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The connecting lines are modeled as electric resistances.
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The radiating E element is modeled as perfect electric conductor.
Once the two QDs are excited and start to emit photon coherently, they are modeled as two electric dipoles with a phase difference in our analysis.
In the following analysis, the two emitting QDs are modeled as two electric dipoles (bi-dipole) and the two-level emitters.
Dominant dc electric fields from these living organisms result from the separation of ionic charges in the body and can be modeled as a dipole electric field at distance.
These two QDs are modeled as two identical electric-dipole emitters, oscillating with some possible phase differences.
The vesicle membrane is modeled as an inextensible elastic interface with an electric capacitance and an electric conductance.
The monthly electric demand is modeled as a load duration curve.
The nonuniform electric field is modeled as a two-dimensional linear field commonly developed in wire-cylinder and wire-plate electrodes systems.
The conducting sheet is modeled as an idealized hypersurface with an effective electric conductivity.
The results show that the best defrosting mode enhances the defrosting speed by about 50% more than the original electric heating model as well as reduces defrosting electric power consumption by about 71%.
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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