Methods A 3D FEA model of mandibular molar was constructed using the average values and was used in this analysis. 2 materials were used which were lithium disilicate and zirconia and 2 different margin design of knife edge and shoulder margins were used in various combinations of material and margin design. …”
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345
Biomechanical Performance of Mandibular Molars with Deep Mesio-Occlusal-Distal Cavities Rehabilitated with Horizontal Posts: A 3D Finite Element Analysis
Published 2023-01-01“…Materials and Methods. The finite element (FE) stress analysis was performed with the ANSYS, a commercial finite element method package. …”
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The Effect of Abutment Angulation and Crown Material Compositions on Stress Distribution in 3-Unit Fixed Implant-Supported Prostheses: A Finite Element Analysis
Published 2022-01-01“…Materials and Methods. In this finite element study, the six different solid 3D models of “mandibular 3-unit fixed implant-supported prostheses” were analyzed. …”
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Accurate Numerical Solutions for Standard Skew Plate Benchmark Problems
Published 2022-12-01Subjects: Get full text
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355
Investigating Stability Problems in Solid Waste Landfills
Published 2025-01-01Subjects: Get full text
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356
An Efficient GPU-Accelerated Algorithm for Solving Dynamic Response of Fluid-Saturated Porous Media
Published 2025-01-01Subjects: Get full text
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357
Novel design of drug delivery in stented arteries:A numerical comparative study
Published 2009-05-01Subjects: Get full text
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A Novel Rat Model of Orthodontic Tooth Movement Using Temporary Skeletal Anchorage Devices: 3D Finite Element Analysis and In Vivo Validation
Published 2014-01-01“…The aim of this animal study was to develop a model of orthodontic tooth movement using a microimplant as a TSAD in rodents. A finite element model of the TSAD in alveolar bone was built using μCT images of rat maxilla to determine the von Mises stresses and displacement in the alveolar bone surrounding the TSAD. …”
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