Imagine an atom made up of a proton and a hypothetical particle of double the mass of the electron but having the same charge as the electron. Apply the Bohr atomic model and consider all possible transitions of this hypothetical particle to the first excited level. The longest wavelength of photon in the Balmer series has wavelength
(given in terms of the Rydberg constant
for hydrogen atom) equal to
Text Solution
Verified by ExpertsThe correct answer is:
C

In case of hydrogen atom for longest wavelength of photon in the Balmer series,

For this atom,

Prepare Smarter with CGP Edu
Get practice questions, solutions, and test series in one place.
Write a Review
Share your experience with this question and solution.
Commentary
Send your comment, doubt, correction, or feedback to admin.
Similar Questions
Explore conceptually related problems
Order of magnitude of density of uranium nucleus is ( )
Radius of nucleus is 4 fm. The radius of nucleus will be
If an electron and a positron annihilate, then the energy released is
If and are the masses of nucleus, neutron and proton respectively, then
The masses of neutron and proton are 1.0087 amu and 1.0073 amu, respectively. If the neutrons and p…
Assume that protons and neutrons have equal masses. Given that nuclear radius is given by metre an…