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First, a detailed theoretical equation was derived to determine the sound pressure distribution from the transducer.
New analytical model of ovalisation plateau in phase 2 was derived to determine the ultimate moment.
A mathematical model was derived to estimate the soil infiltration rate from the wetted soil surface.
Using experimental data, an empirical model was derived to calculate steam-water capillary pressure directly.
A new limit for the neutrino magnetic moment was derived to: μν < 1.0×10−10μB.
An analytical solution was derived to efficiently analyze the effects of a double-layered buffer.
Further, the BDW energy was derived to characterise the fluid dynamic in meso-scale.
Subsequently, a closed-form solution was derived to obtain the stiffness coefficient of equivalent boundary springs.
A mathematical model was derived to explain the transport phenomena occurring in the hybrid process.
Based on this, an MRR-based cost model for orthogonal turning was derived to drive optimal machining setups.
Therefore, an equation was derived to calculate the values of the peak pressure at large distances for each explosion case.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com