πŸ“œ Science in India Β· Part 2

Ancient and classical contributions

Harappan engineers, Vedic geometers, Gupta-age astronomers, the mathematicians of the Kerala School and the scholars who carried Indian numerals to the world β€” field by field, from the earliest towns to about 1800, as NCERT’s textbooks describe them.

Milestones59
Fields8
Ideas and texts6

On the map

Only places already on YugMap’s map are shown. Maps show India’s boundaries as officially depicted by the Government of India.

βž— Mathematics

  1. Harappan civilization

    Standard weights

    πŸ“ Harappan cities

    A precise system of weights, usually cubes of a stone called chert, regulated trade.

    NCERT adds: The lower denominations were binary (1, 2, 4, 8, 16, 32) and the higher ones decimal (160, 200, 320, 640); the smaller weights were probably for jewellery and beads. πŸ“˜ NCERT Themes in Indian History I, Ch. 1 (Bricks, Beads and Bones) β†—

  2. Harappan period

    Scales and units of length

    πŸ“ Harappan sites

    Objects with ruled markings that could be scales have been found at Harappan sites. Later Indian literature names units such as the angula (finger width), dhanusa and yojana, used for artefacts, architecture and town planning β€” and carpenters and tailors still use the angula.

  3. Vedic period

    Number names and fractions in the Vedas

    The Yajurveda Samhita lists names for powers of ten β€” eka, dasha, shata, sahasra, ayuta and on up to 10ΒΉΒ² and beyond; the Rig Veda calls the fraction three-quarters tri-pada.

  4. c. 800 BCE (Baudhayana)

    The Sulba-sutras: geometry with a rope

    Geometric texts of the Vedic period on building fire altars β€” the earliest known Indian texts with methods to construct perpendiculars and perpendicular bisectors, using a rope as the compass. Baudhayana’s Sulbasutra (c. 800 BCE) already works with non-unit fractions.

  5. as early as the 3rd or 4th century CE

    Zero: the Bakhshali manuscript

    πŸ“ Bakhshali (now in Pakistan)

    A mathematical text with hundreds of zeros written as dots β€” the oldest recorded origin of the zero symbol we use today.

    NCERT adds: NCERT: the first known instance of numbers written with ten digits, including 0 (then a dot), is the Bakhshali manuscript (c. 3rd century CE). πŸ“˜ NCERT Ganita Prakash, Grade 8 Part 1, Ch. 3 (A Story of Numbers) β†—

  6. 499 CE

    Aryabhata computes with ten digits

    Aryabhata was the first mathematician to fully explain, and do elaborate scientific computations with, the Indian system of ten symbols; he also first proposed a systematic way to solve problems with a single unknown.

  7. born 598 CE

    Brahmagupta: rules for zero

    πŸ“ Bhillamala

    In the Brahmasphutasiddhanta he gave the rules of arithmetic with zero, negative numbers and fractions. His works were later translated into Persian and Latin.

  8. 6th–10th centuries

    Bhaskara I and trigonometry

    Bhaskara I did pioneering work in trigonometry and wrote a lengthy commentary on the Aryabhatiya.

  9. 628 CE

    Brahmagupta’s rules for fractions

    The Brahmasphutasiddhanta first stated in general form how to add, subtract, multiply and divide fractions β€” the methods still taught today. These ideas reached Europe through the Arabs.

  10. c. 700 CE

    Virahanka’s numbers

    Counting the rhythms of short and long syllables in poetry, the Prakrit scholar Virahanka gave the rule for the sequence 1, 2, 3, 5, 8, 13, 21… β€” the first known person to write it down. It is now called the Virahanka–Fibonacci sequence.

  11. 9th century

    Indian numerals reach the Arab world

    πŸ“ Baghdad

    Sanskrit texts of mathematics, astronomy and medicine were translated into Arabic. The Arabs adopted India’s decimal numeral system with the zero; in Europe these became known as β€˜Arabic numerals’.

  12. c. 825 CE

    Al-Khwarizmi’s β€˜Hindu numerals’

    πŸ“ Baghdad

    The Indian number system reached the Arab world by around 800 CE and was popularised there by Al-Khwarizmi’s book On the Calculation with Hindu Numerals (c. 825) and Al-Kindi’s On the Use of the Hindu Numerals (c. 830).

  13. c. 850 CE

    Mahaviracharya’s Ganita-sara-sangraha

    Mahaviracharya developed the arithmetic of fractions further and, in the Ganita-sara-sangraha, named the powers of ten up to 10Β²Β³.

  14. 10th century

    The Chautisa Yantra magic square

    πŸ“ Khajuraho

    The first recorded 4 Γ— 4 magic square, in an inscription at the Parshvanath Jain temple: every row, column and diagonal adds up to 34.

  15. born 1114

    Bhaskaracharya’s Lilavati

    πŸ“ probably present-day Maharashtra

    One of India’s greatest mathematicians and astronomers: Lilavati (1150 CE) teaches mathematics through riddles, Bijaganita covers advanced algebra and Siddhantashiromani astronomical calculation. Several of his works were translated into Persian in the Mughal period.

  16. around 1200

    Indian numerals reach Europe

    From the Arab world the numerals reached Europe and parts of Africa by around 1100 CE; around 1200 the Italian mathematician Fibonacci made the case for Europe to adopt them. Arab scholars called them β€˜Hindu numerals’.

  17. 14th century

    Narayana Pandita’s Ganitakaumudi

    A massive treatise of mathematics that included important original developments.

  18. 14th century

    Madhava and the Kerala School

    πŸ“ Kerala

    Madhava gave the series expansion for trigonometric functions β€” a world first β€” and an exact value of Ο€ as an infinite series. He and his followers are known as the Kerala School of Astronomy and Mathematics.

πŸ”­ Astronomy

  1. 2nd century BCE – 3rd century CE

    Shadow clocks and water clocks

    The earliest reference to measuring time by shadows is in Kautilya’s Arthasastra, which also describes a water clock with water flowing out.

  2. around 500 CE

    Aryabhata and the Aryabhatiya

    πŸ“ Kusumapura (near Patna)

    A short treatise of mathematics and astronomy. Aryabhata proposed that the Earth spins on its axis, gave the length of the year within minutes of the modern value, estimated the size of the Earth and correctly explained solar and lunar eclipses. His value for one rotation of the Earth is about 23 hours 56 minutes 4.1 seconds.

  3. Aryabhata’s time

    The Ghatika-yantra (sinking-bowl water clock)

    Because outflow clocks slowed as the water dropped, a sinking-bowl water clock was developed β€” first mentioned by Aryabhata. It kept time at monasteries, palaces and town squares, where each sinking of the bowl was announced; the day was divided into 60 ghatis.

  4. Gupta period

    Varahamihira’s Brihat Samhita

    πŸ“ Ujjayini (Ujjain)

    An encyclopedic work covering astronomy and astrology, weather forecasting, architecture, town planning and even farming.

  5. around 530 CE

    Time from a stick’s shadow

    Varahamihira gave an accurate expression for time in terms of the shadow of a vertical stick.

  6. 11th century

    Al-Biruni studies Indian science

    πŸ“ Ghazni

    Al-Biruni learnt Sanskrit and wrote an encyclopaedic survey of India, compiling in mathematics and astronomy what he could gather from the works of Aryabhata, Varahamihira and Brahmagupta.

  7. Bhaskara II’s time

    Watching the sky in bowls of water

    More than 800 years ago, astronomers looked at stars and planets reflected in shallow bowls of water, through tubes set at the right angles, to measure their positions.

  8. 1500

    Nilakantha Somayaji’s planetary model

    πŸ“ Kerala

    A scholar of the Kerala School worked out a planetary model in which Mercury and Venus went round the Sun.

  9. early 18th century

    Jantar Mantar observatory

    πŸ“ Jaipur, Rajasthan

    Some 20 giant masonry instruments for observing the sky with the naked eye.

🩺 Medicine and life sciences

  1. 7,500–9,000 years ago

    The earliest dentistry

    πŸ“ Mehrgarh, Balochistan

    Eleven molar teeth from nine adults were drilled β€” with flint tips β€” while the people were alive.

  2. c. 100 CE; final shape in the Gupta period

    Charaka and Sushruta Samhitas

    Works on medicine in Sanskrit. Ayurveda has much older roots, but these texts β€” which deal with cataloguing and diagnosing diseases, among other topics β€” were compiled and given their final shape during the Gupta period.

βš’ Metals and materials

  1. c. 1.5 million years ago

    Stone hand-axes at Attirampakkam

    πŸ“ Tamil Nadu

    Acheulian hand-axes and cleavers β€” some of the oldest tools made by early humans in South Asia.

  2. c. 385,000–172,000 years ago

    Smaller, finer stone tools

    πŸ“ Attirampakkam, Tamil Nadu

    A Middle Palaeolithic culture of prepared-core tools, far earlier than once thought.

  3. Neolithic period

    Early cotton

    πŸ“ Mehrgarh, Balochistan

    Cotton fibres preserved inside a copper bead β€” the first evidence of cotton at Neolithic Mehrgarh.

  4. Harappan period

    Copper and bronze metallurgy

    πŸ“ Harappan cities

    The Harappan civilisation mastered copper and bronze metallurgy β€” a technology that made its cities possible.

  5. c. 2500 BCE

    Lost-wax bronze casting

    πŸ“ Mohenjo-daro

    The β€˜lost-wax’ (cire-perdu) casting process was learnt as long ago as the Indus Valley Culture; the β€˜Dancing Girl’ from Mohenjodaro is perhaps the earliest bronze sculpture, datable to 2500 BCE. Tribal craftspeople still use the process today.

  6. Harappan period

    Drilling hard stone beads

    πŸ“ Chanhudaro, Lothal, Dholavira

    Beads of carnelian and other stones were shaped, ground, polished and drilled; specialised drills have been found at Chanhudaro, Lothal and Dholavira.

  7. 1800–1000 BCE

    Iron working in the Ganga plain

    πŸ“ Uttar Pradesh

    Iron artefacts, furnaces, tuyeres and slag in layers radiocarbon-dated between 1800 and 1000 BCE.

  8. Ancient and medieval periods

    Wootz steel

    πŸ“ South India

    The famed 'wootz': high-carbon steel made in crucibles in South India.

    NCERT adds: Wootz steel was among the Indian goods highly sought after in the Mediterranean world. πŸ“˜ NCERT Exploring Society: India and Beyond, Grade 8 Part 1, Ch. 4 β†—

  9. Ancient period

    The rust-resistant iron pillar

    πŸ“ Delhi

    An ancient iron pillar that has resisted corrosion for centuries β€” a puzzle explained by metallurgists.

    NCERT adds: Over 1,600 years old, about 8 metres high and more than 6,000 kg, it has barely any rust; its inscription speaks of a king β€˜Chandra’, identified with Chandragupta II. πŸ“˜ NCERT Exploring Society: India and Beyond, Grade 7 Part 1, Ch. 7 (The Gupta Era) β†—

  10. 13th–17th centuries

    Pure zinc by distillation

    The production of pure zinc reached its peak, with a special distillation process used for the first time in the world.

πŸ— Engineering, water and towns

  1. Harappan civilization

    Planned drainage

    πŸ“ Mohenjo-daro, Harappa and other cities

    A planned drainage system in Harappan cities β€” evidence of town planning.

    NCERT adds: House drains first emptied into a sump where solid matter settled, while waste water flowed on into street drains; the drains were covered with loose bricks that could be removed for cleaning. πŸ“˜ NCERT Themes in Indian History I, Ch. 1 (Bricks, Beads and Bones) β†—

  2. Harappan period

    Bricks of a standard ratio

    πŸ“ Harappan settlements

    Sun-dried or baked, Harappan bricks kept one ratio β€” length four times and breadth twice the height β€” and were used at all Harappan settlements, a sign the towns were planned first and then built.

  3. Harappan civilization

    The wheel: terracotta carts

    πŸ“ Harappan sites

    Terracotta models of wheeled carts show wheeled transport in Harappan times.

  4. Harappan period

    The dockyard at Lothal

    πŸ“ Lothal, Gujarat

    A huge brick basin at the Harappan settlement of Lothal, which NCERT presents as a dockyard linked to trade.

  5. c. 3000–1500 BCE

    Water management at Dholavira

    πŸ“ Dholavira, Gujarat

    A sophisticated water-management system let a walled city thrive on an arid island.

    NCERT adds: NCERT shows a large reservoir cut into the rock at Dholavira, 33 metres long. πŸ“˜ NCERT Exploring Society: India and Beyond, Grade 6, Ch. 6 (The Beginnings of Indian Civilisation) β†—

  6. Karikala’s reign

    The Kallanai (Grand Anicut)

    πŸ“ Kaveri, below Srirangam

    A complex water-diversion system built by the Chola king Karikala just downstream of Srirangam island, sending Kaveri waters to the central and southern delta so that more land could be irrigated.

  7. c. second century CE

    Sudarshana lake, a reservoir

    πŸ“ Girnar, Gujarat

    An artificial reservoir known from a Sanskrit rock inscription recording the achievements of the Shaka ruler Rudradaman, who rebuilt it.

  8. 11th century

    Stepwells: Rani-ki-Vav

    πŸ“ Patan, Gujarat

    Stepwells stored underground water in India since the 3rd millennium BCE; this one is a masterpiece of the craft.

    NCERT adds: In classical times a tradition of stepwells (vavs or baoris) developed in Gujarat and Rajasthan β€” many of them engineering marvels as well as works of art. πŸ“˜ NCERT Exploring Society: India and Beyond, Grade 8 Part 2, Ch. 3 (A Journey through Indian Architecture) β†—

  9. 1727

    Jaipur, a planned city

    πŸ“ Jaipur

    Vidyadhar Bhattacharya, appointed by Sawai Jai Singh II, designed the new city on a grid of rectangular blocks, aligned to the cardinal directions, with wide streets, gardens and nine public squares.

🌾 Farming and plants

  1. from c. 7000 BCE

    Farming begins at Mehrgarh

    πŸ“ Mehrgarh, Balochistan

    One of the earliest farming villages of the subcontinent, excavated and dated by French archaeologists.

  2. Early Harappan

    A ploughed field and terracotta ploughs

    πŸ“ Kalibangan, Rajasthan

    A field with two sets of furrows at right angles β€” two crops grown together; terracotta plough models were found in Cholistan and at Banawali.

  3. c. 600–500 BCE

    Paddy transplantation

    πŸ“ Ganga valley

    Transplanting rice seedlings spread in the Ganga valley, alongside the growth of towns.

  4. around the 10th century CE

    Surapala’s Vrikshayurveda

    A text of plant science: which plants suit which soils, seed collection and treatment, irrigation by species and season, and natural pest control.

πŸ“œ Language, writing and learning

  1. Harappan civilization

    The Harappan script

    πŸ“ Harappan cities

    Short inscriptions on seals β€” some 375 to 400 signs, the longest about 26 signs long. It is still undeciphered.

  2. c. 500 BCE

    Panini’s Ashtadhyayi

    The Ashtadhyayi of Panini, a work on Sanskrit grammar.

  3. Mauryan times

    Takshashila, a centre of learning

    πŸ“ Takshashila (Taxila)

    According to Buddhist texts, Kautilya β€” author of the Arthashastra, β€˜the science of governance and economics’ β€” was a teacher at the world-renowned Takshashila university.

  4. 3rd century BCE

    Brahmi: Ashoka's inscriptions

    πŸ“ Across the Mauryan Empire

    Edicts carved in the Brahmi script β€” deciphered by James Prinsep only in 1838.

  5. 3rd century BCE – 13th century CE

    Nalanda Mahavihara

    πŸ“ Nalanda, Bihar

    The most ancient university of the Indian subcontinent, teaching without a break for some 800 years.

    NCERT adds: The Palas, like Harsha before them, continued to patronise Nalanda; large monasteries like it were, in effect, the universities of the time. πŸ“˜ NCERT Exploring Society: India and Beyond, Grade 7 Part 2, Ch. 3 β†—

  6. late 8th century

    Vikramashila university

    πŸ“ Banks of the Ganga, Bihar

    Founded by the Pala king Dharmapala, it remained a great centre of learning for more than four centuries, with six colleges, a vast library and nearly 3,000 scholars. Each college had a β€˜scholar gatekeeper’ who set the admission test.

πŸ’» Computing and communication

  1. September 1556

    The first printing press

    πŸ“ Old Goa

    Set up by Jesuit missionaries at the Colegio de SΓ£o Paulo β€” the first printing press in India.

πŸ’‘ Ideas and texts

NCERT describes these without giving a date, so they are not placed on the timeline.

βš› PhysicsKanad’s Parmanu

Acharya Kanad first spoke of the Parmanu: matter made of tiny, indivisible, eternal particles. The idea is in his Vaisheshika Sutras.

πŸ“˜ NCERT Curiosity (Science), Grade 8, Ch. 7 (Particulate Nature of Matter) β†—
πŸ”­ AstronomyThe Surya Siddhanta and eclipses

Many Indian astronomical texts give calculations to predict eclipses; the best known is the Surya Siddhanta, written in rhythmic Sanskrit shlokas. The Indian National Calendar adopted in 1956 follows its general principles.

πŸ“˜ NCERT Curiosity (Science), Grade 7, Ch. 12 (Earth, Moon, and the Sun) β†—
🩺 Medicine and life sciencesVariolation against smallpox

Long before modern vaccines, India had variolation: material from a smallpox sore was scratched into the skin to cause a mild infection and build immunity. Its practitioners were known as teekedaars.

πŸ“˜ NCERT Curiosity (Science), Grade 8, Ch. 3 β†—
βš’ Metals and materialsMishraloha: alloys in medicine

Mishraloha was a mixture of metals with properties of its own. The Charaka Samhita, Susruta Samhita and Rasaratna Samucchaya mention alloys in medicine β€” bronze (kamsya) was 4 parts copper to 1 part tin. The Rasaratna Samucchaya says crucibles were made of clay and iron.

πŸ“˜ NCERT Curiosity (Science), Grade 8, Ch. 8 β†—
🩺 Medicine and life sciencesKrimi: visible and invisible

The Vedas, including the Atharvaveda, use the word β€˜krimi’ for tiny entities, both drishya (visible) and adrishya (invisible), and mention their beneficial and harmful effects.

πŸ“˜ NCERT Curiosity (Science), Grade 8, Ch. 2 (The Invisible Living World) β†—
🌾 Farming and plantsKunapa Jala: fermented manure

The Vrikshayurveda advocates feeding the soil continuously with organic manure such as kunapa jala, a liquid fertiliser made by fermenting animal and plant waste.

πŸ“˜ NCERT Curiosity (Science), Grade 8, Ch. 12 (How Nature Works in Harmony) β†—
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How we check: everything on this page comes from NCERT textbooks β€” Exploring Society, Ganita Prakash, Curiosity, Themes in Indian History and An Introduction to Indian Art β€” or from the sources of the Tools & Technology milestones, and our build fails unless the key phrases are found in the source itself. Where NCERT gives no date, neither do we.