← 强化班阅读课 强化班阅读课 · 第 1 课

第 1 课 · A Chronicle of Timekeeping(计时简史)

剑雅 8 · Test 1 · Passage 1 | 学生水平 5.5–6 | 时长 90 分钟

00今天这 90 分钟怎么用
0–15 min
雅思阅读到底考什么:熟练度 ≠ 词汇量;考试六大坑
15–35 min
文章结构速读(A–H 每段一句话主旨)
35–70 min
三类题出题思路拆解 + 互动真题演练(带讲解)
70–90 min
本课小结 + 作业布置(翻译 + 错题整理)
本课目标:建立"阅读考熟练度"的认知,把今天这篇真题当成样板,拆透考官是怎么出题的。作业不是背单词,是练定位和整理踩过的坑。
01雅思阅读到底考什么:熟练度,不是词汇量

先说一句最关键的话:阅读考察的是"在 60 分钟内,用定位 + 同义替换,从文章里把 40 个答案找出来"的熟练度,不是默写单词。

反例:全篇单词都认识,但逐句翻译、找不到答案句 → 熟练度低,照样做不对。正例:有些词不认识,但能靠"定位词 + 替换"把答案揪出来 → 熟练度高,照样拿分。

熟练度 = 三件套,缺一不可:

维度是什么怎么练
定位扫读题干圈关键词,去原文快速找到答案句每天限时扫读,练"一眼锁定"
替换识别题干和原文的同义替换(很少原词照抄)积累替换对,整理到错题本
策略顺序题顺文走、乱序题先扫选项按题型分类刷,固化打法
词汇量是"必要非充分"条件:不认识词会卡,但光背词不练定位,分数上不去。把"背单词"升级成"练定位 + 积累替换"。
02考试里最容易踩的 6 个坑
1
逐字翻译,时间崩盘
60 分钟 3 篇,没时间逐句译。看懂大意 + 定位即可,不需要每句翻成中文。正确做法:先题后文,命中即做,不读完不纠结。
2
死磕生词,卡住不走
一个词不认识就停住,后面全乱。正确做法:跳过长难词,靠定位和替换推断,做完再回头。
3
TFNG 脑补
原文没说的事,被你当成 FALSE / TRUE。正确做法:只认原文有的;找不到依据 = NOT GIVEN。
4
乱序题按文章顺序硬找
段落匹配 / Heading 是乱序的,一段可能出多题,顺序找必漏。正确做法:先扫全部选项,再跳读各段,一段可能对应多个题。
5
不看题目要求
漏看 NO MORE THAN TWO WORDS / 答案格式,白丢分。正确做法:动笔前先读题目指令,抄词严格照原文。
6
填空不预判词性 / 单复数
抄错形式(多词、单复数错)。正确做法:填空前先预判所填词的词性、单复数、字数上限。
03原文与题目(含互动演练 · 可高亮标注)
上课取用材料:鼠标选中任意文字即可 高亮标注(再点一次清除)。文章 A–H 完整,题目 1–13 完整。

A According to archaeological evidence, at least 5,000 years ago, and long before the advent of the Roman Empire, the Babylonians began to measure time, introducing calendars to co-ordinate communal activities, to plan the shipment of goods and, in particular, to regulate planting and harvesting. They based their calendars on three natural cycles: the solar day, marked by the successive periods of light and darkness as the earth rotates on its axis; the lunar month, following the phases of the moon as it orbits the earth; and the solar year, defined by the changing seasons that accompany our planet's revolution around the sun.

B Before the invention of artificial light, the moon had greater social impact. And, for those living near the equator in particular, its waxing and waning was more conspicuous than the passing of the seasons. Hence, the calendars that were developed at the lower latitudes were influenced more by the lunar cycle than by the solar year. In more northern climes, however, where seasonal agriculture was practised, the solar year became more crucial. As the Roman Empire expanded northward, it organised its activity chart for the most part around the solar year.

C Centuries before the Roman Empire, the Egyptians had formulated a municipal calendar having 12 months of 30 days, with five days added to approximate the solar year. Each period of ten days was marked by the appearance of special groups of stars called decans. At the rise of the star Sirius just before sunrise, which occurred around the all-important annual flooding of the Nile, 12 decans could be seen spanning the heavens. The cosmic significance the Egyptians placed in the 12 decans led them to develop a system in which each interval of darkness (and later, each interval of daylight) was divided into a dozen equal parts. These periods became known as temporal hours because their duration varied according to the changing length of days and nights with the passing of the seasons. Summer hours were long, winter ones short; only at the spring and autumn equinoxes were the hours of daylight and darkness equal. Temporal hours, which were first adopted by the Greeks and then the Romans, who disseminated them through Europe, remained in use for more than 2,500 years.

D In order to track temporal hours during the day, inventors created sundials, which indicate time by the length or direction of the sun's shadow. The sundial's counterpart, the water clock, was designed to measure temporal hours at night. One of the first water clocks was a basin with a small hole near the bottom through which the water dripped out. The falling water level denoted the passing hour as it dipped below hour lines inscribed on the inner surface. Although these devices performed satisfactorily around the Mediterranean, they could not always be depended on in the cloudy and often freezing weather of northern Europe.

E The advent of the mechanical clock meant that although it could be adjusted to maintain temporal hours, it was naturally suited to keeping equal ones. With these, however, arose the question of when to begin counting, and so, in the early 14th century, a number of systems evolved. The schemes that divided the day into 24 equal parts varied according to the start of the count: Italian hours began at sunset, Babylonian hours at sunrise, astronomical hours at midday and 'great clock' hours, used for some large public clocks in Germany, at midnight. Eventually these were superseded by 'small clock', or French, hours, which split the day into two 12-hour periods commencing at midnight.

F The earliest recorded weight-driven mechanical clock was built in 1283 in Bedfordshire in England. The revolutionary aspect of this new timekeeper was neither the descending weight that provided its motive force nor the gear wheels (which had been around for at least 1,300 years) that transferred the power; it was the part called the escapement. In the early 1400s came the invention of the coiled spring or fusee which maintained constant force to the gear wheels of the timekeeper despite the changing tension of its mainspring. By the 16th century, a pendulum clock had been devised, but the pendulum swung in a large arc and thus was not very efficient.

G To address this, a variation on the original escapement was invented in 1670, in England. It was called the anchor escapement, which was a lever-based device shaped like a ship's anchor. The motion of a pendulum rocks this device so that it catches and then releases each tooth of the escape wheel, in turn allowing it to turn a precise amount. Unlike the original form used in early pendulum clocks, the anchor escapement permitted the pendulum to travel in a very small arc. Moreover, this invention allowed the use of a long pendulum which could beat once a second and thus led to the development of a new floor-standing case design, which became known as the grandfather clock.

H Today, highly accurate timekeeping instruments set the beat for most electronic devices. Nearly all computers contain a quartz-crystal clock to regulate their operation. Moreover, not only do time signals beamed down from Global Positioning System satellites calibrate the functions of precision navigation equipment, they do so as well for mobile phones, instant stock-trading systems and nationwide power-distribution grids. So integral have these time-based technologies become to day-to-day existence that our dependency on them is recognised only when they fail to work.

Questions 1–4 段落信息匹配(选段落 A–H)
1a description of an early timekeeping invention affected by cold temperatures
▸ 看讲解正确答案:D
定位:D 段末句 "Although these devices performed satisfactorily around the Mediterranean, they could not always be depended on in the cloudy and often freezing weather of northern Europe."
思路:early timekeeping invention = 水钟;affected by cold = not depended on in freezing weather。全文只有 D 段提低温。易错:别选 B(B 讲地理/日历,不提低温)。
2an explanation of the importance of geography in the development of the calendar in farming communities
▸ 看讲解正确答案:B
定位:B 段 "for those living near the equator... In more northern climes, however, where seasonal agriculture was practised, the solar year became more crucial."
思路:geography = 赤道 / 低纬度 / 北部气候;farming communities = seasonal agriculture。B 段整段讲"地理位置不同 → 计时体系不同"。
3a description of the origins of the pendulum clock
▸ 看讲解正确答案:F
定位:F 段末 "By the 16th century, a pendulum clock had been devised..."
思路:origins = devised(发明)。易错选 G——G 段是"改良"摆钟(锚型擒纵),不是"起源"。考官故意用 G 段的 pendulum 干扰你。
4details of the simultaneous efforts of different societies to calculate time using uniform hours
▸ 看讲解正确答案:E
定位:E 段 "The schemes that divided the day into 24 equal parts varied... Italian hours... Babylonian hours... astronomical hours... 'great clock' hours... German..."
思路:uniform hours = 24 equal parts;different societies = 意大利 / 巴比伦 / 天文 / 德国等各国。一段列多个社会 = simultaneous efforts。注意:Q4 和 Q6 同出自 E 段(乱序题一段可出多题)。
Questions 5–8 事件 – 国籍匹配(选 A–F)
5They devised a civil calendar in which the months were equal in length.
▸ 看讲解正确答案:B(Egyptians)
定位:C 段 "the Egyptians had formulated a municipal calendar having 12 months of 30 days..."
思路:civil calendar = municipal calendar;months equal in length = 12 months of 30 days。定位到埃及人。
6They divided the day into two equal halves.
▸ 看讲解正确答案:F(French)
定位:E 段末 "...or French hours, which split the day into two 12-hour periods commencing at midnight."
思路:two equal halves = two 12-hour periods。和 Q4 同段(E 段),乱序题一段出多题。
7They developed a new cabinet shape for a type of timekeeper.
▸ 看讲解正确答案:D(English)
定位:G 段首 "In order to solve this, an alternative... was created in England in 1670." + 段末 "...new floor-standing case design, which became known as the grandfather clock."
思路:new cabinet shape = new floor-standing case design;国家藏在段首 England(附近没换主语)。
8They created a calendar to organize public events and work schedules.
▸ 看讲解正确答案:A(Babylonians)
定位:A 段 "the Babylonians began to measure time, introducing calendars to co-ordinate communal activities, to plan the shipment of goods and... regulate planting and harvesting."
思路:organize public events = co-ordinate communal activities;work schedules = shipment of goods / planting and harvesting。
Questions 9–13 图表填空(Label the diagram · 顺序题)
1670 lever-based device 工作原理图
9escapement (resembling )
▸ 看讲解答案:(ship's) anchor / (an/the) anchor
定位:G 段 "It was called the anchor escapement, which was a lever-based device shaped like a ship's anchor." resembling = shaped like。
10the
▸ 看讲解答案:(escape) wheel
定位:G 段 "...releases each tooth of the escape wheel"。图中圆盘状带齿的物体。
11the
▸ 看讲解答案:tooth
定位:同上 "each tooth of the escape wheel"。齿轮上的"齿"。
12–13a which beats each
▸ 看讲解答案:12 (long) pendulum 13 second
定位:G 段末 "a long pendulum which could beat once a second"。12 = 摆动发出 beat 的主体(long pendulum);13 = each 修饰,once 对应 each。预判:12 单数名词、13 时间单位。
填空套路:先看图预判空里是"什么部件/什么词性",再回 G 段找原词照抄,严格 NO MORE THAN TWO WORDS。
04文章结构速读(A–H 每段一句话)

A 计时史开端:Babylonians 用日历统筹公共活动、货物装运、种植收割。

B 计时体系因地理而异:赤道附近靠月相,北部农业社会(seasonal agriculture)更依赖太阳年(solar year)。

C Egyptians 发明民用日历(municipal calendar):12 个月 × 30 天 + 5 天 ≈ 太阳年。

D 早期水钟(clepsydra):地中海好用,但北欧多云严寒(freezing)失灵。

E 一天均分 24 等份,各国起点不同(Italian 日落 / Babylonian 日出 / 天文 正午 / 德国大钟 午夜 / French 两个 12 小时段)。

F 16 世纪发明摆钟(pendulum clock devised),但摆幅大、效率低。

G 1670 England 发明锚型擒纵(anchor escapement,形似船锚)+ 长摆每秒一摆 → 落地摆钟(grandfather clock)。

H 现代:石英 / 原子钟,GPS 校准手机、电网等。

考官出题的逻辑:A–H 八段,每段都有"可被考查的信息点"。段落匹配题(Q1–4)就是让你判断"某条信息在哪一一段"。
05拆解考官出题思路(三类题分别想考什么)
题型题号顺序?考官想考
段落信息匹配Q1–4乱序跳读找特定信息 + 识别同义替换(题干是 paraphrased,不是原词)
事件–国籍匹配Q5–8乱序定位词(国家名 / 专有名词)+ 替换;国家名可能藏在段首
图表填空Q9–13顺序细节定位 + 词性预判 + 严格照抄原文(NO MORE THAN TWO WORDS)
乱序题的共性坑:① 不是每段都出一题;② 一段可出多题(如 Q4 和 Q6 都来自 E 段);③ 别按文章顺序硬找,先扫选项再跳读。
顺序题(填空)的共性打法:答案按文章顺序出现,预判词性后照抄原文词,不超字数。
06本课小结 + 作业

记住三句话:

  • 阅读考熟练度(定位 + 替换 + 策略),不是背单词。
  • 乱序题先扫选项再跳读,一段可出多题,别按文章顺序硬找。
  • 顺序填空预判词性、照抄原文、不超字数。
作业(见「课后练习」):① 翻译——把文章里挑出的句子做英→中,练定位后的精读;② 错题整理——把今天踩的坑(选错段落 / 误选 G / 漏看字数要求…)记进错题本,写清"错因 + 正确思路"。