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The Chemical Engineering Theory section is launching the \"One Question per Day\" campaign starting today, aimed at helping everyone reinforce their basic knowledge in chemical engineering. Subsequent series will include those on \"Principles of Chemical Engineering\", \"Mass Transfer and Separation\", \"Thermodynamics in Chemical Engineering\", and \"Chemical Process Engineering\". We hope for your active support! Answers to the questions in the \"One Question per Day\" campaign can be viewed directly by replying, and this thread will be closed after 1 day ! Participation earns 2 wealth points, with an additional 3 wealth points for correct answers~~~ Fill-in-the-blank question: Since the partial pressure of the solute in the gas phase during the absorption process is always ____ greater than the equilibrium partial pressure of the solute in the liquid phase, the absorption operation line is always located ____ the equilibrium line. Greater than Above
Since the total solute partial pressure in the gas phase during the absorption process is always _greater than_ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always located _above_ the equilibrium line.
Since the total solute partial pressure in the gas phase during the absorption process is (greater than) the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always above the equilibrium line.
The vapor-phase solute partial pressure is greater than the liquid-phase equilibrium partial pressure; the operation lies above the equilibrium line
Since the solute partial pressure in the gas phase during the absorption process is always _higher than__ the equilibrium partial pressure of the solute in the liquid phase, the absorption operation line is always _above_ the equilibrium line.
For these two blanks, once it means higher, above
Since the partial pressure of the solute in the gas phase during the absorption process is always _higher than_ the equilibrium partial pressure of the solute in the liquid phase, the absorption operation line is always _above_ the equilibrium line.
Since the total solute partial pressure in the gas phase during the absorption process is always __ higher than __ the equilibrium solute partial pressure in the liquid phase, the absorption operation line is always located __ above the equilibrium line.