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An FPGA provides physical solutions for most image processing problems and offers a new hardware acceleration opportunity.
Combining the spreading parameter definition with the Young relation yields the Young Dupré equation: S\ = \gamma_{LG}(\cos\theta-1) which only has physical solutions for θ when S < 0. Unlike ideal surfaces, real surfaces do not have perfect smoothness, rigidity, or chemical homogeneity.
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In this work a methodology for storing and retrieving physical solution for a given design parameters is proposed.
Finding a physical solution for complex social problems has been one of the dominant approaches in planning experiences since the beginning of 20th century.
This leaves only one physical solution for (30).
The above equation yields a unique physical solution for εeff in the absence of gain.
The novelty of this formulation is the fact that it always converges to the physical solution, even for singular ones.
In this work, a novel strategy is proposed for finding all physical solutions within the variable bounds.
The BP model is hypothesized to account for bubble stability, thus providing physical solutions.
This research shows these steps clearly to reach acceptable physical analytic solutions for calculating the friction factor and pipe diameter.
This efficient and responsive platform design is suitable for cognitive radio physical layer solutions for opportunistic networks.
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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