The Industrial Revolution in Britain
The Industrial Revolution began in Britain in the mid-1700s and by the 1830s and 1840s had spread to many other parts of the world, including the United States. In Britain, it was a period when a largely rural, agrarian* society was transformed into an industrialised, urban one. Goods that had once been crafted by hand started to be produced in mass quantities by machines in factories, thanks to the invention of steam power and the introduction of new machines and manufacturing techniques in textiles, iron-making and other industries. The foundations of the Industrial Revolution date back to the early 1700s, when the English inventor Thomas Newcomen designed the first modern steam engine. Called the 'atmospheric steam engine', Newcomen's invention was originally used to power machines that pumped water out of mines. In the 1760s, the Scottish engineer James Watt started to adapt one of Newcomen's models, and succeeded in making it far more efficient. Watt later worked with the English manufacturer Matthew Boulton to invent a new steam engine driven by both the forward and backward strokes of the piston, while the gear mechanism it was connected to produced rotary motion. It was a key innovation that would allow steam power to spread across British industries. The demand for coal, which was a relatively cheap energy source, grew rapidly during the Industrial Revolution, as it was needed to run not only the factories used to produce manufactured goods, but also steam-powered transportation. In the early 1800s, the English engineer Richard Trevithick built a steam-powered locomotive, and by 1830 goods and passengers were being transported between the industrial centres of Manchester and Liverpool. In addition, steam-powered boats and ships were widely used to carry goods along Britain's canals as well as across the Atlantic. Britain had produced textiles like wool, linen and cotton, for hundreds of years, but prior to the Industrial Revolution, the British textile business was a true 'cottage industry', with the work performed in small workshops or even homes by individual spinners, weavers and dyers. Starting in the mid-1700s, innovations like the spinning jenny and the power loom made weaving cloth and spinning yarn and thread much easier. With these machines, relatively little labour was required to produce cloth, and the new, mechanised textile factories that opened around the country were quickly able to meet customer demand for cloth both at home and abroad. The British iron industry also underwent major change as it adopted new innovations. Chief among the new techniques was the smelting of iron ore with coke (a material made by heating coal) instead of the traditional charcoal. This method was cheaper and produced metals that were of a higher quality, enabling Britain's iron and steel production to expand in response to demand created by the Napoleonic Wars (1803-15) and the expansion of the railways from the 1830s. The latter part of the Industrial Revolution also saw key advances in communication methods, as people increasingly saw the need to communicate efficiently over long distances. In 1837, British inventors William Cooke and Charles Wheatstone patented the first commercial telegraphy system. In the 1830s and 1840s, Samuel Morse and other inventors worked on their own versions in the United States. Cooke and Wheatstone's system was soon used for railway signalling in the UK. As the speed of the new locomotives increased, it was essential to have a fast and effective means of avoiding collisions. The impact of the Industrial Revolution on people's lives was immense. Although many people in Britain had begun moving to the cities from rural areas before the Industrial Revolution, this accelerated dramatically with industrialisation, as the rise of large factories turned smaller towns into major cities in just a few decades. This rapid urbanisation brought significant challenges, as overcrowded cities suffered from pollution and inadequate sanitation. Although industrialisation increased the country's economic output overall and improved the standard of living for the middle and upper classes, many poor people continued to struggle. Factory workers had to work long hours in dangerous conditions for extremely low wages. These conditions along with the rapid pace of change fuelled opposition to industrialisation. A group of British workers who became known as 'Luddites' were British weavers and textile workers who objected to the increased use of mechanised looms and knitting frames. Many had spent years learning their craft, and they feared that unskilled machine operators were robbing them of their livelihood. A few desperate weavers began breaking into factories and smashing textile machines. They called themselves Luddites after Ned Ludd, a young apprentice who was rumoured to have wrecked a textile machine in 1779. The first major instances of machine breaking took place in 1811 in the city of Nottingham, and the practice soon spread across the country. Machine-breaking Luddites attacked and burned factories, and in some cases they even exchanged gunfire with company guards and soldiers. The workers wanted employers to stop installing new machinery, but the British government responded to the uprisings by making machine-breaking punishable by death. The unrest finally reached its peak in April 1812, when a few Luddites were shot during an attack on a mill near Huddersfield. In the days that followed, other Luddites were arrested, and dozens were hanged or transported to Australia. By 1813, the Luddite resistance had all but vanished. *agrarian: relating to the land, especially the use of land for farming
Complete the notes below.
Choose ONE WORD ONLY from the passage for each answer.
Write your answers in boxes 1-7 on your answer sheet.
题目:在 Watt 和 Boulton 发明的蒸汽机内, 的
运动与齿轮系统相连。
分析:人名定位词明显,本题空白处的运动应当与 gear
system 相连。原文中提及 Watt 和 Boulton 一起发明了
一款蒸汽机(new steam engine),通过活塞(piston)
的来回运动驱动(forward and backward strokes),而
与之相连的齿轮机器(gear mechanism)则进行旋转式
运动。forward and backward strokes 与 mechanism 分别
对应题目中的 movement 和 gear system。因此答案为
piston。
题目:驱动蒸汽机需要更多的 供应。
分析:本题缺失成分是 greater 的修饰对象。原文中提
及驱动蒸汽机时,指出“对煤这种相对便宜的能源的
需求迅速增长(grew rapidly),因为不仅工厂生产产品需
要煤,而且蒸汽动力运输(steam-powered transportation)
也需要煤”。由此可见,greater supply…was required 对
应原文中 demand…grew rapidly,属于供和需的合理改
写,本题缺失成分为“煤”。因此答案为 coal。
题 目: 在 工 业 革 命 之 前, 纺 纱 工 和 织 布 工 在 家 中 和
工作。
分析:本题要查找的是能够与 at home 并列的位置,即
工人除了在家,还能在哪里工作。原文提及纺织工时
指出:在工业革命之前(prior to),英国纺织业是真
正的“家庭手工业”,纺纱工、织布工(spinners, weavers)
和染色工单独在小作坊甚至家中(in small workshops or
even homes)工作。对照题目与原文可知,除了并未改
写的“工业革命”和纺织工的表达外,Before 对应原
文中的 prior to,且与题干 home 并列的内容是“小作
坊”。因此答案为 workshops。
题目:自从珍妮纺纱机和动力织布机被发明后,生产布料所需的 减少了。
分析:本题要找的是某个时间点后,生产布料不需要
那么多的人 / 事 / 物。珍妮纺纱机(spinning jenny)等
专有名词原文中并未更改,作者指出:珍妮纺纱机和
动力织机等发明(innovations),使得生产布料只需要
相对较少的劳动力(little labour was required),其中
little…was required 和 innovations 分别对应题目中的
Not as much 和 invented。由此可知,“劳动力”不需要
那么多。注意:在雅思考试中,英式拼写和美式拼写
均可被判定是正确答案,如本题。因此答案为 labour/
labor。
题目:使用焦炭冶炼铁矿石制造出的材料的 更好。
分 析: 本 题 要 找 比 以 前 更 好 的 成 分。 原 文 中 提 及
冶 铁 时指出:用焦炭代替传统的木炭来冶炼铁矿石
(smelting of iron ore with coke),该表达与题目定位词
一样。下文提到“生产出的金属的质量更高(higher
quality)”,higher 对 应 题 目 中 的 better。 因 此 答 案
为 quality。
题目:对铁的需求随着 的发展增加了。
分析:本题缺失成分的发展与对铁的需求增加有关。
原文提到,新的冶铁方式使英国的钢铁生产规模得以
扩大(enabling…to expand),以满足拿破仑战争和 19
世纪 30 年代铁路扩张(expansion of the railways)对
钢铁的需求(demand)。其中,expand 和 expansion 对
应题目中的 increased 和 growth,因此“铁路”为缺失
成分。注意:本题答案要排除“拿破仑战争”,因为原
文中并未提及拿破仑战争的扩张,无法对应题目中的
growth。因此答案为 railway(s)。
题目:新城市肮脏、拥挤,缺乏足够的 。
分析:本题在讲城市化进程中出现的问题,关键要找
缺乏什么。原文中提及 urbanisation 时指出,快速的城
市化带来了巨大的挑战,过度拥挤的(overcrowded)城
市面临着污染(pollution)和卫生设施不足(inadequate
sanitation)的问题。对照题目可知,dirty 和 crowded
分别对应原文中的 pollution 和 overcrowded,而 lacked
sufficient 则对应原文中的 inadequate,“卫生设施”是
本题缺失成分。因此答案为 sanitation。
