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In an ideal solution of A and B 3.50 mol are in the liquid phase and 4.75 mol are in the gaseous phase. The overall composition of the system is ZA = 0.300 and XA = 0.250. The mole fraction in vapour phase of YA is ____________(round off to two decimal places).
    Correct answer is between '0.30,0.40'. Can you explain this answer?
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    In an ideal solution of A and B 3.50 mol are in the liquid phase and 4...
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    In an ideal solution of A and B 3.50 mol are in the liquid phase and 4...
    Given:
    - Ideal solution of A and B
    - 3.50 mol in the liquid phase
    - 4.75 mol in the gaseous phase
    - Overall composition of the system: ZA = 0.300 and XA = 0.250

    To find:
    - Mole fraction in the vapor phase of YA (YAv)

    Solution:
    To find the mole fraction in the vapor phase of YA (YAv), we need to determine the total number of moles in the system and the number of moles of YA in the vapor phase.

    Step 1: Find the total number of moles in the system
    The total number of moles in the system can be calculated by adding the number of moles in the liquid phase (nL) and the number of moles in the gaseous phase (nG).
    n = nL + nG
    n = 3.50 mol + 4.75 mol
    n = 8.25 mol

    Step 2: Find the number of moles of YA in the vapor phase
    The number of moles of YA in the vapor phase can be calculated using the overall composition of the system and the mole fraction of YA in the liquid phase (XL).
    XL = XA * ZA
    XL = 0.250 * 0.300
    XL = 0.075
    Since the system is an ideal solution, the mole fraction of YA in the vapor phase (YAv) will be the same as the mole fraction of YA in the liquid phase (XL).
    YAv = XL = 0.075

    Step 3: Round off the answer
    The correct answer is between 0.30 and 0.40. Since YAv = 0.075, it falls within this range.

    Answer:
    The mole fraction in the vapor phase of YA (YAv) is 0.075.
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    In an ideal solution of A and B 3.50 mol are in the liquid phase and 4.75 mol are in the gaseous phase. The overall composition of the system is ZA = 0.300 and XA= 0.250. The mole fraction in vapour phase of YAis ____________(round off to two decimal places).Correct answer is between '0.30,0.40'. Can you explain this answer?
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    In an ideal solution of A and B 3.50 mol are in the liquid phase and 4.75 mol are in the gaseous phase. The overall composition of the system is ZA = 0.300 and XA= 0.250. The mole fraction in vapour phase of YAis ____________(round off to two decimal places).Correct answer is between '0.30,0.40'. Can you explain this answer? for Chemistry 2024 is part of Chemistry preparation. The Question and answers have been prepared according to the Chemistry exam syllabus. Information about In an ideal solution of A and B 3.50 mol are in the liquid phase and 4.75 mol are in the gaseous phase. The overall composition of the system is ZA = 0.300 and XA= 0.250. The mole fraction in vapour phase of YAis ____________(round off to two decimal places).Correct answer is between '0.30,0.40'. Can you explain this answer? covers all topics & solutions for Chemistry 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for In an ideal solution of A and B 3.50 mol are in the liquid phase and 4.75 mol are in the gaseous phase. The overall composition of the system is ZA = 0.300 and XA= 0.250. The mole fraction in vapour phase of YAis ____________(round off to two decimal places).Correct answer is between '0.30,0.40'. Can you explain this answer?.
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