You can prepare effectively for JEE Chapter-wise Tests for JEE Main & Advanced with this dedicated MCQ Practice Test (available with solutions) on the important topic of "Test: Structure of Atom- 2". These 30 questions have been designed by the experts with the latest curriculum of JEE 2026, to help you master the concept.
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Radiation of λ = 155 nm was irradiated on Li (work function = 5eV) plate. The stopping potential (in eV) is.
Detailed Solution: Question 1
Increasing order of magnetic moment among the following species is __________ .
Na+, Fe+3, Co2+, Cr+2
Detailed Solution: Question 2
If in the hydrogen atom P.E. at ∞ is choosen to be 13.6 eV then the ratio of T.E. to K.E. for 1st orbit of H-atom is __________ .
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The light radiations with discrete quantities of energy are called ___________ .
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The ratio of the energy of a photon of 2000 Å wavelength radiation to that of 4000 Å radiation is
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Which electronic level would allow the hydrogen atom to absorb a photon but not to emit a photon:
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The third line in Balmer series corresponds to an electronic transition between which Bohr's orbits in hydrogen :
Detailed Solution: Question 8
The orbital angular momentum of an electron in 2s orbital is :
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Which quantum number is not related with Schrodinger equation :
Detailed Solution: Question 10
The shortest wavelength of He atom in Balmer series is x, then longest wavelength in the Paschene series of Li+2 is :
Detailed Solution: Question 11
An electron in a hydrogen atom in its ground state absrobs energy equal to the ionisation energy of Li+2. The wavelength of the emitted electron is
Detailed Solution: Question 12
An electron, a proton and an alpha particle have kinetic energies of 16E, 4E and E respectively. What is the qualitative order of their de-Broglie wavelengths?
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Given ΔH for the process Li(g) → Li+3(g) + 3e- is 19800 kJ/mole & IE1 for Li is 520 then IE2 & IE3 of Li+ are respectively (approx, value) :
Detailed Solution: Question 14
The ratio of difference in wavelengths of 1st and 2nd lines of Lyman series in H-like atom to difference in wavelength for 2nd and 3rd lines of same series is :
Detailed Solution: Question 15
If radius of second stationary orbit (in Bohr's atom) is R. Then radius of third orbit will be
Detailed Solution: Question 16
The ratio of wave length of photon corresponding to the α-line of lyman series in H-atom and β-line of Baimer series in He+ is
Detailed Solution: Question 17
Three energy levels P, Q, R of a certain atom are such that EP < EQ < ER. If λ1, λ2, and λ3, are the wave length of radiation corresponding to transition R → Q : Q → P and R → P respectively. The correct relationship between λ1, λ2 and λ3 is
Detailed Solution: Question 18
The Value of (n2 + n1) and for He+ ion in atomic spectrum are 4 and 8 respectively. The wavelength of emitted photon when electron jump from n2 to n1 is
Detailed Solution: Question 19
Number of possible spectral lines which may be emitted in bracket series in H atom if electrons present 9th excited level returns to ground level, are
Detailed Solution: Question 20
The first use of quantum theory to explain the structure of atom was made by :
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The wavelength associated with a golf ball weighing 200g and moving at a speed of 5m/h is of the order:
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The longest wavelength of He+ in Paschen series is "m", then shortest wavelength of Be3+ in Paschen series is (in terms of m) :
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What is uncertainity in location of a photon of wavelength 5000 Å if wavelength is known to an accuracy of 1 pm?
Detailed Solution: Question 24
Consider the following nuclear reactions involving X & Y.
X → Y + 2He4 Y → 8O18 + 1H1
If both neutrons as well as protons in both the sides are conserved in nuclear reaction then moles of neutrons in 4.6 gm of X :
Detailed Solution: Question 25
Electromagnetic radiations having λ = 310 Å are subjected to a metal sheet having work function = 12.8 eV. What will be the velocity of photoelectrons with maximum Kinetic energy.
Detailed Solution: Question 26
Assuming Heisenberg Uncertainity Principle to be true what could be the miniumum uncertainity in de–Broglie wavelength of a moving electron accelerated by Potential Difference of 6V whose uncertainity in position is 7/22 n.m.
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A 1-kW radio transmitter operates at a frequency of 880 Hz. How many photons per second does it emit -
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On the basis of Bohr's model, the radius of the 3rd orbit is -
Detailed Solution: Question 30
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