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The control is initialized through a previous optimization of the core of the laminated structure, in order to minimize the vibration amplitude and maximize the first natural frequency.
In the literature, most problems of structural vibration have been formulated to adjust a specific natural frequency: for example, to maximize the first natural frequency.
In this work, we propose a topology optimization method directly using the Effective Mass Density (EMD) concept to maximize the first bandgaps of two-dimensional solid Locally Resonant Acoustic Metamaterials (LRAMs).
The proposed bi-directional evolutionary structural optimization (BESO) method seeks to maximize the first natural frequencies of the acoustic-structural model by switching elements into solid, fluid or void condition.
We maximize the first eigenfrequency, or a sum of the first ones, of a bounded domain occupied by two elastic materials with a volume constraint for the most rigid one.
The objective was to maximize the first resonant frequencies of the XY-scanner to increase response speed while limiting the size of the scanner to 100 mm × 100 mm × 50 mm.
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As the renowned glaciologist Lonnie Thompson put it, "the only question is how much we will mitigate, adapt, and suffer". Allowing for more denial and less action will maximize the third variable in that equation.
The second-law performance of the storage system can be improved, and potentially impractical operating conditions needed to maximize the second-law performance of the LHTES system can be avoided by modifying the heat transfer design of the energy storage system.
To maximize the second-law performance of a particular latent heat storage system associated with a specific charging temperature, it is shown that a specific phase change temperature must be used in conjunction with a specific heat transfer fluid (HTF) inlet temperature during the discharge process, and a specific charging time.
They are chosen to maximize the second-period part of the principal's expected gross output, (a_{2},) net of its costs and subject to the incentive constraint for second-period effort.
However, the dimensionless tapering parameter maximizing the first and second law efficiencies does not maximize the device output power.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com