9/9/2023 0 Comments Abscissa counterpartClick the answer to find similar crossword clues. Enter the length or pattern for better results. The Crossword Solver finds answers to classic crosswords and cryptic crossword puzzles. Though the equivolatility diagram is quite sensitive to the thermodynamic model chosen, the choice of which is a better entrainer is not. Abscissa's counterpart Crossword Clue The Crossword Solver found answers to Abscissa's counterpart crossword clue. This modulus may be thought of as stiffness, or a materials resistance to elastic deformation. The slope of this linear segment corresponds to the modulus of elasticity E. (abscissa) results in a linear relationship. Additional information, consistent with the results obtained by plotting the pseudo-equilibrium data, can be obtained form the equivolatility diagram: (1) for both entrainers, will be the distillate product of the extractive column, since the isovolatility curve intersects the - edge (2) higher relative volatilities are obtained with, indicating that it is a better entrainer than and (3) the abscissa of the magenta (green) dot ( and for and, respectively) corresponds to the minimum amount of ( ) needed to break the azeotrope. The units for shear stress and strain are the same as for their tensile counterparts. The position of the green and magenta dots on the - edge of the triangular diagram indicates that less is required to break the azeotrope. This optimal entrainer is confirmed by looking at equivolatility diagrams. By varying the amount of entrainer, it is clear that the cyan dot disappears first, which indicates that is the preferred entrainer (i.e., lower entrainer to azeotropic feed molar flow ratio, and lower energy consumption in the entrainer recovery column), resulting in a more economical separation. As the amount of entrainer is increased, the location of the intersection of the pseudo-equilibrium plot with the 45° line (represented by a cyan ( ) or orange ( ) dot) (see snapshot 3) moves to higher mole fractions of, and then eventually disappears. In this plot, the blue and red curves are the pseudo-equilibrium plots for with the addition of and, respectively. Holotype: Female, PIN, 3901/77 (part and counterpart) wasp well pre. The pseudo-equilibrium curve represents the mole fraction of on a entrainer-free basis in the vapor phase ( ) versus its liquid phase counterpart ( ). vein of the fore wing 3SR, second abscissa of radial vein of the fore wing a. The nonideal thermodynamic properties of the ternary system are accounted for using a Wilson model (parameter values are taken from the Aspen thermodynamic database). In this Demonstration, we evaluate two entrainers: dimethyl sulfoxide ( ) and ethylene glycol ( ).
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