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The relationships between optimal average porosity, cycle period and volume-averaged pore diameter are determined and explained.
Polarization conversion properties of II-shaped and V-shaped dimers are determined and explained in terms of elliptically polarized eigenmodes of the metamaterial.
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Also, the secondary flows inside the bend of the U-pipe were determined and explained.
Thermodynamic functions and activation parameters such as: E a, ΔH*, ΔS* and ΔG* at temperatures 303, 313, 323 and 333 K were determined and explained.
The failed gear was examined, the reasons for the failure were determined and preventive methods were explained.
The kinetic parameters were determined and were able to explain the variations in conversion at iso-contact time and selectivity at iso-conversion for the different catalysts.
The dominating mechanisms behind the stiffening behavior were determined, and ultimately used to explain the response of SCC for lab-scale simulations of formwork pressure.
So explaining how content is determined and how the possibility of error are accommodated are not separate tasks.
The influence of surface morphology on capacitance and internal resistance was also determined and explained on the basis of redox reactions in these electrolytes.
As in the previous case, the multipath blind and visible zones can be inferred from Figure 6a d, and are determined as explained in the paragraph following (21).
By this study, adiabatic compressibility (β s), apparent molar compressibility (ϕk) and specific acoustic impedance (Z) acoustic properties are determined which explain how these interactions occur and responsible for breaking and making of the structure in the solution.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com