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Geography / Geology — Study Notes

Classification of Igneous Rocks

A complete, exam-ready chapter with definitions, diagrams, examples & key points  |  virtualstudycircle.com

1. Introduction to Igneous Rocks

Rocks are broadly divided into three major families based on their mode of formation: Igneous rocks, Sedimentary rocks, and Metamorphic rocks. Among these, igneous rocks are considered the "primary rocks" or "parent rocks" because they are the first rocks to have formed on Earth, and all other rock types are ultimately derived from them through weathering, erosion, deposition, and metamorphism.

Definition

Igneous rocks (from the Latin word "ignis" meaning fire) are rocks that are formed by the cooling and solidification of molten magma or lava, either below the Earth's surface or on it. They are also known as "primary rocks" since they form directly from molten material without involving any pre-existing rock.

1.1 How Igneous Rocks are Formed

Deep inside the Earth's crust and upper mantle, extremely high temperature and pressure keep rock material in a semi-liquid/molten state known as magma. When this magma finds a path of weakness in the crust, it moves upward. Depending on where it finally cools and solidifies, igneous rocks are formed in one of two broad settings:

  • Below the surface — magma cools slowly inside the crust and forms intrusive igneous rocks.
  • On the surface — magma erupts through volcanoes as lava, cools quickly in contact with air/water, and forms extrusive igneous rocks.
Important distinction

Magma is molten rock material found below the Earth's surface. Once it is erupted onto the surface through a volcano, it is called Lava. This single difference in terminology becomes the basis for one of the major classification systems discussed later in this chapter.

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2. Formation Zones of Igneous Rocks (Diagram)

The diagram below shows a cross-section of the Earth's crust, indicating exactly where each category of igneous rock is formed — deep inside (Plutonic), somewhat shallow (Hypabyssal), and on the surface (Volcanic).

MAGMA CHAMBER EXTRUSIVE (Volcanic) rocks e.g. Basalt, Rhyolite HYPABYSSAL rocks (dikes / sills) e.g. Dolerite INTRUSIVE / PLUTONIC rocks e.g. Granite, Gabbro VIRTUALSTUDYCIRCLE.COM
Fig. 1 — Cross-section showing zones of formation: Plutonic (deep), Hypabyssal (shallow, as dikes/sills/laccolith), and Volcanic (surface).
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3. Bases of Classification of Igneous Rocks

Igneous rocks are extremely varied, so geologists classify them using four major criteria. It is important to understand that the same rock can be described using all four systems simultaneously (e.g., Granite is Plutonic + Acidic + Coarse-grained + Felsic).

A. Mode of Occurrence B. Silica Content C. Texture / Grain Size D. Mineral Composition

A. Classification on the Basis of Mode of Occurrence (Place of Solidification)

This is the most common classification, based on where the magma cools and solidifies.

(i) Plutonic (Intrusive / Abyssal) Rocks

Definition

Rocks formed when magma cools and solidifies very slowly, deep inside the Earth's crust (several kilometres below the surface), without reaching the surface.

  • Cooling is extremely slow → crystals get sufficient time to grow → rocks are coarse-grained.
  • These rocks are exposed on the surface only after millions of years, once the overlying rock layers are removed by erosion (this is called denudation).
  • Examples: Granite, Gabbro, Diorite, Syenite, Peridotite.

(ii) Hypabyssal (Sub-volcanic) Rocks

Definition

Rocks formed at a shallow to intermediate depth (between the surface and the deep plutonic zone), commonly as dikes, sills, or laccoliths.

  • Cooling rate is moderate (faster than plutonic, slower than volcanic) → produces medium-grained rocks.
  • Occur as intrusive bodies like Dikes (vertical, cut across rock layers), Sills (horizontal, parallel to rock layers), and Laccoliths (dome-shaped intrusions).
  • Examples: Dolerite, Porphyry.

(iii) Volcanic (Extrusive) Rocks

Definition

Rocks formed when magma (now called lava) erupts onto the Earth's surface through volcanoes and cools very rapidly on contact with air or water.

  • Cooling is very fast → little to no time for crystal growth → rocks are fine-grained or glassy.
  • Often contain small holes/cavities called vesicles, formed by trapped gas bubbles.
  • Examples: Basalt, Rhyolite, Obsidian, Pumice, Andesite.
Real-world example The Deccan Traps of India (covering large parts of Maharashtra, Madhya Pradesh, and Gujarat) are a classic example of extrusive igneous rock (Basalt), formed from massive volcanic eruptions nearly 66 million years ago. In contrast, the Aravalli and parts of the Malani igneous suite in Rajasthan expose ancient plutonic granite that solidified deep underground and was later exposed by erosion.
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B. Classification on the Basis of Silica (SiO₂) Content

This chemical classification is based on the percentage of silica (SiO₂) present in the rock. Silica content directly controls the rock's colour, density, and the type of minerals it contains.

ACIDIC >65% silica Granite, Rhyolite INTERMEDIATE 55–65% silica Diorite, Andesite BASIC 45–55% silica Gabbro, Basalt ULTRABASIC <45% silica Peridotite, Dunite Light coloured, low density Dark coloured, high density VIRTUALSTUDYCIRCLE.COM
Fig. 2 — Spectrum of igneous rocks based on silica content, from Acidic to Ultrabasic.
CategorySilica %ColourDensityExamples
Acidic (Felsic)> 65%Light (pink/white/grey)Low (~2.7 g/cm³)Granite, Rhyolite
Intermediate55% – 65%Medium greyMediumDiorite, Andesite, Syenite
Basic (Mafic)45% – 55%Dark grey / blackHigh (~3.0 g/cm³)Gabbro, Basalt, Dolerite
Ultrabasic (Ultramafic)< 45%Dark green / blackVery high (~3.3 g/cm³)Peridotite, Dunite, Pyroxenite
Remember this trend

As silica content decreases (Acidic → Ultrabasic): colour becomes darker, density/weight increases, melting point increases, and the rock becomes richer in iron & magnesium (Fe-Mg minerals) instead of quartz and feldspar.

C. Classification on the Basis of Texture (Grain Size)

Texture refers to the size, shape, and arrangement of mineral grains/crystals in a rock. It is directly controlled by the rate of cooling of magma/lava.

Texture TypeRate of CoolingCrystal SizeExample
Coarse-grained (Phaneritic)Very slow (deep underground)Large, visible to naked eyeGranite, Gabbro
Medium-grainedModerate (shallow depth)Small but visibleDolerite
Fine-grained (Aphanitic)Fast (surface)Very small, not visible to naked eyeBasalt, Rhyolite
Glassy (Vitreous)Extremely fast (instant chilling)No crystals form at allObsidian
PorphyriticTwo-stage cooling (slow, then fast)Large crystals set in a fine-grained massPorphyry
VesicularFast, with trapped gasFull of small holes/cavitiesPumice, Scoria
Simple rule to remember Slow cooling → Big crystals → Coarse-grained rock.
Fast cooling → Tiny/no crystals → Fine-grained or Glassy rock.
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D. Classification on the Basis of Mineral Composition (Colour Index)

This classification is based on the proportion of light-coloured (felsic) minerals versus dark-coloured (mafic) minerals present in the rock. This proportion is called the Colour Index.

(i) Felsic Rocks

Rich in feldspar and silica (quartz) → light coloured → low colour index (0–25% dark minerals). Example: Granite, Rhyolite.

(ii) Intermediate Rocks

Balanced mix of light and dark minerals (25–50% dark minerals). Example: Diorite, Andesite.

(iii) Mafic Rocks

Rich in magnesium and ferric (iron) minerals → dark coloured → high colour index (50–90% dark minerals). Example: Gabbro, Basalt.

(iv) Ultramafic Rocks

Almost entirely composed of dark, iron-magnesium minerals with little to no feldspar/quartz (90–100% dark minerals). Example: Peridotite, Dunite.

4. Complete Classification at a Glance (Flowchart)

IGNEOUS ROCKS Mode of Occurrence Silica Content Texture Mineral Composition Plutonic Granite, Gabbro Hypabyssal Dolerite Volcanic Basalt, Rhyolite Acidic Intermediate Basic Ultrabasic Coarse-grained Fine-grained Glassy Porphyritic Felsic Intermediate Mafic Ultramafic VIRTUALSTUDYCIRCLE.COM
Fig. 3 — Summary flowchart showing all four classification systems together.
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5. Master Comparison Table (Common Igneous Rocks)

RockMode of OccurrenceSilica TypeTextureColourCommon Use / Location
GranitePlutonicAcidicCoarse-grainedPink / GreyBuilding/flooring stone; found in Aravalli hills
GabbroPlutonicBasicCoarse-grainedDark grey/blackConstruction aggregate
DioritePlutonicIntermediateCoarse-grainedSalt-and-pepper greyDecorative stone, sculpture
PeridotitePlutonicUltrabasicCoarse-grainedDark greenSource rock of upper mantle; diamonds occur in related kimberlite pipes
DoleriteHypabyssalBasicMedium-grainedDark greyForms dikes; road metal
BasaltVolcanicBasicFine-grainedBlackDeccan Traps, India; ocean floor rock
RhyoliteVolcanicAcidicFine-grainedLight grey/pinkVolcanic lava flows
AndesiteVolcanicIntermediateFine-grainedGreyCommon in the "Pacific Ring of Fire" volcanoes
ObsidianVolcanicAcidicGlassyBlack, glassyUsed historically for tools/weapons
PumiceVolcanicAcidicVesicular (full of holes)Light grey, very light weightFloats on water; used for skin scrubbing

6. Key Points & Quick Revision

Points to remember
  • Igneous rocks are called primary rocks because all other rocks are ultimately derived from them.
  • Molten rock below the surface = Magma; molten rock on the surface = Lava.
  • Rate of cooling is inversely related to crystal/grain size — slower cooling gives bigger crystals.
  • Silica content decreases from Granite → Diorite → Gabbro → Peridotite, while colour becomes progressively darker.
  • Igneous rocks are generally non-fossiliferous (they do not contain fossils) since they form from molten material.
  • Igneous rocks are usually hard, compact, crystalline, and resistant to weathering (except where jointed/fractured).
Plutonic = Deep + Slow + Coarse Volcanic = Surface + Fast + Fine Acidic = High Silica + Light Basic = Low Silica + Dark
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7. Practice / Revision Questions

  1. Define igneous rocks and explain why they are called "primary rocks."
  2. Differentiate between Plutonic, Hypabyssal, and Volcanic rocks with one example each.
  3. What is the difference between magma and lava?
  4. Classify igneous rocks on the basis of silica content. Why does colour change with silica percentage?
  5. Explain the terms "Dike," "Sill," and "Laccolith" with a labelled diagram.
  6. Why are igneous rocks generally non-fossiliferous?
  7. Compare Granite and Basalt on the basis of mode of occurrence, texture, and silica content.