Atomic Structure — Class 9 Physical Science
"Everything — the air, the ocean, the stars, your own body — is made of ATOMS. Understanding the atom is understanding what the universe IS."
1. Dalton's Atomic Theory (1808)
John Dalton proposed the FIRST scientific atomic theory:
- All matter is made of INDIVISIBLE atoms.
- Atoms of the SAME element are IDENTICAL in mass and properties.
- Atoms of DIFFERENT elements have DIFFERENT masses and properties.
- Atoms combine in SIMPLE WHOLE-NUMBER RATIOS to form compounds.
Limitations: Atoms ARE divisible (into protons, neutrons, electrons). Atoms of the same element CAN have different masses (ISOTOPES). Atoms of different elements CAN have the same mass (ISOBARS).
2. Thomson's Model (1897) — The Plum Pudding
J.J. Thomson discovered the ELECTRON (cathode ray experiment). He proposed: The atom is a POSITIVELY CHARGED SPHERE with NEGATIVELY CHARGED ELECTRONS embedded in it — like 'plums in a pudding.' 'Thomson proved atoms ARE divisible — they contain SMALLER PARTICLES. But his model could NOT explain Rutherford's later results.'
3. Rutherford's Model (1911) — The Nuclear Atom
The Gold Foil Experiment
Rutherford fired ALPHA PARTICLES (positively charged) at a THIN GOLD FOIL (~1000 atoms thick).
Observations: Most alpha particles passed STRAIGHT through. Some were deflected at SMALL angles. VERY FEW (1 in 12,000) BOUNCED BACK at large angles.
Conclusions: Most of the atom is EMPTY SPACE (most particles passed through). The POSITIVE CHARGE is concentrated in a TINY, DENSE REGION — the NUCLEUS (the few particles that bounced back hit it). 'Rutherford said: "It was as if you fired a cannonball at tissue paper — and it bounced back!"'
Limitations of Rutherford's Model
It could NOT explain: Why electrons don't SPIRAL INTO the nucleus (according to classical physics, an accelerating charged particle should radiate energy and collapse). The STABILITY of the atom.
4. Bohr's Model (1913) — Fixed Orbits
Niels Bohr proposed:
- Electrons revolve around the nucleus in FIXED, STATIONARY ORBITS (shells) — without radiating energy.
- Each orbit has a DEFINITE ENERGY. Orbits are designated K (n=1), L (n=2), M (n=3), N (n=4).
- An electron can JUMP to a HIGHER orbit by ABSORBING energy. It can JUMP BACK by EMITTING energy (as light).
- The angular momentum of an electron is QUANTISED (mvr = nh/2π).
Shell Capacities: K (n=1): max 2 electrons. L (n=2): max 8. M (n=3): max 18. N (n=4): max 32. 'Bohr's model works BRILLIANTLY for hydrogen and hydrogen-like ions. It FAILS for atoms with more than one electron. But it was a CRUCIAL STEP toward the quantum mechanical model.'
5. Key Numbers That Define an Atom
| Term | Definition | Location |
|---|---|---|
| Atomic Number (Z) | Number of PROTONS | Defines the ELEMENT |
| Mass Number (A) | Protons + Neutrons | A − Z = number of neutrons |
| Electrons | Equal to protons (in neutral atom) | Orbit the nucleus in shells |
6. Isotopes and Isobars
Isotopes — Same Z, Different A
Atoms of the SAME ELEMENT. Same number of PROTONS. DIFFERENT number of NEUTRONS. Same CHEMICAL properties (same electrons). Different PHYSICAL properties (different mass).
Examples: Hydrogen has 3 isotopes — Protium (¹H — 0 neutrons). Deuterium (²H — 1 neutron). Tritium (³H — 2 neutrons, radioactive). Carbon: ¹²C and ¹⁴C (¹⁴C used in carbon dating). Uranium: ²³⁵U (fission — nuclear reactors/bombs) and ²³⁸U.
Isobars — Same A, Different Z
DIFFERENT ELEMENTS with the SAME MASS NUMBER. Example: ⁴⁰Ar (Z=18), ⁴⁰Ca (Z=20), ⁴⁰K (Z=19).
7. Electronic Configuration — First 20 Elements
| Z | Element | Symbol | Configuration |
|---|---|---|---|
| 1 | Hydrogen | H | 1 |
| 2 | Helium | He | 2 |
| 3 | Lithium | Li | 2,1 |
| 6 | Carbon | C | 2,4 |
| 8 | Oxygen | O | 2,6 |
| 11 | Sodium | Na | 2,8,1 |
| 17 | Chlorine | Cl | 2,8,7 |
| 18 | Argon | Ar | 2,8,8 |
| 20 | Calcium | Ca | 2,8,8,2 |
Valence Electrons
Electrons in the OUTERMOST SHELL. Determine CHEMICAL PROPERTIES. Na (2,8,1) has 1 valence electron — highly reactive metal. Cl (2,8,7) has 7 valence electrons — highly reactive non-metal.
Octet Rule
Atoms react to achieve 8 ELECTRONS in the OUTERMOST SHELL — the stable noble gas configuration.
8. Common Mistakes to Avoid
- 'Isotopes have different chemical properties' — Same number of ELECTRONS → SAME chemical properties. Different NEUTRONS → different physical properties (mass, density).
- 'Mass number = number of nucleons in grams' — Mass number is a COUNT. It has NO UNIT. It is NOT the mass in grams.
- 'Atoms are indivisible' (Dalton) — This was DISPROVEN. Atoms have subatomic particles (protons, neutrons, electrons).
- 'Electrons in the same shell have different energies' — Electrons in the SAME shell have the SAME energy (in Bohr's model). Different SUBshells (s, p, d, f) — learned in higher classes — have different energies.
9. AP SSC Exam Focus
| Topic | Marks | Type |
|---|---|---|
| Rutherford's experiment | 3-4 | Short Answer |
| Bohr's model | 2-3 | MCQ |
| Atomic number, mass number | 2-3 | MCQ |
| Isotopes vs Isobars | 3-4 | Short Answer |
| Electronic configuration | 4-5 | Writing configurations |
Quick Reference — First 20 Elements
1-10: H(1), He(2), Li(2,1), Be(2,2), B(2,3), C(2,4), N(2,5), O(2,6), F(2,7), Ne(2,8). 11-20: Na(2,8,1), Mg(2,8,2), Al(2,8,3), Si(2,8,4), P(2,8,5), S(2,8,6), Cl(2,8,7), Ar(2,8,8), K(2,8,8,1), Ca(2,8,8,2).
Memory Aid for Isotopes vs Isobars
Isotopes = Same PROTONS (Z), different NEUTRONS (A). Think: 'I-SO-TOP' — SO similar chemistry, TOPped up with extra neutrons. Isobars = Same MASS (A), different PROTONS (Z). Think: 'ISO-BAR' — same mass BAR, different elements.
