Atomic Structure
100 Short Q&A • NCERT Class 11 Chemistry
Class 11
JEE / NEET
100 Short Q&A for Atomic Structure
- Q1: Who discovered the electron?A: J. J. Thomson (using Cathode Ray Tube).
- Q2: Who discovered the proton?A: E. Goldstein (using Canal Rays).
- Q3: Who discovered the neutron?A: James Chadwick.
- Q4: What is the charge-to-mass ratio (e/m) of an electron?A: 1.758820 × 1011 C/kg.
- Q5: What is the charge of an electron?A: −1.602 × 10−19 Coulombs (Millikan's Oil Drop method).
- Q6: What is the mass of a proton (in kg)?A: Approximately 1.672 × 10−27 kg.
- Q7: What is an Ξ±-particle?A: A doubly positively charged helium nucleus (4He2+).
- Q8: What did Thomson's model of the atom propose?A: A "Plum Pudding" or "Watermelon" model with embedded electrons.
- Q9: What was the major observation of Rutherford's Ξ±-scattering experiment?A: Most Ξ±-particles passed straight through the gold foil.
- Q10: What is the dense, central part of an atom called?A: The Nucleus.
- Q11: What did Rutherford's model fail to explain?A: The stability of the atom.
- Q12: Define Atomic Number (Z).A: The number of protons in the nucleus.
- Q13: Define Mass Number (A).A: The total number of protons and neutrons (nucleons).
- Q14: What are Isotopes?A: Atoms of the same element with the same Z but different A (different neutrons).
- Q15: What are Isobars?A: Atoms with the same A but different Z (different elements).
- Q16: What are Isotones?A: Atoms with the same number of neutrons.
- Q17: What are isoelectronic species?A: Species (atoms/ions) having the same number of electrons.
- Q18: Write the symbol for an element X with Z=17 and A=35.A: 3517Cl (Chlorine).
- Q19: How many neutrons are in a 235U atom?A: 235 − 92 = 143 neutrons.
- Q20: Who proposed that energy is quantized?A: Max Planck.
- Q21: What is the velocity of electromagnetic radiation in a vacuum?A: The speed of light (c), approximately 3.0 × 108 m/s.
- Q22: What is the relationship between frequency (Ξ½) and wavelength (Ξ»)?A: c = Ξ½Ξ».
- Q23: Which region of the electromagnetic spectrum has the highest frequency?A: Gamma Rays.
- Q24: What is the SI unit of frequency?A: Hertz (Hz) or s−1.
- Q25: What is the energy of one photon given by (Planck's Equation)?A: E = hΞ½ (where h is Planck's constant).
- Q26: What is the value of Planck's constant (h)?A: 6.626 × 10−34 J s.
- Q27: What is a Black Body?A: An ideal body that absorbs and emits all frequencies of radiation equally.
- Q28: What is the Photoelectric Effect?A: The ejection of electrons when light of sufficient frequency strikes a metal surface.
- Q29: What is Threshold Frequency (Ξ½0)?A: The minimum frequency of light required to cause the photoelectric effect.
- Q30: What are the two aspects of the Dual Nature of Electromagnetic Radiation?A: Wave nature and Particle nature.
- Q31: What is a spectrum?A: The display of components of an electromagnetic radiation arranged according to frequency or wavelength.
- Q32: What is an emission spectrum?A: The spectrum of radiation emitted by a substance that has absorbed energy.
- Q33: What is a line spectrum?A: A spectrum consisting of sharp, well-defined lines (characteristic of atoms).
- Q34: What type of spectrum is the hydrogen spectrum?A: A line emission spectrum.
- Q35: Which series in the hydrogen spectrum lies in the UV region?A: The Lyman series.
- Q36: Which series in the hydrogen spectrum lies in the visible region?A: The Balmer series.
- Q37: State the de Broglie hypothesis.A: Matter, like radiation, exhibits dual behavior (wave and particle).
- Q38: Write the de Broglie wavelength equation.A: Ξ» = h/(mv) (where p=mv is momentum).
- Q39: Which particle shows wave properties even at ordinary speeds?A: Microscopic particles like electrons.
- Q40: What is the energy of the electron in the n=1 state of a hydrogen atom?A: −2.18 × 10−18 J or −13.6 eV.
- Q41: What is the main postulate of Bohr's model regarding electron orbits?A: Electrons revolve only in certain fixed, non-radiating orbits (stationary states).
- Q42: What is the condition for the angular momentum of an electron in Bohr's model?A: It must be an integral multiple of h/(2Ο), i.e., mvr = n⋅h/(2Ο).
- Q43: What happens when an electron jumps from a lower to a higher orbit?A: Energy is absorbed.
- Q44: What happens when an electron drops from a higher to a lower orbit?A: Energy is emitted (as a photon).
- Q45: Give the Rydberg formula for the wavelength of hydrogen spectral lines.A: 1/Ξ» = RH(1/n12 − 1/n22).
- Q46: What is the value of the Rydberg constant (RH)?A: 109677 cm−1.
- Q47: What is the main limitation of Bohr's model?A: It could not explain the spectra of multi-electron atoms.
- Q48: What is the Heisenberg Uncertainty Principle?A: It is impossible to determine simultaneously and exactly the position and momentum of a microscopic particle.
- Q49: Write the mathematical expression for the Uncertainty Principle.A: Ξx ⋅ Ξp ≥ h/(4Ο).
- Q50: What is the region of space around the nucleus where the probability of finding an electron is maximum?A: An Orbital.
- Q51: What are the three Quantum Numbers derived from the SchrΓΆdinger Wave Equation?A: Principal (n), Azimuthal (l), and Magnetic (ml).
- Q52: What does the Principal Quantum Number (n) determine?A: The size and energy of the orbit/shell.
- Q53: What are the possible values of n?A: 1, 2, 3, 4, … (or K, L, M, N, …).
- Q54: What does the Azimuthal (or Angular Momentum) Quantum Number (l) determine?A: The shape of the orbital (subshell).
- Q55: What are the possible values of l for a given n?A: 0 to (n−1).
- Q56: What are the subshells corresponding to l=0, 1, 2, 3?A: s, p, d, f.
- Q57: What does the Magnetic Quantum Number (ml) determine?A: The orientation of the orbital in space.
- Q58: What are the possible values of ml for a given l?A: −l to +l (including 0).
- Q59: How many orbitals are in the d-subshell (l=2)?A: Five (ml = −2, −1, 0, +1, +2).
- Q60: What does the Spin Quantum Number (ms) determine?A: The orientation of the electron's spin.
- Q61: What are the two possible values of ms?A: +1/2 (spin up) and −1/2 (spin down).
- Q62: What is the shape of an s orbital?A: Spherical.
- Q63: What is the shape of a p orbital?A: Dumb-bell shaped.
- Q64: How many nodal planes does a p orbital have?A: One (a plane passing through the nucleus).
- Q65: Define a Radial Node.A: A spherical surface where the probability of finding the electron is zero.
- Q66: What is the formula for the total number of nodes?A: n − 1.
- Q67: What is the formula for the number of angular nodes?A: l.
- Q68: What is the formula for the number of radial nodes?A: n − l − 1.
- Q69: What is the total number of nodes for a 3p orbital?A: 3 − 1 = 2 (1 radial, 1 angular).
- Q70: How many degenerate orbitals are present in the M-shell (n=3)?A: 32 = 9 (one 3s, three 3p, five 3d).
- Q71: State the Aufbau Principle.A: Electrons are added one by one to orbitals with the lowest energy first.
- Q72: What is the (n+l) rule used for?A: To determine the relative energy of orbitals.
- Q73: Which orbital has lower energy: 4s or 3d?A: 4s (n+l is 4+0=4, vs 3+2=5).
- Q74: State Pauli's Exclusion Principle.A: No two electrons in an atom can have the same set of all four quantum numbers.
- Q75: What is the maximum number of electrons in an orbital?A: Two (with opposite spins).
- Q76: State Hund's Rule of Maximum Multiplicity.A: Pairing of electrons in a degenerate set of orbitals (p, d, f) does not occur until each orbital has one electron (singly occupied).
- Q77: Write the electronic configuration of Nitrogen (Z=7).A: 1s2 2s2 2p3.
- Q78: What is the total number of unpaired electrons in Oxygen (Z=8)?A: Two (↑↓ in 2s, ↑↓↑↑ in 2p).
- Q79: Why is the electronic configuration of Chromium (Z=24) exceptional?A: Half-filled orbitals are more stable, so it is [Ar] 3d5 4s1 instead of 3d4 4s2.
- Q80: Why is the electronic configuration of Copper (Z=29) exceptional?A: Fully-filled orbitals are more stable, so it is [Ar] 3d10 4s1 instead of 3d9 4s2.
- Q81: Write the electronic configuration of Na+ ion (Z=11).A: 1s2 2s2 2p6 (Neon configuration).
- Q82: How many orbitals are singly occupied in the ground state of Chlorine (Z=17)?A: One (3p orbital).
- Q83: What is the order of filling of electrons in the 5th period according to the (n+l) rule?A: 5s, 4d, 5p (then 6s, 4f, …).
- Q84: What is the general electronic configuration for the p-block elements?A: ns2 np1−6.
- Q85: What is the highest value of n for an electron in the ground state of Potassium (Z=19)?A: n=4 (4s1).
- Q86: What is the maximum number of electrons in the n=4 shell?A: 2n2 = 2(42) = 32 electrons.
- Q87: How is the energy of orbitals determined in multi-electron atoms?A: By the (n+l) rule (and n if (n+l) is equal).
- Q88: What is the minimum energy required to remove an electron from the ground state of an atom?A: Ionization Enthalpy (or Ionization Energy).
- Q89: What is the magnetic behavior of a species with unpaired electrons?A: Paramagnetic.
- Q90: What is the magnetic behavior of a species with all paired electrons?A: Diamagnetic.
- Q91: Is N2 (Nitrogen molecule) paramagnetic or diamagnetic?A: Diamagnetic (all electrons are paired).
- Q92: What is a Wave Function (Ο)?A: A mathematical function that contains all the information about an electron in an atom.
- Q93: What does Ο2 represent?A: The probability density of finding the electron at a point.
- Q94: Which quantum number is not obtained from the SchrΓΆdinger equation?A: The Spin Quantum Number (ms).
- Q95: What is the relationship between the radius of the n-th orbit and n in Bohr's model?A: rn ∝ n2 (for H-like species).
- Q96: Define Atomic Mass Unit (amu) or u.A: 1/12 of the mass of a C-12 atom.
- Q97: What is the term for the stability gained by half-filled and fully-filled subshells?A: Exchange Energy (or greater symmetry).
- Q98: In a hydrogen atom, what determines the energy of an electron?A: Only the Principal Quantum Number (n).
- Q99: What is the frequency of light when an electron jumps from n=3 to n=2 in a H-atom?A: The first line of the Balmer series (Red light).
- Q100: What are the main characteristics of a cathode ray?A: They are streams of electrons; travel in straight lines; and are deflected by electric and magnetic fields.
Part 1: Fundamental Particles and Early Models
Part 2: Dual Nature of Matter and Electromagnetic Radiation
Part 3: Bohr's Model and Quantum Mechanical Model
Part 4: Electronic Configuration Rules
Atomic Structure Revision Quiz (30 MCQs)
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