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The aim of the presented work is to develop an ultrasonic imaging system for contour detection of specularly reflecting sheet metal surfaces and surface contour tracking during a continuous hydroforming process.
The objective of the presented work is to develop an efficient and validated approach based on a multi-dimensional computational fluid dynamics (CFD) code for predicting turbulent gaseous dispersion, conjugated heat and mass transfer, multi-phase flow, and combustion of hydrogen mixtures.
The main goal of the presented work is to develop special tool which allows engineers to perform simulations in order to evaluate displacements and stresses of aircraft parts on the assembly line.
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The objective of the presented work was to develop an interactive application that would support decisions made by sprayer manufacturers during the production process, and by pesticide applicators when selecting and operating the sprayers.
Therefore the purpose of the presented work was to develop a simple and well-organized method at room temperature and pressure (without HCl, heating) to develop 99mTc-ofloxacin, its optimization producing high labeling efficiency and greater stability (low colloidal in serum), and its biodistribution in Salmonella typhi, Pseudomonas aeruginosa, and E. coli infected rabbits.
The objective of the present work is to develop an extended-release dosage form of cevimeline.
The goal of the present work is to develop an effective design for tailor-made CEMs for RED applications.
The main purpose of the present work is to develop an efficient computational method for generating correlated stress time histories for aircraft structures under gust loads.
The aim of the present work is to develop a cost effective and low-temperature manufacturing process to synthesize boron carbide from cheap and easily available raw materials.
The purpose of the present work is to develop an efficient computational strategy in order to rapidly construct and numerically simulate multiscale representations of this class of materials.
The aim of the present work is to develop the SD process, which prevents flow instability of the ECAD and imposes a high plastic deformation on the material.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com