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Question 1 of 48
1. Question
The following quantum numbers are possible for how many orbital(s) n= 3, l = 2, m = +2 ?
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Question 2 of 48
2. Question
Number of unpaired electrons in N²⁺ is
CorrectIncorrectHint
Subtract 2 electrons from the electronic configuration of Nitrogen
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Question 3 of 48
3. Question
What is the maximum number of electrons that can be associated with the following set of quantum numbers? n=3, l=1 and m=–1
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Question 4 of 48
4. Question
For azimuthal quantum number l= 3,the maximum number of electrons will be
CorrectIncorrectHint
for any subshell, 4l+2 electrons can be held.
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Question 5 of 48
5. Question
The total number of atomic orbitals in fourth energy level of an atom is :
CorrectIncorrectHint
Total orbits in a shell=n²
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Question 6 of 48
6. Question
The energy of second Bhor orbit of the hydrogen atom is -328 kJ mol⁻¹, hence the energy of fourth Bohr orbit would be
CorrectIncorrectHint
multiply -328kJ mol⁻¹ by 2² to get the energy
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Question 7 of 48
7. Question
The radius of hydrogen atom in the ground state is 0.53 Å. The radius of Li²⁺ ion (atomic number = 3) in a similar state is
CorrectIncorrectHint
Radius = r x n²/Z
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Question 8 of 48
8. Question
Deuterium nucleus contains
CorrectIncorrectHint
₁H² – Isotope of Hydrogen
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Question 9 of 48
9. Question
According to Bohr’s theory, the angular momentum of electron in 5th orbit is
CorrectIncorrectHint
mvr = nh/2π (n is the orbit number)
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Question 10 of 48
10. Question
The ratio of the difference in energy between first and second Bohr orbit to that between the second and the third Bohr orbit is
CorrectIncorrectHint
What is the relationship between energy, atomic number and number of orbit.
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Question 11 of 48
11. Question
The set of quantum number for 19th electron of chromium(Z=24) is
CorrectIncorrectHint
Start by writing the electronic configuration of chromium
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Question 12 of 48
12. Question
Maximum number of electrons in a subshell of an atom is determined by the following:
CorrectIncorrectHint
No. of orbitals in a sub-shell =2l + 1
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Question 13 of 48
13. Question
The order of filling of electrons in the orbitals of an atom will be
CorrectIncorrectHint
The sub-shell with lowest value of (n + l) is filled up first
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Question 14 of 48
14. Question
The correct set of four quantum numbers for the valence electron of rubidium atom(Z=37) is
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Question 15 of 48
15. Question
If ionization potential for hydrogen atom is 13.6eV, then ionization potential for He⁺ will be
CorrectIncorrectHint
The ionization energy of any hydrogen like species I.E = (2π²Z²me⁴)/h²
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Question 16 of 48
16. Question
The momentum of a particle having a de Broglie wavelength of 10⁻¹⁷metres is (Given h= 6.625 × 10⁻³⁴Js)
CorrectIncorrectHint
λ=h/mv
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Question 17 of 48
17. Question
The de-Broglie wavelength associated with a ball of mass 1kg having kinetic energy 0.5 J is
CorrectIncorrectHint
λ= h / √2mK.E
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Question 18 of 48
18. Question
If the energy of a photon is given as 3.03 × 10⁻¹⁹J then, the wavelength (λ) of the photon is :
CorrectIncorrectHint
E = hc /λ
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Question 19 of 48
19. Question
Which one of the following species does not exist under normal conditions?
CorrectIncorrectHint
Find the bond order
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Question 20 of 48
20. Question
Which of the following is a pair of isoelectronic species?
CorrectIncorrectHint
Find the number of electrons in all the compounds
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Question 21 of 48
21. Question
The ion that is isoelectronic with CO is
CorrectIncorrectHint
Ions with same number of electrons are called isoelectronic
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Question 22 of 48
22. Question
An ion has 18 electrons in the outermost shell, it is
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Find number of electrons in each ion and write down the electronic configuration
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Question 23 of 48
23. Question
The electron was shown experimentally to have wave properties by
CorrectIncorrectHint
Not so famous person
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Question 24 of 48
24. Question
The electron configuration of an element is 1s²,2s²,2p⁶,3s²,3p⁶,3d⁵,4s¹. This represents its
CorrectIncorrectHint
number of valence electrons tell its state
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Question 25 of 48
25. Question
The orbital angular momentum of a p-electron is given as :
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Orbital Angular Momentum = h/(2π) x √(l(l+1))
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Question 26 of 48
26. Question
The spectrum of He is expected to be similar to
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Which element has same number of electrons
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Question 27 of 48
27. Question
Bhor’s theory is applicable to
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Which one is hydrogen like species
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Question 28 of 48
28. Question
The orientation of an atomic orbital is governed by
CorrectIncorrectHint
The answer has ability to attract you
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Question 29 of 48
29. Question
Which of the following is not permissible arrangement of electrons in an atom?
CorrectIncorrectHint
m=2l+1
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Question 30 of 48
30. Question
For which one of the following sets of four quantum numbers, an electron will have the highest energy? n=3, l=2, m=1, s=1/2
CorrectIncorrectHint
Which one has maximum n+l value
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Question 31 of 48
31. Question
Set of isoelectronic species is
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isoelectronic are species having same number of electrons
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Question 32 of 48
32. Question
If n = 6, the correct sequence for filling of electrons will be:
CorrectIncorrectHint
Apply Aufbau principle
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Question 33 of 48
33. Question
Which of the following has the minimum bond length ?
CorrectIncorrectHint
Calculate bond order of these species. The one with the highest bond order has the minimum bond length.
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Question 34 of 48
34. Question
The number of spherical nodes in 3p orbitals are
CorrectIncorrectHint
radial nodes = (n – l – 1)
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Question 35 of 48
35. Question
In a given atom no two electrons can have the same values for all the four quantum numbers. This is called
CorrectIncorrectHint
You can’t simply exclude this question
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Question 36 of 48
36. Question
If r is the radius of the first orbit, the radius of nth-orbit of H-atom is given by
CorrectIncorrectHint
the radius of an orbit depends on the principal quantum number, n
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Question 37 of 48
37. Question
Which of the following is never true for cathode rays?
CorrectIncorrectHint
what is the mass of the electron?
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Question 38 of 48
38. Question
The total number of electrons that can be accommodated in all the orbitals having principal quantum number 2 and azimuthal quantum number 1 is
CorrectIncorrectHint
n = 2,l = 1 means 2 p – orbital
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Question 39 of 48
39. Question
The position of both, an electron and a helium atom is known within 1.0 nm. Further the momentum of the electron is known within 5.0 x 10⁻²⁶ kg ms⁻¹. The minimum uncertainty in the measurement of the momentum of the helium atom is
CorrectIncorrectHint
∆x X ∆p = h/4π – Heisenberg uncertainty Principle
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Question 40 of 48
40. Question
According to law of photochemical equivalence the energy absorbed (in ergs/mole) is given as(h= 6.62 x 10⁻²⁷ergs, c= 3 x 10¹° cm s⁻¹,N= 6.02 x 10²³ mol⁻¹)
CorrectIncorrectHint
E=hc/λ x N
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Question 41 of 48
41. Question
Uncertainty in the position of an electron (mass=9.1 x 10⁻³¹ kg) moving with velocity 300 ms⁻¹, accurate upon 0.001% will be (h=6.63 x 10⁻³⁴ Js)
CorrectIncorrectHint
Uncertainty in the position of the electron ∆x = h/(4πm∆v)
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Question 42 of 48
42. Question
The energy absorbed by each molecule (A2) of a substance is 4.4 x 10⁻¹⁹ J and bond energy per molecule is 4.0 x 10⁻¹⁹J. The kinetic energy of the molecule per atom will be:
CorrectIncorrectHint
K.E of molecule = Energy Absorbed – Bond Energy
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Question 43 of 48
43. Question
According to Bohr’s theory the energy required for an electron in the Li²⁺ ion to be emitted from n = 2 state is (given that the ground state ionization energy of hydrogen atom is 13.6 eV)
CorrectIncorrectHint
Energy of electron = -13.6 z²/n²
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Question 44 of 48
44. Question
The ions O²⁻, F⁻, Na⁺, Mg²⁺ and Al³⁺ are isoelectronic. Their ionic radii show
CorrectIncorrect -
Question 45 of 48
45. Question
Based on equation E = – 2.178 x 10⁻¹⁸J (Z²/n²), certain conclusions are written. Which of them is not correct?
CorrectIncorrectHint
lower the orbit is, more negative is the energy of the electron in it
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Question 46 of 48
46. Question
According to the Bohr Theory, which of the following transitions in the hydrogen atom will give rise to the least energetic photon?
CorrectIncorrectHint
E=13.6Z²(1/n₁² – 1/n₂²)
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Question 47 of 48
47. Question
Which of the following statements do not form a part of Bohr’s model of hydrogen atom ?
CorrectIncorrectHint
Are you certain about your answer?
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Question 48 of 48
48. Question
The energies E1 and E2 of two radiations are 25eV and 50 eV, respectively. The relation between their wavelengths i.e., λ₁ and λ₂ will be:
CorrectIncorrectHint
E1= hc/λ₁ and E2=hc/λ₂
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