<p>The first plastics were developed as a substitute for natural rubber. Chemically, rubber is a polymer - a compound containing large molecules that are formed by the bonding of many smaller, simpler units, repeated over and over again. The same bonding principle - polymerization - is the basis of the creation of a huge range of plastics by the chemical industry.</p>
<p>The first plastics were developed as a substitute for natural rubber. Chemically, rubber is a polymer - a compound containing large molecules that are formed by the bonding of many smaller, simpler units, repeated over and over again. The same bonding principle - polymerization - is the basis of the creation of a huge range of plastics by the chemical industry.</p>
<p>The first plastic was developed as a result of a competition in the USA. In the 1860s, $10,000 was offered to anybody who could replace ivory - supplies of which were declining - with something equally good as a material for making billiard balls. The prize was won by John Wesley Hyatt, with a material called celluloid. Celluloid was made by dissolving cellulose, a carbohydrate obtained from plants, in a solution of camphor dissolved in ethanol. This new material rapidly found other applications in the manufacture of everyday products such as knife handles and detachable collars and cuffs. But perhaps the best-known celluloid product was photographic film, without which the film industry could never have taken off at the end of the 19th century.</p>
<p>Celluloid can be repeatedly softened and reshaped by heat, and is known as a thermoplastic. In 1907, Leo Baekeland (1863-1944), a Belgian chemist working in the USA, invented a different kind of plastic, by causing phenol and formaldehyde to react together. Baekeland called it Bakelite, and it was the first of the thermosets-plastic that can be cast and moulded while hot, but cannot be softened by heat and reshaped once they have set. Bakelite was a good insulator, and was resistant to water and acid. With these properties it was soon being used in the manufacture of electrical switches as well as a variety of domestic items.</p>
<p>As the century went on, the range of newly developed plastic increased. Chemists began looking for other small molecules that could be strung together to make polymers. In the 1930s, chemists in Britain discovered that the gas ethylene would polymerize under heat and pressure to form a thermoplastic they called polythene. Polypropylene followed in the 1950s. Both are used to make bottles, pipes and plastic bags. A small change in the starting material - replacing a hydrogen atom in ethylene with a chlorine atom - produced rigid PVC (polyvinyl chloride), a fireproof plastic suitable for drains and gutters. By adding certain chemicals, a soft form of PVC can be produced, suitable as a substitute for rubber in items such as waterproof clothing. A closely related plastic is Teflon or PTFE (polytetrafluoroethylene). It produces very little friction, making it ideal for products such as non-stick frying pans.</p>
<p>Polystyrene, a hard, clear material like glass, was developed during the 1930s in Germany, and its applications included food containers and toys. Expanded polystyrene is rigid and is widely used in packaging and insulation. Polyurethane, developed in the same country, was commonly produced as a foam which was very useful in the production of insulating materials.</p>
<p>In the 1930s, the first of the man-made fibres was created-nylon. Its inventor was a chemist called Wallace Carothers (1896-1937), who worked for the Du Pont company in the USA. He found that under the right conditions two particular chemicals would form a polymer that could be pumped out through holes and then stretched to form long glossy threads that could be woven like silk. Its first use was to make parachutes for the US armed forces in World War II. In the postwar years, it completely replaced silk in the manufacture of stockings.</p>
Sample Questions
- Question 1: Multiple choice — choose the best description of the main argument.
- Question 2: True / False / Not Given — decide if the statement matches the text.
- Question 3: Gap-fill — complete the summary using words from the passage.
About this practice
IELTS Reading practice tests contain three academic passages across a wide range of topics, paired with question types including gap-fill, multiple choice, heading matching and True/False/Not Given. Regular practice builds familiarity with the test format, improves reading speed and develops effective information retrieval strategies. IELTS Mate provides an interactive environment where you can track progress and study alongside a community of IELTS learners. With over 100 practice sets available, you can work at your own pace and build a learning path around your target band score. Reviewing incorrect answers after each session helps turn repeated mistakes into practical reading strategies.
FAQ
How many question types are in IELTS Reading?
IELTS Reading features 14 main question types: True/False/Not Given, Yes/No/Not Given, gap-fill, multiple choice, heading matching, sentence completion and table completion. Each requires different strategies.
How often should I practice Reading tests?
Aim for 3-4 Reading tests per week with a 60-minute time limit each. After each test, analyse every incorrect answer carefully to understand the reasoning and avoid repeating mistakes.
Which Reading tests are best for beginners?
Start with easy or medium practice sets, then increase the difficulty once you are comfortable with the question types and time limit.