Metals, Non-Metals and Reactivity Series – NDA Chemistry Notes

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Introduction

Look around you — the chair, the door handle, the coins in your pocket, the wire in the wall. Most of these are metals. Metals are the most useful class of materials in human civilisation. But not all elements are metals. Some are non-metals like oxygen and sulphur. Some have properties of both — these are called metalloids.

This chapter covers how metals and non-metals differ, which metals are most and least reactive, what happens when metals react with water and acids, how we protect iron from rusting, and where metals are found in nature.

NDA tests this chapter through reactivity series ordering, displacement reaction feasibility, galvanisation, ore identification, oxide type questions, and specific property questions like which metal is liquid at 30°C and which alkali metal has the lowest melting point.

Properties of Metals

Metals have a set of typical physical and chemical properties. But there are exceptions — and NDA loves testing the exceptions.

Physical properties of metals:

  • Shiny (lustrous) appearance
  • Good conductors of heat and electricity
  • Malleable — can be beaten into thin sheets
  • Ductile — can be drawn into wires
  • Sonorous — produce a ringing sound when struck
  • Solid at room temperature — with one exception: Mercury (Hg) is liquid
  • High melting and boiling points — with exceptions (gallium melts at ~30°C, caesium at 28.5°C)
  • High density — with exceptions (sodium and potassium float on water — very low density)

Best conductor of heat and electricity = Silver (Ag)
Poorest conductor of heat among common metals = Lead (Pb) [NDA 2010-I]

Softest metal = Sodium (Na) — it can be cut with a knife. [NDA tested via CDS]

Three metals that are liquid at 30°C = Mercury (Hg), Gallium (Ga), Caesium (Cs) [NDA 2007-I]


Properties of Non-Metals

Non-metals are generally opposite to metals in their properties.

  • Dull appearance — NOT shiny (exception: Iodine is lustrous)
  • Poor conductors of heat and electricity (exception: Graphite conducts electricity)
  • Brittle — break when hit
  • May be solid, liquid, or gas at room temperature
  • Bromine = only non-metal liquid at room temperature

Metalloids are elements that have some properties of metals and some of non-metals. Examples: Silicon (Si), Germanium (Ge), Arsenic (As), Antimony (Sb). [NDA 2013-II]

Metals vs Non-Metals — Comparison Table

PropertyMetalsNon-Metals
LustreShinyDull (except Iodine)
ConductivityGood (heat + electricity)Poor (except Graphite)
MalleabilityYesNo — brittle
DuctilityYesNo
Physical stateMostly solidSolid, liquid, or gas
Oxide typeBasicAcidic
Ion formedCation (loses electrons)Anion (gains electrons)
ExampleFe, Cu, Al, Na, KO₂, N₂, S, P, Cl₂, C

Important Non-Metals Table

Non-MetalKey PropertyCommon Use
Oxygen (O₂)Supports combustionRespiration, steel making, oxy-acetylene welding
Nitrogen (N₂)Inert, 78% of atmosphereFertilisers, food packaging, liquid N₂ coolant
Sulphur (S₈)Yellow solid, polyatomicH₂SO₄ manufacturing, vulcanisation, gunpowder
Phosphorus (P₄/P)White P ignites in airFertilisers, safety matches (red P)
Chlorine (Cl₂)Yellow-green toxic gasWater disinfection, bleaching, PVC
Carbon (C)Multiple allotropesDiamond (cutting), graphite (electrodes, pencils)

Sulphur is polyatomic — exists as S₈ molecules. [NDA 2024-II]

Sulphur in gunpowder decreases the ignition temperature. [NDA 2013-II]


Important Metals Table

Important Metals Table

MetalKey PropertyCommon Use
Iron (Fe)Strong, rusts in airConstruction, steel, machinery
Copper (Cu)Excellent electrical conductorElectrical wires, plumbing, coins
Aluminium (Al)Lightweight, resists corrosionAircraft, utensils, packaging
Zinc (Zn)Amphoteric oxide, galvanisationProtecting iron, dry cells, alloys
Silver (Ag)Best conductor of electricityJewellery, photography, electrical contacts
Gold (Au)Most malleable, nobleJewellery, electronics
Mercury (Hg)Only liquid metal at RTThermometers, barometers
Lead (Pb)Dense, poor conductorBatteries, radiation shielding
Sodium (Na)Very reactive, low density, softChemical manufacture, Na vapour lamps
Platinum (Pt)Noble, excellent catalystCatalytic converters, jewellery

Metal in haemoglobin = Iron (Fe) [NDA 2011-II, NDA tested via CDS]
Metal in chlorophyll = Magnesium (Mg) [NDA 2011-II, NDA tested via CDS]

Na-K alloy is used as coolant to transfer heat in nuclear reactors. The metal alloyed with sodium = Potassium. [NDA 2018-I]


Atomicity of Non-Metals

  • Monoatomic: Noble gases — He, Ne, Ar
  • Diatomic: H₂, O₂, N₂, F₂, Cl₂, Br₂, I₂
  • Tetraatomic: P₄
  • Polyatomic: S₈

Sulphur is polyatomic — S₈. [NDA 2024-II]

Metal Oxides vs Non-Metal Oxides

Metal oxides are basic — they react with acids to form salt and water.
Non-metal oxides are acidic — they react with water to form acids or with bases to form salts.

Oxygen on reaction with non-metals forms oxides which are acidic. [NDA 2013-II]

Neutral oxide: CO (carbon monoxide) — does not react with water, acid, or base. [NDA 2025-I]

Amphoteric oxides react with BOTH acids AND bases:

  • Al₂O₃ (aluminium oxide)
  • ZnO (zinc oxide)

Amphoteric hydroxide: Al(OH)₃ — reacts with both HCl and NaOH. [NDA 2014-I]


Reactivity Series

The reactivity series arranges metals in decreasing order of reactivity.

K > Na > Ca > Mg > Al > Zn > Fe > Pb > H > Cu > Hg > Ag > Au

Memory trick: “Please Stop Calling Me A Zoologist, I Prefer Having Chemistry Helping Around”

Key rule — Hydrogen as dividing line:

  • Metals ABOVE hydrogen → react with dilute acids to release H₂
  • Metals BELOW hydrogen (Cu, Hg, Ag, Au) → do NOT react with dilute acids

Mercury (Hg) does NOT react with dilute HCl to give H₂ — it is below hydrogen. [NDA 2016-I]

Correct order of electron releasing tendency = Zn > Cu > Ag [NDA 2019-II]

Metals Reacting with Water

MetalReactionProducts
K, NaVery vigorous with cold waterMetal hydroxide + H₂
CaModerate with cold waterCa(OH)₂ + H₂
MgSlow with cold, fast with hot waterMg(OH)₂ + H₂
Al, Zn, FeReact only with steamMetal oxide + H₂
Cu, Hg, Ag, AuNo reaction with water

Sodium and potassium are stored under kerosene because they react violently with water and atmospheric moisture. [NDA 2008-II]


Displacement Reactions — Feasibility Table

A more reactive metal displaces a less reactive metal from its salt solution. A less reactive metal CANNOT displace a more reactive one.

ReactionFeasible?Reason
Zn + CuSO₄ → ZnSO₄ + Cu✓ YesZn more reactive than Cu
Fe + CuSO₄ → FeSO₄ + Cu✓ YesFe more reactive than Cu
Mg + CuSO₄ → MgSO₄ + Cu✓ YesMg more reactive than Cu
Pb + CuCl₂ → PbCl₂ + Cu✓ YesPb more reactive than Cu
Cu + FeSO₄ → No reaction✗ NoCu less reactive than Fe
Ag + ZnSO₄ → No reaction✗ NoAg less reactive than Zn
Cu + PbCl₂ → No reaction✗ NoCu less reactive than Pb

When iron nail is placed in CuSO₄ solution — iron displaces copper. The solution turns from blue to green (CuSO₄ is blue, FeSO₄ is green). Iron is the reducing agent. [NDA 2019-I, NDA 2023-I]

Metals in Free State

Metals low in the reactivity series are found in nature in free (uncombined) state.

Found free in nature: Gold (Au), Silver (Ag), Platinum (Pt), Copper (Cu — sometimes)

Gold occurs in nature in free state. [NDA 2006-II]


Important Ores

MetalOre nameFormula
Iron (Fe)HaematiteFe₂O₃
Iron (Fe)MagnetiteFe₃O₄
Aluminium (Al)BauxiteAl₂O₃·2H₂O
Mercury (Hg)CinnabarHgS
Copper (Cu)Copper pyritesCuFeS₂
Zinc (Zn)Zinc blendeZnS
Lead (Pb)GalenaPbS
Silver (Ag)ArgentiteAg₂S

Cinnabar = ore of Mercury. [NDA 2021-II]

Extraction of Metals — Conceptual Level

The method of extraction depends on where the metal sits in the reactivity series.

ReactivityMethodExample
Very reactive (K, Na, Ca, Mg, Al)Electrolysis of molten compoundAl from bauxite, Na from molten NaCl
Moderately reactive (Zn, Fe, Pb, Cu)Reduction with carbon or COFe from haematite in blast furnace
Least reactive (Hg, Ag, Au)Heating alone or physical separationHg from cinnabar by roasting

Sodium is extracted by electrolysis of molten NaCl. Very reactive metals cannot be reduced by carbon — too much energy needed. [NDA tested via CDS]


Ferrous vs Non-Ferrous Metals

TypeDefinitionExamples
FerrousIron-basedIron, steel, cast iron, stainless steel
Non-ferrousNo significant ironCopper, aluminium, zinc, gold, silver

Corrosion and Rusting

Corrosion = gradual destruction of metal by chemical reaction with environment.

Rusting of iron:

  • Requires BOTH oxygen AND water — remove either and rusting stops
  • Rust = Fe₂O₃·xH₂O (hydrated iron oxide)
  • Rust is a COMPOUND — not a mixture
  • Rusting INCREASES weight of iron (oxygen and water are added)

Why aluminium resists corrosion despite being reactive:
A thin, transparent Al₂O₃ layer forms immediately on aluminium’s surface when exposed to air. This layer is tough, adherent, and self-repairing — it prevents further oxidation. This is why aluminium is used in aircraft and utensils despite being high in the reactivity series.

Prevention of Corrosion

MethodHow it worksExample
PaintingPhysical barrier — excludes O₂ and moistureIron bridges, gates, railings
Oiling / GreasingBarrier + water displacementMachine parts, tools
GalvanisationZinc coating — zinc corrodes sacrificiallyGalvanised iron sheets, roofing
ElectroplatingThin corrosion-resistant metal depositedChrome on car bumpers, tin on food cans
AlloyingCreate corrosion-resistant alloyStainless steel (Fe + Cr + Ni)
Cathodic protectionMore reactive metal attached — corrodes firstShips, underground pipelines (Mg or Zn anode)
AnodisingThickens natural Al₂O₃ layer electrochemicallyAluminium frames, cookware

Galvanisation — zinc protects iron:
Zinc is MORE reactive than iron. Zinc corrodes first — protecting iron as long as any zinc remains. This is called sacrificial corrosion. [NDA 2013-II, NDA 2017-II, NDA 2021-II]

Sacrificial anode must be MORE reactive than iron:

  • Zinc ✓ | Magnesium ✓ | Aluminium ✓ — all more reactive than Fe
  • Tin ✗ — LESS reactive than Fe — CANNOT be sacrificial anode [NDA tested via CDS]

Memory Trick

Reactivity series — “Please Stop Calling Me A Zoologist, I Prefer Having Chemistry Helping Around”:
K → Na → Ca → Mg → Al → Zn → Fe → Pb → H → Cu → Hg → Ag → Au

Metals below H — “Cute Hairy Apes Go” (Cu, Hg, Ag, Au):
These four do NOT react with dilute acids to give H₂.

Galvanisation — “Zinc Sacrifices itself for Iron”:
Zn more reactive → corrodes first → Fe protected
Tin CANNOT be sacrificial anode (less reactive than Fe)

Three liquids at 30°C — “MGC” (Mercury, Gallium, Caesium):
Mercury (−39°C) | Gallium (~30°C) | Caesium (28.5°C)

Alkali metals melting point — “Li burns hot, Cs melts cold”:
Li = highest | Cs = LOWEST melting point
Melting point DECREASES down Group 1

Metal in haemoglobin = Iron | Metal in chlorophyll = Magnesium

Neutral oxide = CO (NOT CO₂):
CO₂ = acidic | CO = neutral

Extraction by reactivity:
Very reactive → Electrolysis | Moderate → Carbon reduction | Least → Heating alone

Corrosion prevention — “PGAECA”:
Painting | Grease/Oil | Alloying | Electroplating | Cathodic protection | Anodising

Common Mistakes

  • Saying all metals are solid at room temperature.
    Mercury is liquid at room temperature (mp = −39°C). Gallium melts at ~30°C. Caesium melts at 28.5°C. Three metals are liquid at 30°C.
  • Saying metals below hydrogen react with dilute acids.
    Metals BELOW hydrogen (Cu, Hg, Ag, Au) do NOT react with dilute acids to release H₂.
  • Saying tin can be a sacrificial anode for iron.
    Tin is LESS reactive than iron — cannot protect iron by sacrificial corrosion. Zinc, Magnesium, and Aluminium work because they are more reactive.
  • Saying non-metal oxides are basic.
    Non-metal oxides are ACIDIC. Metal oxides are basic. ZnO and Al₂O₃ are amphoteric. CO is the neutral oxide — NOT CO₂.
  • Saying CO₂ is a neutral oxide.
    CO is neutral — NOT CO₂. CO₂ is an acidic oxide (forms H₂CO₃ with water).
  • Saying phosphorus is polyatomic.
    Phosphorus is P₄ (tetraatomic — 4 atoms). Sulphur is S₈ (polyatomic — 8 atoms).
  • Saying Caesium has the highest melting point among alkali metals.
    Caesium has the LOWEST melting point. Lithium has the HIGHEST. Melting point decreases down Group 1.
  • Confusing metal in haemoglobin with metal in chlorophyll.
    Haemoglobin = Iron | Chlorophyll = Magnesium.
  • Saying aluminium corrodes easily because it is reactive.
    Aluminium forms a protective Al₂O₃ layer that prevents further corrosion — despite being high in the reactivity series.

Quick Revision

REACTIVITY SERIES — K Na Ca Mg Al Zn Fe Pb H Cu Hg Ag Au
Above H = react with dilute acid → H₂
Below H (Cu, Hg, Ag, Au) = do NOT react with dilute acid

SPECIAL METALS
Only liquid metal at RT = Mercury | Three liquid at 30°C = Hg, Ga, Cs
Softest = Sodium | Best conductor = Silver | Most noble = Gold
Li = highest alkali metal mp | Cs = LOWEST alkali metal mp

ORES
Cinnabar = Hg | Haematite = Fe | Bauxite = Al
Zinc blende = Zn | Galena = Pb | Argentite = Ag

EXTRACTION
Very reactive → Electrolysis (Na, K, Ca, Mg, Al)
Moderate → Carbon reduction (Fe, Zn, Cu)
Least reactive → Heating alone (Hg, Ag, Au)

CORROSION PREVENTION
Painting, Oiling, Galvanisation (Zn sacrificial), Electroplating, Alloying (stainless steel), Cathodic protection, Anodising
Sacrificial anode: Zn, Mg, Al ✓ | Tin ✗ (less reactive than Fe)

OXIDE TYPES
Metal oxides = basic | Non-metal oxides = acidic
ZnO, Al₂O₃ = amphoteric | CO = neutral (NOT CO₂)

SPECIAL FACTS
Haemoglobin = Fe | Chlorophyll = Mg
Na-K alloy = nuclear reactor coolant
Sulphur = S₈ (polyatomic) | Phosphorus = P₄ (tetraatomic)

NDA KEY TRAPS
Hg, Ga, Cs = liquid at 30°C | Cs = lowest mp alkali metal
Tin CANNOT be sacrificial anode | CO = neutral oxide
Non-metal oxides = ACIDIC | Aluminium resists corrosion (Al₂O₃ layer)

Previous Year Questions

This chapter contains previous-year questions from NDA (2007–2025) with Detailed Solutions, Exam-wise classification, Concept-wise explanations and Difficulty analysis.

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