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    the equilibrium between water and its vapour in an open vessel

    Mohammed

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    Can equilibrium be achieved between water and its vapours in an open vessel ? Explain yours answer and say what happens eventuallly.

    No: equilibrium cannot be achieved between water and its vapours in an open vesel. Since water vapours are escaping out of the container, to take their place more of liquid water changes to vapours. This process continous till the entire water has changed to the vapours.

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    Can equilibrium be achieved be...

    Can equilibrium be achieved between water and its vapours in an open vessel ? Explain yours answer and say what happens eventuallly.

    Updated On: 27-06-2022

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    No: equilibrium cannot be achieved between water and its vapours in an open vesel. Since water vapours are escaping out of the container, to take their place more of liquid water changes to vapours. This process continous till the entire water has changed to the vapours.

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    The equilibrium between water and its vapour, in an open vessel 1. Can be achieved 2. Depends upon pressure 3. Cannot be achieved 4. Depends upon temperature Equilibrium Chemistry (2021) NEET Practice Questions, MCQs, Past Year Questions (PYQs), NCERT Questions, Question Bank, Class 11 and Class 12 Questions, and PDF solved with answers

    The equilibrium between water and its vapour, in an open vessel 1. Can be achieved 2. Depends upon pressure 3. Cannot be achieved 4. Depends upon temperature Equilibrium Chemistry (2021) Practice questions, MCQs, Past Year Questions (PYQs), NCERT Questions, Question Bank, Class 11 and Class 12 Questions, NCERT Exemplar Questions and PDF Questions with answers, solutions, explanations, NCERT reference and difficulty level

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    « First ‹ Previous 1 (current) 2 3 4 5 6 7 8 9 10 11 › Next » Last Q. No.

    The equilibrium between water and its vapour, in an open vessel

    1. Can be achieved

    2. Depends upon pressure

    3. Cannot be achieved

    4. Depends upon temperature

    Q280: 66% From NCERT

    Subtopic:  Introduction To Equilibrium |

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    High Yield NEET MCQ Books for 11th Physics & Chemistry

    Which of the following equilibrium, in gaseous phase, would be unaffected by an increase in pressure?

    1. N 2 + 3 H 2 ⇌ 2 NH 3 N2+3H2⇌2NH3 2. N 2 + O 2 ⇌ 2 NO N2+O2⇌2NO 3. N 2 O 4 ⇌ 2 NO 2 N2O4⇌2NO2 4. CO 2 + 1 2 O 2 ⇌ CO 2 CO2+12O2⇌CO2 Q281: 87% From NCERT

    Subtopic:  Kp, Kc & Factors Affecting them |

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    A saturated solution of non-radioactive sugar was taken and a little radioactive sugar was added to it. A small amount of it gets dissolved in solution and an equal amount of sugar was precipitated. This proves

    1. The equilibrium has not been established in the solution

    2. Radioactive sugar can displace non-radioactive sugar from its solution.

    3. Equilibrium is dynamic in nature

    4. None of the above

    Q282: 66% From NCERT

    Subtopic:  Introduction To Equilibrium |

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    High Yield NEET MCQ Books for 11th Physics & Chemistry

    When two reactants A and B are mixed to give products C and D, the reaction quotient Q, at the initial stages of the reaction

    1. is zero

    2. decreases with time

    3. is independent of time

    4. increases with time

    Q283: 50% From NCERT

    Subtopic:  Introduction To Equilibrium |

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    A vessel at equilibrium, contains SO3, SO2 and O2. Now some helium gas is added, so that total pressure increasese while temperature and volume remain constant. According to Le Chatelier's Principle, the dissociation of SO3

    1. Decreases

    2. Remains unaltered

    3. Increases

    4. Change unpredictably

    Q284: 70% From NCERT

    Subtopic:  Introduction To Equilibrium |

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    A chemical reaction is catalysed by a catalyst X. Hence, X

    1. Increases activation energy of the reaction

    2. Does not effect equilibrium constant of the reaction

    3. Decreases rate constant of the reaction

    4. Reduces enthalpy of the reaction

    Q285: 86% From NCERT

    Subtopic:  Kp, Kc & Factors Affecting them |

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    If for the reaction given below

    2 PQ g ⇌ P 2 g + Q 2 ; g K 1 = 2 . 5 × 10 5 PQ g + 1 2 R 2 g ⇌ PQR ; g K 2 = 5 × 10 − 3

    2PQ   g⇌    P2  g+   Q2 ;     gK1=2.5×105PQ   g+    12R2     g⇌  PQR;   gK2=5×10-3

    find K3 for the reaction

    1 2 P 2 + 1 2 Q 2 + 1 2 R 2 ⇌ PQR

    12P2  +  12Q2  +12R2  ⇌  PQR

    1. 2 . 5 × 10 − 3 2.5×10-3 2. 2 . 5 × 10 3 2.5×103 3. 1 × 10 − 5 1×10-5 4. 5 × 10 − 3 5×10-3 Q286: 80% From NCERT

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