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Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that follows
Assume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.
Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.
Condition II: both containers contain all moving molecules
Q.
Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)
  • a)
    1:1
  • b)
  • c)
  • d)
    4:1
Correct answer is option 'C'. Can you explain this answer?
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Two containers X & Y are present with container X consisting of so...
Answer c correct
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Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer?
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Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? for Class 11 2024 is part of Class 11 preparation. The Question and answers have been prepared according to the Class 11 exam syllabus. Information about Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? covers all topics & solutions for Class 11 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer?.
Solutions for Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? in English & in Hindi are available as part of our courses for Class 11. Download more important topics, notes, lectures and mock test series for Class 11 Exam by signing up for free.
Here you can find the meaning of Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer?, a detailed solution for Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? has been provided alongside types of Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice Two containers X & Y are present with container X consisting of some mass of He at some temperature while container Y having double the volume as that of container X & kept at same temperature containing same mass of H2 gas as the mass of Helium gas. Based on this data & the following conditions answer the question that followsAssume sizes of H2 molecule & He atom to be same & size of H–atom to be half to that of He–atom & only bimolecular collisions to be occuring.Condition I: all except one atom of He are stationary in cont. X & all molecules of H2 are moving in container Y.Condition II: both containers contain all moving moleculesQ. Assuming condition II then ratio of 'total no. of collisions per unit volume per unit time' in container X & container Y is (container X : container Y)a)1:1b)c)d)4:1Correct answer is option 'C'. Can you explain this answer? tests, examples and also practice Class 11 tests.
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