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BEST IELTS Academic Reading Test 510
IELTS ACADEMIC READING TEST 510 – PASSAGE – 1
IELTS ACADEMIC READING TEST – 510
READING PASSAGE – 1
The Birth of Blue
AS a primary colour, blue has been the most difficult for artists and scientists to create.
Artists have always been enchanted by blue, yet fine blues have long been difficult to obtain. Blues are relatively rare in nature, and painters throughout the ages have therefore found themselves at the mercy of what contemporary chemical technology could offer. Some blues have been prohibitively expensive, others were unreliable. The quest for a good blue has driven some crucial technological innovations, showing that the interaction of art and science has not always been a one-way affair.
The first pigments were simply ground-up coloured minerals dug from the earth. But few blue minerals are suitable as pigments – so there are no blues in cave art. Ancient Egyptian artists used blue prominently; however, because they knew how to make a fine artificial pigment, now known as Egyptian blue.
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The discovery of Egyptian blue, like that of many other artificial pigments, was almost certainly an accident. The Egyptians manufactured blue-glazed stones and ornaments called faience using a technique they inherited from the Mesopotamians. Faience manufacture was big business in the ancient world – it was traded all over Europe by 1500 BC. Faience is made by heating stone ornaments in a kiln with copper minerals such as malachite. Egyptian blue, which was made from at least 2500 BC, comes from firing chalk or limestone with sand and copper minerals, and probably appeared by the chance mixture of these ingredients in a faience kiln.
Scientists recently deduced the secrets of another ancient blue: Maya blue, used for centuries throughout Central America before the Spanish Conquest. This is a kind of clay – a mineral made of sheets of atoms – with molecules of the blue dye indigo wedged between the sheets. Using indigo in this way, makes it less liable to decompose. No one has made colours this way since the Mayas, and no one knows exactly how they did it. But technologists are now interested in using the same trick to make stable pigments from other dyes.
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The finest pigment available to medieval artists was ultramarine, which began to appear in Western art in the 13th century. It was made from the blue mineral lapis lazuli, of which only one source was known: the remote mines of Badakshan, now in Afghanistan. In addition to the difficulty of transporting the mineral over such distances, making the pigment was a tremendously laborious business. Lapis lazuli turns grayish when powdered because of impurities in the mineral. To extract the pure blue pigment, the powder has to be mixed to a dough with wax and kneaded repeatedly in water.
As a result, ultramarine could cost more than its weight in gold, and medieval artists were very selective in using it. Painters since the Renaissance craved a cheaper, more accessible, and blue to compare with ultramarine. Things improved in 1704, when a Berlin-based colour maker called Diesbach discovered the first “modern” synthetic pigment: Prussian blue. Diesbach was trying to make a red pigment, using a recipe that involved the alkali potash. But Diesbach’s potash was contaminated with animal oil, and the synthesis did not work out as planned. Instead of red, Diesbach made blue.
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The oil had reacted to produce cyanide, a vital ingredient of Prussian blue. Diesbach kept his recipe secret for many years, but it was discovered and published in 1724, after which anyone could make the colour. By the 1750s, it cost just a tenth of ultramarine. But it wasn’t such a glorious blue, and painters still weren’t satisfied. They got a better alternative in 1802, when the French chemist Louis Jacques Thenard invented cobalt blue.
Best of all was the discovery in 1826 of a method for making ultramarine itself. The French Society for the Encouragement of National Industry offered a prize of 6,000 francs in 1824 to anyone who could make artificial ultramarine at an affordable price.
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The Toulouse chemist jean-Baptiste Guimet was awarded the prize two years later, when he showed that ultramarine could be made by heating china clay; soda, charcoal, sand and sulphur in a furnace. This meant that there was no longer any need to rely on the scarce natural source, and ultramarine eventually became a relatively cheap commercial pigment (called French ultramarine. as it was first mass- produced in Paris).
In the 1950s, synthetic ultramarine became the source of what is claimed to be the world’s most beautiful blue. Invented by the French artist Yyes Klein in collaboration with a Parisian paint manufacturer, Edouard Adam, International Klein Blue is a triumph of modern chemistry. Klein was troubled by how pigments lost their richness when they were mixed with liquid binder to make a paint. With Adams help, he found that a synthetic resin, thinned with organic solvents, would retain this vibrant texture in the dry paint layer. In 1957, Klein launched his new blue with a series of monochrome paintings, and in 1960 he protected his invention with a patent.
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Questions 1-4
Choose NO MORE THAN THREE WORDS for each answer.
The colours used in cave paintings and other early art were made by crushing 1………………. . However, later artists have generally had to rely on the 2………………. of the day for their supplies of blue. Among the first examples of the widespread use of blue was in 3……………… art. Over the centuries, many more attempts to create acceptable blues have been made, some of which have led to significant 4………..
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Questions 5 and 6
Choose the correct letter A, B, C or D.
5. What was the main disadvantage in using ultramarine for medieval artists?
A. lt contained a number of impurities.
B. lt was excessively expensive.
C. The colour wasn’t permanent.
D. The preparation process was hazardous.
6. The discovery of Prussian blue was the result of
A. using the wrong quantity of an ingredient.
B. mixing the wrong ingredients together.
C. including an ingredient that was impure.
D. using an ingredient of the wrong colour.
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Questions 7-13
Look at the descriptions and the list of types of blue below. Match each description with the type of blue
7. developed in the early years of the 19th century ……….
8. derived from a scarce natural resource ……….
9. specially designed to retain its depth of colour when used in paint ……….
10. was cheap to produce but had limited appeal for artists ……….
11. made using a technique which is not yet fully understood ……….
12. thought to have been produced during another manufacturing process ……….
13. came to be manufactured inexpensively in large quantities ……….
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TYPES OF BLUE
A. Egyptian blue
B. Maya blue
C. Ultramarine
D. Prussian blue
E. cobalt blue
F. French ultramarine
G. International Klein Blue
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ANSWERS
1. (COLOURED) MINERALS
2. (CHEMICAL) TECHNOLOGY / SCIENCE
3. (ANCIENT) EGYPTIAN
4. TECHNOLOGICAL INNOVATIONS
5. B
6. C
7. E
8. C
9. G
10. D
11. B
12. A
13. F
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