MUSLIM SCIENTISTS, MATHEMATICIANS AND ASTRONOMERS

MUSLIM SCIENTISTS, MATHEMATICIANS AND ASTRONOMERS
Before European Renaissance, 700 - 1500 C.E.

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Muslims whose multi-disciplinary contributions sparked the light of learning and productivity and without whom the European Renaissance would not have begun and come to maturity. As you will find in the biographies included here, their contributions to our basic understanding of sciences, mathematics, medicine, technology, sociology, and philosophy have been used without giving proper credit to them. The subject has largely been left to few obscure intellectual discourses on world history and human development. It is rarely mentioned in formal education, and if at all mentioned their names are Latinized or changed with the effect of obscuring their identity and origin, and their association with the Islamic Civilization.

[This message has been edited by Cybergallant (edited December 23, 2000).]

dude there should be no spaces in da file name... or ur path is incorrect...


**
May your life be long and useful like a roll of toilet paper.
**

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Very kind of you share this with us. Could you post little bit history on them as well so others can benefit more than just looking at them.

Regards


IF MY WRITING IS BAD THEN THE WORLD IS WORSE BECAUSE MY WRITINGS ARE 30° LESS TO THE WORLD

JABIR IBN HAIYAN (Geber) (Died 803 C.E.)
by
Dr. A. Zahoor

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Jabir Ibn Haiyan, known by the name of the alchemist Geber of the Middle Ages, is generally known as the Father of Chemistry. His full name was Abu Musa Jabir Ibn Hayyan. He had established himself as one of the leading scientist while he practiced medicine and alchemy in Kufa (in present day Iraq) around 776 C.E. In his early days, he was under the patronage of the Barmaki Vizier during the Abbasid Caliphate of Haroon al-Rashid. Jabir died in Kufa in 803 C.E.

Jabir’s (Geber’s) major contribution was in the field of Chemistry. He is famous for writing more than one hundred monumental treatises, of which twenty-two deal with chemistry and alchemy. He introduced experimental investigation into alchemy (derived from Arabic word al-Kimiya), creating the momentum for the modern Chemistry. Jabir emphasized experimentation and development of methods to achieve reproducibility in his work. He devoted his effort to the development of basic chemical methods and the study of various mechanisms of chemical reactions and thus helped evolve chemistry as a science from the legends of alchemy. Jabir emphasized that definite quantities of various substances are involved in a chemical reaction. Therefore, it can be said that he paved the way for the law of constant proportions.

His contribution of fundamental importance to chemistry includes perfection of scientific techniques such as crystallization, distillation, calcination, sublimation and evaporation and development of several instruments for conducting these experiments. Jabir’s major practical achievement was the discovery of minerals and acids, which he prepared for the first time in his alembic (Anbique). His invention of the alembic made the distillation process easy and systematic. Among his various breakthroughs is the preparation of nitric, hydrochloric, citric and tartaric acids. Jabir’s emphasis on systematic experimentation is outstanding. It is on the basis of such works that he is regarded as the father of modern Chemistry. In the words of Max Mayerhaff, the development of chemistry in Europe can be traced directly to Jabir Ibn Haiyan.

Jabir was a pioneer in the development of a number of applied chemical processes. His contributions include the development of steel, preparation of various metals, prevention of rusting, lettering in gold, use of manganese dioxide in glass-making, dyeing of cloth and tanning of leather, varnishing of waterproof cloth, identification of paints and greases. In addition, he developed aqua regia to dissolve gold.

Jabir’s experimental ideas paved the way for now commonly known classification of substances as metals, nonmetals and volatile substances. He discussed three distinct types of substances based on their properties: a) spirits, i.e., those which vaporize on heating, like camphor, arsenic and ammonium chloride, b) metals, e.g., gold, silver, lead, copper, iron, and c) compounds that can be converted into powders.

Jabir treatises on chemistry, including his Kitab al-Kimya, and Kitab al-Sab’een were translated into Latin in the Middle Ages. The translation of Kitab al-Kimya was published by the Englishman Robert of Chester in 1144 C.E. under the title “The Book of the Composition of Alchemy.” The second book was translated by the famous Gerard of Cremona (D. 1187). Berthelot translated some his books known by the titles “Book of Kingdom”, “Book of the Balances,” “Book of Eastern Mercury,” and it is obvious that he did not use correct titles for Jabir’s books. Englishman Richard Russel translated and published (1678) Jabir’s another work under the title “Sum of Perfection.” He described him as Geber, the most famous Arabian prince and philosopher. These translations were popular in Europe for several centuries and have influenced the evolution of modern chemistry. Several technical terms introduced by Jabir, such as alkali, are found in various European languages and have become part of scientific vocabulary. Only a few of his books have been edited and published, while many others preserved in Arabic have yet to be translated. He also contributed to other sciences such as medicine and astronomy.

Very good. Thanks for the information. It was very helpful and hope to see more on others.

Regards

Hey Cybergallant..
may i ask..
what’s the website where you got this info? I’d appreciate it to know it, thanxs a lot!

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thatz so wicked!..

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thanx 4 sharing kid!..

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Uske ik ik hurf ki teh mein mein ne akser chahat ka deriya daikh..
uski ankhon mein mein ne akser pyass ka sehra daikha..
derd ki ruut mein kon kisi ke zakhmon pe merhum rakhta hai..
chandni raat mein mein ne akser chand ko tanha daikha..

Nice post

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I like the post- Hey do you know any info about any medics? I need this kind of thing before exams as a morale boost...

Was-salaam

ABU ALI AL-HUSSAIN IBN ABDALLAH IBN SINA (Avicenna) (981 - 1037 C.E.)

         by
    Dr. A. Zahoor

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Ibn Sina’s portrait adorns the great hall of the Faculty of Medicine in the University of Paris.

Ibn Sina, known in the West by the name of Avicenna, was the most famous physician, philosopher, encyclopedist, mathematician and astronomer of his time. His major contribution to medical science was his famous book al-Qanun fi al-Tibb, known as the ‘Canon’ in the West. No deliberation on the science of medicine can be complete without a reference to Ibn Sina. Abu Ali al-Hussain Ibn Abdallah Ibn Sina was born in 981C.E. at Afshana near Bukhara (Central Asia). By the age of ten he had become well versed in the study of the Qur’an and basic sciences. He studied logic from Abu Abdallah Natili, a famous philosopher of the time and his study of philosophy included various Greek and Muslim books. In his youth he showed remarkable expertise in medicine and was well known in the region. At the age of seventeen, he was successful in curing Nooh Ibn Mansoor, the King of Bukhara, of an illness in which all the well-known physicians had given up hope. On his recovery, King Mansoor wished to reward him, but the young physician only d permission to use his uniquely stocked library.

Ibn Sina traveled to Jurjan after his father’s death where he met his famous contemporary Abu Raihan al-Biruni. Later he moved to Rayy and then to Hamadan, where he wrote his famous book Al-Qanun fi al-Tibb. Here, he treated Shams al-Daulah, the King of Hamadan, for severe colic. From Hamadan he moved to Isphahan (present Iran), where he completed many of his monumental writings. Nevertheless, he continued travelling and the excessive mental exertion as well as political turmoil spoilt his health. Finally, he returned to Hamadan where he died in 1037 C.E.

His major contribution to medical science was his famous book al-Qanun, known as the “Canon” in the West. The Qanun fi al-Tibb (the Canons of Medicine) is an immense encyclopedia of medicine extending over a million words. It reviewed the medical knowledge available from ancient and Muslim sources. Due to its systematic approach, formal perfection as well as its intrinsic value, the Qanun superceded Razi’s (Rhazes’) Hawi, Ali ibn Abbas’s Maliki, and even the works of Galen, and remained supreme for six centuries. Ibn Sina not only synthesized the available knowledge, but he also made many original contributions. The Qanun (pronounced Qanoon) deals with general medicines, drugs (seven hundred sixty), diseases affecting all parts of the body from head to foot, specially pathology and pharmacopoia. It was recognized as the most authentic materia medica.

Among his original contributions are such advances as recognition of the contagious nature of phthisis and tuberculosis, distribution of diseases by water and soil, and interaction between psychology and health. He was the first to describe meningitis and made rich contributions to anatomy, gynecology and child health. Also, he was the first physician who suggested the treatment for lachrymal fistula and introduced medical probe for the channel.

Ibn Sina’s Qanun contains many of his anatomical findings which are accepted even today. Ibn Sina was the first scientist to describe the minute and graphic description of different parts of the eye, such as conjuctive sclera, cornea, choroid, iris, retina, layer lens, aqueous humour, optic nerve and optic chiasma.

Ibn Sina condemned conjectures and presumptions in anatomy and called upon physicians and surgeons to base their knowledge on a close study of human body. He observed that Aorta at its origin contains three valves which open when the blood rushes into it from the heart during contraction and closes during relaxation of the heart so that the blood may not be poured back into the heart. He asserts that muscular movements are possible because of the nerves supplied to them, and the perception of pain in the muscles is also due to the nerves. Further, he observes that liver spleen and kidney do not contain any nerves but the nerves are embedded in the covering of these organs.

The Qanun (Canon) was translated into Latin by Gerard of Cremona in the twelfth century. It became the text book for medical education in the schools of Europe. The demand for it may be appreciated from the fact that in the last thirty years of the fifteenth century it was issued sixteen times - fifteen editions being in Latin and one in Hebrew, and that it was reissued more than twenty times during the sixteenth century. In 1930 Cameron Gruner partly translated this book into English entitled “A Treatise on the Canons of Medicine of Avicenna.” From the twelfth to seventeenth centuries the Qanun served as the chief guide to medical science in the West. Dr. William Osler, author of the Evolution of Modern Science, writes: “The Qanun has remained a medical bible for a longer period than any other work.”

Ibn Sina’s Kitab al-Shifa (Book of Healing) was a philosophical encyclopedia, covering a vast area of knowledge from philosophy to science. His philosophy synthesizes Aristotelian tradition, Neoplatonic influences and Muslim theology. Kitab al-Shifa was known as ‘Sanatio’ in its Latin translation. Besides Shifa his well-known treatises in philosophy are al-Najat and Isharat. He classified the entire field into two major categories: the theoretical knowledge and the practical knowledge. The former included physics, mathematics and metaphysics, and the latter ethics, economics and politics.

Ibn Sina also contributed to mathematics, physics, music and other fields. He made several astronomical observations, and devised a device similar to the vernier, to increase the precision of instrumental readings. In Physics, he contributed to the study of different forms of energy, heat, light and mechanical, and such concepts as force, vacuum and infinity. He made the important observation that if the perception of light is due to the emission of some sort of particles by the luminous source, the speed of light must be finite. He propounded on an interconnection between time and motion, and also made investigations on specific gravity and used an air thermometer.

In the field of Chemistry, he did not believe in the possibility of chemical transmutation in metals. These views were radically opposed to those prevailing at his time. His treatise on minerals was one of the main sources of geology of Christian encyclopedist of the thirteenth century.

In the field of Music, his contribution was an improvement over Farabi’s (al-Pharabius) work and was far ahead of knowledge prevailing elsewhere on the subject. Doubling with the fourth and fifth was a ‘great’ step toward the harmonic system. Ibn Sina observed that in the series of consonances represented by (n+1)/n, the ear is unable to distinguish them when n = 45.

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MUHAMMAD BIN MUSA AL-KHWARIZMI (Algorizm) (770 - 840 C.E.)
by
Dr. A. Zahoor

Abu Abdullah Muhammad Ibn Musa al-Khwarizmi was born at Khwarizm (Kheva), a town south of river Oxus in present Uzbekistan. (Uzbekistan, a Muslim country for over a thousand years, was taken over by the Russians in 1873.) His parents migrated to a place south of Baghdad when he was a child. The exact date of his birth is not known. It has been established from his contributions that he flourished under Khalifah (Calif) Al-Mamun at Baghdad during 813 to 833 C.E. and died around 840 C.E. He is best known for introducing the mathematical concept Algorithm, which is so named after his last name.

Al-Khwarizmi was one of the greatest mathematicians ever lived. He was the founder of several branches and basic concepts of mathematics. He is also famous as an astronomer and geographer. Al-Khwarizmi influenced mathematical thought to a greater extent than any other medieval writer. He is recognized as the founder of Algebra, as he not only initiated the subject in a systematic form but also developed it to the extent of giving analytical solutions of linear and quadratic equations. The name Algebra is derived from his famous book Al-Jabr wa-al-Muqabilah. He developed in detail trigonometric tables containing the sine functions, which were later extrapolated to tangent functions. Al-Khwarizmi also developed the calculus of two errors, which led him to the concept of differentiation. He also refined the geometric representation of conic sections

The influence of Al-Khwarizmi on the growth of mathematics, astronomy and geography is well established in history. His approach was systematic and logical, and not only did he bring together the then prevailing knowledge on various branches of science but also enriched it through his original contributions. He synthesized Greek and Hindu knowledge and also contained his own contribution of fundamental importance to mathematics and science. He adopted the use of zero, a numeral of fundamental importance, leading up to the so-called arithmetic of positions and the decimal system. His pioneering work on the system of numerals is well known as “Algorithm,” or “Algorizm.” In addition to introducing the Arabic numerals, he developed several arithmetical procedures, including operations on fractions.

In addition to an important treatise on Astronomy, Al-Khwarizmi wrote a book on astronomical tables. Several of his books were translated into Latin in the early l2th century by Adelard of Bath and Gerard of Cremona. The treatises on Arithmetic, Kitab al-Jam’a wal-Tafreeq bil Hisab al-Hindi, and the one on Algebra, Al-Maqala fi Hisab-al Jabr wa-al-Muqabilah, are known only from Latin translations. It was this later translation which introduced the new science to the West “unknown till then.” This book was used until the sixteenth century as the principal mathematical text book of European universities. His astronomical tables were also translated into European languages and, later, into Chinese.

The contribution of Al-Khwarizmi to geography is also outstanding. He not only revised Ptolemy’s views on geography, but also corrected them in detail. Seventy geographers worked under Khwarizmi’s leadership and they produced the first map of the globe (known world) in 830 C.E. He is also reported to have collaborated in the degree measurements ordered by khalifah (Caliph) Mamun al-Rashid were aimed at measuring of volume and circumference of the earth. His geography book entitled “Kitab Surat-al-Ard,” including maps, was also translated. His other contributions include original work related to clocks, sundials and astrolabes. He also wrote Kitab al-Tarikh and Kitab al-Rukhmat (on sundials

ABU BAKR MUHAMMAD BIN ZAKARIYA AR-RAZI (Rhazes) (864 - 930 C.E.)

by
Dr. A. Zahoor

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The well-known writer George Sarton says in his Introduction to the History of Science that “Rhazes was the greatest physician of Islam and the Medieval Ages.” And the Encyclopedia of Islam remarks that “Rhazes remained up to the 17th century the undisputable authority of medicine.” The Bulletin of the World Health Organization (WHO), May 1970, pays tribute to him by stating: “His writings on smallpox and measles show originality and accuracy, and his essay on infectious diseases was the first scientific treatise on the subject.”

Abu Bakr Muhammad Ibn Zakariya Ar-Razi was born at Ray near modern Tehran in 251 A.H. (864 C.E.) It is said that early in his life al-Razi was interested in singing and music besides other professions. Because of his eagerness for knowledge, he became more interested in the study of alchemy and chemistry, philosophy, logic, mathematics and physics. It was the field of medicine that he spent most of his life, practicing it, studying and writing about it. Due to his fame in medicine he was appointed head of the physicians of the Ray Hospital, and later put in charge of the Baghdad main Hospital during the reign of the Adhud-Daulah.

An interesting episode of Al-Razi’s remarkable method of choosing the right spot for the Baghdad main hospital is described as follows. When Adhud Daulah asked Al-Razi to build a hospital, he had pieces of fresh meat placed at various parts of the city of Baghdad. Some time later, he checked each piece to find out which one was less rotten than the others, and he chose the spot of the least rotten pieces of meat a site for the hospital.

Ar-Razi was a pioneer in many areas of medicine and treatment and the health sciences in general. In particular, he was a pioneer in the fields of pediatrics, obstetrics and ophthalmology. In medicine, his contribution was so significant that it can only be compared to that of Ibn Sina (Avicenna). Some of his works in medicine, e.g., Kitab al-Mansoori, Al-Hawi, Kitab al-Mulooki and Kitab al-Judari wa al-Hasabah earned everlasting fame. A special feature of his medical system was that he greatly favored cures through correct and regulated food. This was combined with his emphasis on the influence of psychological factors on health. He also tried proposed remedies first on animals in order to evaluate in their effects and side effects. Ar-Razi was the first person to introduce the use of alcohol (Arabic Al-Kuhl) for medical purposes. He was also an expert surgeon and was the first to use opium for anaesthesia.

Ar-Razi was the first to give an account of the operation for the extraction of a cataract and also the first scientist to discuss the pupillary reaction or the widening and narrowing of the pupil of the eye. He explained that the reaction was due to the presence of small muscles which act according to the intensity of light. The current understanding on this subject confirms his work.

The greatest medical work of Ar-Razi (Rhazes), and perhaps the most extensive ever written by a medical man, is al-Hawi, i.e., the “Comprehensive Book,” which includes indeed Greek, Syrian, and early Arabic medical knowledge in their entirety. Throughout his life Ar-Razi must have collected extracts from all the books available to him on medicine. In his last years, he combined these with his medical experience into an enormous twenty volume medical encyclopedia. Al-Hawi was the largest medical encyclopedia composed by then. It was translated into Latin under the auspices of Charles I of Anjou by the Sicilian Jewish physician, Faraj ibn Salim (Farragut) in 1279 and was repeatedly printed from 1488 onwards. Al-Hawi was known as ‘Continens’ in its Latin translation. “By 1542 there had appeared five editions of this vast and costly work, besides many more of various parts of it. Its influence on European medicine was thus very considerable.” (The Legacy of Islam, pp. 323-5). Another scholar points out that Ar-Razi’s “al-Hawi was one of the nine volumes constituting the whole library of the Paris Faculty of Medicine in 1395.” (Durant; Haider, Bammate, 29).

Kitab al-Mansoori, which was translated into Latin (known by the title ‘Liber Almansoris’) in the 1480s in Milan, comprised ten volumes and dealt exhaustively with Greco-Arab medicine. Some of its volumes have been published separately into German and French. The ninth volume of the translation made by Gerard of Cremona the “Nonus Al-Mansuri,” was a popular text in Europe until the sixteenth century (Durant, p247). Ar-Razi in Al-Mansoori devoted a whole chapter on anatomy. In it he has presented a detailed description of the various organs of the human body, and sensory and motor parts. He has also given elaborate descriptions of the intervertebral foramina and the spinal chord, and correctly asserted that an injury either to the brain or spinal chord would lead to paralysis of the parts of the organs whose nerve supply was damaged or destroyed.

His al-Judari wa al-Hasabah was the first treatise on smallpox and chickenpox, and is largely based on Razi’s original contribution. It was first translated into Latin in 1565 and later into several European languages and went into forty editions between 1498 and 1866. It was translated into English by William A. Greenhill, London, 1848. Through his treatise Razi became the first to draw clear comparisons between smallpox and chickenpox.

Ar-Razi gave many valuable pieces of advice to practicing physicians: "A physician should not forget to ask his patient all sorts of questions pertaining to the possible causes of his illness, both internal and external…If a physician can treat a patient through nutrition rather than medicine he has done the best thing. A physician should always try to convince his patient of improvement and hope in the effectiveness of treatment, for the psychological state of the patient has a great effect on his physical condition. He used to advise his patients thus: “Whoever seeks treatment with too many physicians might suffer the risk of the faults of each one of them. A patient should restrict consultation to one trustworthy physician.”

Ar-Razi also compounded medicines and took keen interest in experimental and theoretical sciences. It is conjectured that he developed his chemistry independently of Jabir Ibn Hayyan (Geber). He has discussed several chemical reactions and also given full descriptions of and designs for about twenty instruments used in chemical investigations. His description of chemical knowledge is in plain and plausible language. One of his books Kitab-al-Asrar deals with the preparation of chemical materials and their utilization. Another one was translated into Latin under the name Liber Experimentorum. He went beyond his predecessors in dividing substances into plants, animals and minerals, thus in a way opening the way for inorganic and organic chemistry. By and large, this classification still holds. As a chemist, he was the first to produce sulfuric acid together with some other acids, and he also prepared alcohol by fermenting sweet products.

His contribution as a philosopher is also well known. The basic elements in his philosophical system are the creator, spirit, matter, space and time. He discusses their characteristics in detail and his concepts of space and time as constituting a continuum is outstanding.

Ar-Razi was a prolific author, who has left monumental treatises on numerous subjects. He has more than two hundred outstanding scientific contributions to his credit, out of which about half deal with medicine and twenty-one on Alchemy. He also wrote on physics, mathematics, astronomy and optics, but these writings could not be preserved. A number of his other books, including Jami-fi-al-Tib, Maqalah fi al-Hasat fi Kuli wa al-Mathana, Kitab al-Qalb, Kitab-al-Mafasil, Kitab-al-'Ilaj al-Ghoraba, Bar al-Sa’ah, and al-Taqseem wa al-Takhsir, have been published in various European languages. About 40 of his manuscripts are still extant in the museums and libraries of Iran, Paris, Britain, and Rampur (India). His contribution has greatly influenced the development of science, in general, and medicine in particular.

Like other great scholars of Islamic history, Razi’s erudition was all-embracing and his scientific work remarkable. The foregoing description represents only a part of the great legacy left by Ar-Razi. He died in 930 C.E. Razi’s portrait adorns the great hall of the Faculty of Medicine in the University of Paris.

Can you post somthing about IBN KHUlDUN??
or provide the link..