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The data are compared and discussed for the three different plasma gases.
The wind velocity conditions under which QP galloping occurs are discussed for the three cases of excitation.
Plots of the sloshing frequencies as functions of the container aspect ratio and baffle extension are presented and discussed for the three lowest antisymmetric and symmetric transverse oscillation modes.
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The main characteristic of this type of reactor are discussed for the two examples.
This aspect is discussed for the six combinations of the boundary conditions.
Run-time complexity and memory requirements are discussed for the two protocol implementations, and tradeoffs are analyzed.
Numerical results are given and discussed for the two most frequently utilized measures and for the three adopted stress-strain relationships modeling the uniaxial tension test.
Assuming Newtonian behaviour of liquid precursor, the relationship between properties of the materials used and the given conditions were discussed for the two pore models mentioned above.
Extensive numerical estimates of the local and average Nusselt numbers as functions of the physical, rheological and kinematic variables have been presented and discussed for the two commonly employed thermal boundary conditions.
Five geological considerations are then discussed for the two volcanic fields that then form the underlying assumptions and related uncertainties for each fitted boundary.
This reduction, also observed by others researchers [6] [8], appears to have been influenced by the same historical reasons discussed for the four first premolar extractions protocol.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com