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​The radiation corresponding to 3→2 transitions of hydrogen atoms falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of 3 × 10–4 T. If the radius of the largest circular path followed by these electrons is 10.0 mm, the work function of the metal is close to
  • a)
    1.8 eV
  • b)
    1.1 eV
  • c)
    0.8 eV
  • d)
    1.6 eV
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
The radiation corresponding to 3→2 transitions of hydrogen atoms ...


= 0.8 V
For transition between 3 to 2,
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The radiation corresponding to 3→2 transitions of hydrogen atoms ...
The radiation corresponding to 3 can refer to a few different things depending on the context. Here are a few possibilities:

1. Radioactive decay: In the context of nuclear physics, the term "radiation" often refers to the release of energy or particles from the nucleus of an atom. The radiation corresponding to 3 could signify the emission of three particles or three units of energy during radioactive decay.

2. Radiation dose: In the field of radiation protection, radiation is often measured in terms of dose. The radiation corresponding to 3 could indicate a dose of 3 units, such as 3 Gray (Gy) or 3 Sieverts (Sv), which are units used to quantify the amount of radiation absorbed by a person or object.

3. Radiation level: Radiation can also be described in terms of the level of exposure or contamination in a particular area. The radiation corresponding to 3 could represent a specific level of radiation, such as 3 microsieverts per hour (µSv/h), which is a common unit for measuring radiation levels.

Without more context, it is difficult to determine the specific meaning of "the radiation corresponding to 3."
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The radiation corresponding to 3→2 transitions of hydrogen atoms falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of 3 × 10–4 T. If the radius of the largest circular path followed by these electrons is 10.0 mm, the work function of the metal is close toa)1.8 eVb)1.1 eVc)0.8 eVd)1.6 eVCorrect answer is option 'B'. Can you explain this answer?
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The radiation corresponding to 3→2 transitions of hydrogen atoms falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of 3 × 10–4 T. If the radius of the largest circular path followed by these electrons is 10.0 mm, the work function of the metal is close toa)1.8 eVb)1.1 eVc)0.8 eVd)1.6 eVCorrect answer is option 'B'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about The radiation corresponding to 3→2 transitions of hydrogen atoms falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of 3 × 10–4 T. If the radius of the largest circular path followed by these electrons is 10.0 mm, the work function of the metal is close toa)1.8 eVb)1.1 eVc)0.8 eVd)1.6 eVCorrect answer is option 'B'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for The radiation corresponding to 3→2 transitions of hydrogen atoms falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of 3 × 10–4 T. If the radius of the largest circular path followed by these electrons is 10.0 mm, the work function of the metal is close toa)1.8 eVb)1.1 eVc)0.8 eVd)1.6 eVCorrect answer is option 'B'. Can you explain this answer?.
Solutions for The radiation corresponding to 3→2 transitions of hydrogen atoms falls on a metal surface to produce photoelectrons. These electrons are made to enter a magnetic field of 3 × 10–4 T. If the radius of the largest circular path followed by these electrons is 10.0 mm, the work function of the metal is close toa)1.8 eVb)1.1 eVc)0.8 eVd)1.6 eVCorrect answer is option 'B'. Can you explain this answer? in English & in Hindi are available as part of our courses for JEE. Download more important topics, notes, lectures and mock test series for JEE Exam by signing up for free.
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