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#1 [Permalink] Posted on 7th January 2007 21:08

How Islamic inventors changed the world


From coffee to cheques and the three-course meal, the Muslim world has given us many innovations that we take for granted in daily life. As a new exhibition opens, Paul Vallely nominates 20 of the most influential- and identifies the men of genius behind them


Published: 11 March 2006






1 The story goes that an Arab named Khalid was tending his goats in the Kaffa region of southern Ethiopia, when he noticed his animals became livelier after eating a certain berry. He boiled the berries to make the first coffee. Certainly the first record of the drink is of beans exported from Ethiopia to Yemen where Sufis drank it to stay awake all night to pray on special occasions. By the late 15th century it had arrived in Mecca and Turkey from where it made its way to Venice in 1645. It was brought to England in 1650 by a Turk named Pasqua Rosee who opened the first coffee house in Lombard Street in the City of London. The Arabic qahwa became the Turkish kahve then the Italian caff� and then English coffee.


2 The ancient Greeks thought our eyes emitted rays, like a laser, which enabled us to see. The first person to realise that light enters the eye, rather than leaving it, was the 10th-century Muslim mathematician, astronomer and physicist Ibn al-Haitham. He invented the first pin-hole camera after noticing the way light came through a hole in window shutters. The smaller the hole, the better the picture, he worked out, and set up the first Camera Obscura (from the Arab word qamara for a dark or private room). He is also credited with being the first man to shift physics from a philosophical activity to an experimental one.


3 A form of chess was played in ancient India but the game was developed into the form we know it today in Persia. From there it spread westward to Europe - where it was introduced by the Moors in Spain in the 10th century - and eastward as far as Japan. The word rook comes from the Persian rukh, which means chariot.


4 A thousand years before the Wright brothers a Muslim poet, astronomer, musician and engineer named Abbas ibn Firnas made several attempts to construct a flying machine. In 852 he jumped from the minaret of the Grand Mosque in Cordoba using a loose cloak stiffened with wooden struts. He hoped to glide like a bird. He didn't. But the cloak slowed his fall, creating what is thought to be the first parachute, and leaving him with only minor injuries. In 875, aged 70, having perfected a machine of silk and eagles' feathers he tried again, jumping from a mountain. He flew to a significant height and stayed aloft for ten minutes but crashed on landing - concluding, correctly, that it was because he had not given his device a tail so it would stall on landing. Baghdad international airport and a crater on the Moon are named after him.


5 Washing and bathing are religious requirements for Muslims, which is perhaps why they perfected the recipe for soap which we still use today. The ancient Egyptians had soap of a kind, as did the Romans who used it more as a pomade. But it was the Arabs who combined vegetable oils with sodium hydroxide and aromatics such as thyme oil. One of the Crusaders' most striking characteristics, to Arab nostrils, was that they did not wash. Shampoo was introduced to England by a Muslim who opened Mahomed's Indian Vapour Baths on Brighton seafront in 1759 and was appointed Shampooing Surgeon to Kings George IV and William IV.


6 Distillation, the means of separating liquids through differences in their boiling points, was invented around the year 800 by Islam's foremost scientist, Jabir ibn Hayyan, who transformed alchemy into chemistry, inventing many of the basic processes and apparatus still in use today - liquefaction, crystallisation, distillation, purification, oxidisation, evaporation and filtration. As well as discovering sulphuric and nitric acid, he invented the alembic still, giving the world intense rosewater and other perfumes and alcoholic spirits (although drinking them is haram, or forbidden, in Islam). Ibn Hayyan emphasised systematic experimentation and was the founder of modern chemistry.


7 The crank-shaft is a device which translates rotary into linear motion and is central to much of the machinery in the modern world, not least the internal combustion engine. One of the most important mechanical inventions in the history of humankind, it was created by an ingenious Muslim engineer called al-Jazari to raise water for irrigation. His 1206 Book of Knowledge of Ingenious Mechanical Devices shows he also invented or refined the use of valves and pistons, devised some of the first mechanical clocks driven by water and weights, and was the father of robotics. Among his 50 other inventions was the combination lock.


8 Quilting is a method of sewing or tying two layers of cloth with a layer of insulating material in between. It is not clear whether it was invented in the Muslim world or whether it was imported there from India or China. But it certainly came to the West via the Crusaders. They saw it used by Saracen warriors, who wore straw-filled quilted canvas shirts instead of armour. As well as a form of protection, it proved an effective guard against the chafing of the Crusaders' metal armour and was an effective form of insulation - so much so that it became a cottage industry back home in colder climates such as Britain and Holland.


9 The pointed arch so characteristic of Europe's Gothic cathedrals was an invention borrowed from Islamic architecture. It was much stronger than the rounded arch used by the Romans and Normans, thus allowing the building of bigger, higher, more complex and grander buildings. Other borrowings from Muslim genius included ribbed vaulting, rose windows and dome-building techniques. Europe's castles were also adapted to copy the Islamic world's - with arrow slits, battlements, a barbican and parapets. Square towers and keeps gave way to more easily defended round ones. Henry V's castle architect was a Muslim.


10 Many modern surgical instruments are of exactly the same design as those devised in the 10th century by a Muslim surgeon called al-Zahrawi. His scalpels, bone saws, forceps, fine scissors for eye surgery and many of the 200 instruments he devised are recognisable to a modern surgeon. It was he who discovered that catgut used for internal stitches dissolves away naturally (a discovery he made when his monkey ate his lute strings) and that it can be also used to make medicine capsules. In the 13th century, another Muslim medic named Ibn Nafis described the circulation of the blood, 300 years before William Harvey discovered it. Muslims doctors also invented anaesthetics of opium and alcohol mixes and developed hollow needles to suck cataracts from eyes in a technique still used today.


11 The windmill was invented in 634 for a Persian caliph and was used to grind corn and draw up water for irrigation. In the vast deserts of Arabia, when the seasonal streams ran dry, the only source of power was the wind which blew steadily from one direction for months. Mills had six or 12 sails covered in fabric or palm leaves. It was 500 years before the first windmill was seen in Europe.


12 The technique of inoculation was not invented by Jenner and Pasteur but was devised in the Muslim world and brought to Europe from Turkey by the wife of the English ambassador to Istanbul in 1724. Children in Turkey were vaccinated with cowpox to fight the deadly smallpox at least 50 years before the West discovered it.


13 The fountain pen was invented for the Sultan of Egypt in 953 after he demanded a pen which would not stain his hands or clothes. It held ink in a reservoir and, as with modern pens, fed ink to the nib by a combination of gravity and capillary action.


14 The system of numbering in use all round the world is probably Indian in origin but the style of the numerals is Arabic and first appears in print in the work of the Muslim mathematicians al-Khwarizmi and al-Kindi around 825. Algebra was named after al-Khwarizmi's book, Al-Jabr wa-al-Muqabilah, much of whose contents are still in use. The work of Muslim maths scholars was imported into Europe 300 years later by the Italian mathematician Fibonacci. Algorithms and much of the theory of trigonometry came from the Muslim world. And Al-Kindi's discovery of frequency analysis rendered all the codes of the ancient world soluble and created the basis of modern cryptology.


15 Ali ibn Nafi, known by his nickname of Ziryab (Blackbird) came from Iraq to Cordoba in the 9th century and brought with him the concept of the three-course meal - soup, followed by fish or meat, then fruit and nuts. He also introduced crystal glasses (which had been invented after experiments with rock crystal by Abbas ibn Firnas - see No 4).


16 Carpets were regarded as part of Paradise by medieval Muslims, thanks to their advanced weaving techniques, new tinctures from Islamic chemistry and highly developed sense of pattern and arabesque which were the basis of Islam's non-representational art. In contrast, Europe's floors were distinctly earthly, not to say earthy, until Arabian and Persian carpets were introduced. In England, as Erasmus recorded, floors were "covered in rushes, occasionally renewed, but so imperfectly that the bottom layer is left undisturbed, sometimes for 20 years, harbouring expectoration, vomiting, the leakage of dogs and men, ale droppings, scraps of fish, and other abominations not fit to be mentioned". Carpets, unsurprisingly, caught on quickly.


17 The modern cheque comes from the Arabic saqq, a written vow to pay for goods when they were delivered, to avoid money having to be transported across dangerous terrain. In the 9th century, a Muslim businessman could cash a cheque in China drawn on his bank in Baghdad.


18 By the 9th century, many Muslim scholars took it for granted that the Earth was a sphere. The proof, said astronomer Ibn Hazm, "is that the Sun is always vertical to a particular spot on Earth". It was 500 years before that realisation dawned on Galileo. The calculations of Muslim astronomers were so accurate that in the 9th century they reckoned the Earth's circumference to be 40,253.4km - less than 200km out. The scholar al-Idrisi took a globe depicting the world to the court of King Roger of Sicily in 1139.


19 Though the Chinese invented saltpetre gunpowder, and used it in their fireworks, it was the Arabs who worked out that it could be purified using potassium nitrate for military use. Muslim incendiary devices terrified the Crusaders. By the 15th century they had invented both a rocket, which they called a "self-moving and combusting egg", and a torpedo - a self-propelled pear-shaped bomb with a spear at the front which impaled itself in enemy ships and then blew up.


20 Medieval Europe had kitchen and herb gardens, but it was the Arabs who developed the idea of the garden as a place of beauty and meditation. The first royal pleasure gardens in Europe were opened in 11th-century Muslim Spain. Flowers which originated in Muslim gardens include the carnation and the tulip.

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#2 [Permalink] Posted on 7th January 2007 21:27
Did you know that the Arabic word for mosque is Jami' and the Arabic for university is Jami'a? A thousand years ago the first universities emerged within mosques where religion and science sat comfortably side by side.


Building on knowledge from Babylonian, Egyptian, Greek, Chinese and Indian Civilisations, Muslims developed a learning culture where enquiring minds searched for truths based on scientific rigour and experimentation. In almost every field of knowledge, Muslims made new inventions and discoveries with practical outcomes that helped develop society.


Muslim charitable institutions provided the first scholarships to support students.Courses were difficult and medicine was particularly gruelling, and just like in universities today, examinations were long and difficult.

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#3 [Permalink] Posted on 7th January 2007 21:28
The capital surplus generated by maximising returns from agriculture helped foster inter-continental trade. Sheikhs, sultans, wise men and pilgrims bought and sold jewellery, ivory and silk, ceramics, glass and pottery, paper, wool, wax, gold and melons - all part of the rich tapestry of Medieval trade.


Using windmills, waterwheels and experimenting with plants and crops have opened the way for revolutions in agriculture, engineering and automated machinery, that provided a civilisation without starvation. They created a scaleable production cycle that catered not only for small villages, but also for three continents!

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#4 [Permalink] Posted on 7th January 2007 21:28
Did you know that hospitals, as we know them today, were first established by early Muslims. They offered the best available medical service at that time and cared for all people free of charge. Muslims are honour-bound to provide treatment for the sick, whoever they may be.


The first organised hospital was built in Cairo in 872CE. The Ahmad ibn T�l�n Hospital treated and gave free medicine to all patients. It provided separate bath houses for men and women, a rich library and a section for the insane.


Patients deposited their street clothes with the hospital authorities for safe keeping, before donning special ward clothes and being assigned to their beds. Each patient would also have his or her own medical record.


Hospitals like these flourished as Muslim rulers competed to see who could construct the most dvanced centres. They spread all over the Muslim world reaching Sicily and North Africa.The earliest Muslim hospitals were funded by charitable religious endowments, called waqf, and some money from the state coffers was also used to maintain some hospitals.

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#5 [Permalink] Posted on 7th January 2007 21:29
Since Islam began, the muezzin, or timekeeper for prayers, has called the faithful to prayer five times a day. Their daily prayers are astronomically determined by the sun's position in the sky, so it was vital to exactly predict its motion at any location on earth.


Muslims also needed to know the direction of Mecca from every geographical location. This they did by observing the position of the sun and moon using new sophisticated instruments which they invented.


The Quran, the Muslims' holy book, contains numerous revelations about the heavens and celestial objects, and invites people to explore them. From all these religious motivations, astronomy became a main concern for Muslim scholars 1000 years ago, and celestial objects. Their work formed the foundation of European astronomy.

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#6 [Permalink] Posted on 7th January 2007 21:36
reaIIy good interesting site - 1001inventions.com


in short when the majority of musIims were actuaIIy foIIow deen practicaIIy aIIah SWT expanded their knowIedge, heaIth and weaIth to the highest of IeveIs. maybe time for us aII to go back to basics.

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#7 [Permalink] Posted on 7th January 2007 21:56
good thing to visit for aduIts and chiIdren:-

1001 Inventions Touring Exhibition

Next Location: National Museum Cardiff

Venue Dates: 24th October 2006 - 4th February 2007

The landmark exhibition begins its UK-wide tour at the Museum of Science and Industry in Manchester and soon after, will be coming to a city near you.

The unique content of the exhibition has been planned to generate awareness and appreciation of the scientific discoveries Muslims have made over a time-span of 1000 years. The lasting legacy of Muslim inventiveness and scholarship still serves as a beacon to inspire and motivate young people around the world.

The 1001 Inventions project strongly emphasises how Muslims, working harmoniously alongside people of different faiths and races across Europe, Asia and Africa, were able to contribute extensively in many fields including science and medicine.

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#8 [Permalink] Posted on 24th February 2007 16:55
from BBC website today:-


Last Updated: Friday, 23 February 2007, 10:47 GMT


Advanced geometry of Islamic art

Peter Lu became interested in the subject on a trip to Central Asia
A study of medieval Islamic art has shown some of its geometric patterns use principles established centuries later by modern mathematicians.
Researchers in the US have found 15th Century examples that use the concept of quasicrystalline geometry.


This indicates intuitive understanding of complex mathematical formulae, even if the artisans had not worked out the underlying theory, the study says.


The discovery is published in the journal Science.


The research shows an important breakthrough had occurred in Islamic mathematics and design by 1200.


"It's absolutely stunning," Harvard's Peter Lu said in an interview.


"They made tilings that reflect mathematics that were so sophisticated that we didn't figure it out until the last 20 or 30 years."


The Islamic designs echo quasicrystalline geometry in that both use symmetrical polygonal shapes to create patterns that can be extended indefinitely.


Until now, the conventional view was that the complicated star-and-polygon patterns of Islamic design were conceived as zigzagging lines drafted using straightedge rulers and compasses.


"You can go through and see the evolution of increasing geometric sophistication. So they start out with simple patterns, and they get more complex," Mr Lu added.


He became interested in the subject while travelling in Uzbekistan, where he noticed a 16th Century Islamic building with decagonal motif tiling.


Mr Lu, who designs physics experiments for the International Space Station, was in the region in order to visit a space facility in Turkmenistan.


Islamic art traditionally uses a mixture of calligraphy, geometric and floral designs because of a prohibition on the portrayal of the human form.

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#9 [Permalink] Posted on 24th February 2007 23:28
todays Independent aIso


Islamic artists were 500 years ahead of Western scientists
By Steve Connor, Science Editor
Published: 23 February 2007
Islamic artists were exploiting a mathematical principle to decorate buildings with complicated patterns of tiles more than 500 years before its discovery in the West.


The decorative tilework that adorns some medieval Islamic buildings has been found to use basic geometric shapes that form a complex and highly intricate tiling pattern which does not repeat itself.


In modern mathematics the principle of non-repeating patterns on a flat surface is known as quasicrystal geometry, and the most famous example is known as Penrose tiling, after the Oxford mathematician Roger Penrose, who was thought to have discovered it 30 years ago.


However, two American mathematicians believe that near-perfect quasicrystal geometry was used by Islamic scholars earlier than the 15th century to decorate the walls of important buildings.


Peter Lu, of Harvard University, and Paul Steinhardt, of Princeton University, said advanced quasicrystal geometry based on 10-sided shapes is seen in the tiling patterns of mosques and madrasas of the Middle East and central Asia, predating its discovery by Western mathematicians by 500 years.


"It could be proof of a major role of mathematics in medieval Islamic art, or it could have been just a way for artisans to construct their art more easily," said Mr Lu. "At the very least it shows us that a culture we often don't credit enough was far more advanced than we thought before."


In keeping with the Islamic tradition of not depicting images of people or animals, many religious buildings were decorated with geometric star-and-polygon patterns, often overlaid with a zigzag network of lines.


Lu and Steinhardt show in a study published in the journal Science that by the 13th century Islamic artisans had begun producing patterns using a small set of decorated, polygonal tiles which they call "girih" tiles.


Art historians have until now assumed that the intricate tilework had been created using straight edges and compasses, but the study in Science suggests the Islamic artisans were using a basic toolkit of girih tiles made up of shapes such as the decagon, pentagon, diamond and hexagon.


"Straight edges and compasses work fine for the recurring symmetries of the simplest patterns we see, but it probably required far more powerful tools to fully explain the elaborate tiling with decagonal [10-sided] symmetry," Mr Lu said.


"Individually placing and drafting hundreds of decagons with a straight edge would have been exceedingly cumbersome. It's more likely these artisans used particular tiles that we've found by decomposing the artwork," he said.


The scientists found that by 1453, Islamic architects had created overlapping patterns with girih tiles at two sites to produce near-perfect quasicrystalline patterns that did not repeat themselves. "The fact that we can explain so many sets of tiling, from such a wide range of architectural structures throughout the Islamic world with the same set of tiles, makes this an incredibly interesting universal picture," Mr Lu said.

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