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Futurists love computers. After all,40 years ago electronic digital computers didn't exist

; today microchips as tiny as a baby's fingernail are making all sorts of tasks faster and easier. Surely the future holds still more miracles.

Some of the computer experiments now going on inspire exciting visions of the future. For example, scientists are working on devices that can electronically perform. some sight and hearing functions, which could make life easier for the blind and deaf. They're also working on artificial arms and legs that respond to the electric impulses produced by the human brain. Scientists hope that some day a person who's lost an arm could still have near-normal brain control over an artificial arm.

Video games, computerized special effects in movies, and real-life training machines now being used by the US Army are causing some people to predict new educational uses for computers. Computers could some day be used to simulate travel to other planets, to explore the ocean floor, or to look inside an atom.

Experiments with electronic banking and shopping inspire predictions that these activities will soon be done from home computer terminals. Cars, too, might be equipped with computers to help drivers find their way around (Honda has one in an experimental car) or to communicate with home and office computers. Many people, including handicapped workers with limited ability to move around, already are working at home using computer terminals. Each terminal is connected to a system at a company's main office. Some futurists say the day may come when few people will have to leave home to go to work -- they'll just turn on a terminal

A growing number of factories such as the General Motors Plant in Newark, Delaware, "hire" computerized robots to perform. tasks such as spot welding. Some executives get a gleam in their eyes as they envision the spread of these "perfect workers" -- no coffee breaks, no strikes, and no vacations or sick days.

These modern and potential computer uses are possible because of the silicon microchip.

These chips, which have become increasingly complex since their beginning in 1959, contain a network of information pathways. Electronic impulses travel along the paths. The plans for a chip look much like a city street plan and can be as large as a football field. It can take as long as three months to complete a new chip design. Chips are used to store information, too. An entire "computer" can be put onto one chip -- called a microprocessor.

As chips become even more complex, easier to make, and less costly, futurists predict limitless possibilities. A group of Japanese scientists is working on a new generation of computers, which they hope will be able to understand vocal instructions, talk back to their users, and automatically try out alternate solutions to a problem to come up with the best answer.

Some people say that the humans of the future will never be without their companion -- computers. Predicting the future can be tricky, of course. In 1948 an IBM study predicted that there would never be enough demand for computers to justify going into the business!

What is the purpose of the passage?

A.To tell the readers what computers will look like in the future.

B.To show the close relations between man and computers.

C.To tell the readers how important silicon microchips are.

D.To talk about the possible future uses of computers.

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更多“Futurists love computers. Afte…”相关的问题

第1题

关于L-dopa的叙述,错误的是A、治疗震颤麻痹B、治疗肝昏迷C、进入中枢神经系统的L-dopa不足用量的1%D

关于L-dopa的叙述,错误的是

A、治疗震颤麻痹

B、治疗肝昏迷

C、进入中枢神经系统的L-dopa不足用量的1%

D、作用快,初次用药数小时即明显见效

E、外周脱羧形成的多巴胺是造成不良反应的主要原因

点击查看答案

第2题

关于托卡朋(答是美)的叙述错误的是

A、是儿茶酚-氧位-甲基转移酶(COMT)抑制剂

B、可抑制L-Dopa在外周的代谢,使血浆药浓度保持稳定,并能增加L-Dopa进脑量

C、可以阻止脑内DA的降解,使脑内DA含量增加

D、与L-Dopa合用可增加后者疗效,单独应用亦有抗PD疗效

E、副作用有腹泻、腹痛、头痛、多汗、转氨酶升高、尿色变浅等

点击查看答案

第3题

关于复方L-Dopa制剂的剂型叙述不正确的有()

A.常用剂型包括复方L-Dopa标准片、控释片和水溶片

B.复方制剂多用L-Dopa与外周多巴脱羧酶抑制剂按4∶1制成

C.复方制剂中L-Dopa占4/5,但其用量可较L-Dopa减少3/4

D.控释片更换成标准片时,每日剂量也应相应增加,才能维持稳定血药浓度

E.水溶片(弥散型美多巴)易在水中溶解,吸收迅速,起效最快

点击查看答案

第4题

关于左旋多巴(L-dopa)药动学的叙述错误的是A、口服经小肠迅速吸收B、主要经肝脱羧成多巴胺(DA)C、DA

关于左旋多巴(L-dopa)药动学的叙述错误的是

A、口服经小肠迅速吸收

B、主要经肝脱羧成多巴胺(DA)

C、DA易通过血-脑屏障

D、L-dopa在外周脱羧可减弱疗效并增加不良反应

E、如用脱羧酶抑制剂,可使L-dopa较多进入脑内

点击查看答案

第5题

关于复方L-Dopa制剂的剂型叙述不正确的有

A、常用剂型包括复方L-Dopa标准片、控释片和水溶片

B、复方制剂多用L-Dopa与外周多巴脱羧酶抑制剂按4∶1制成

C、复方制剂中L-Dopa占4/5,但其用量可较L-Dopa减少3/4

D、控释片更换成标准片时,每日剂量也应相应增加,才能维持稳定血药浓度

E、水溶片(弥散型美多巴)易在水中溶解,吸收迅速,起效最快

点击查看答案

第6题

关于L-Dopa的用药时机叙述不正确的是

A、长期应用可产生疗效减退、症状波动、运动障碍等并发症

B、年轻患者应适当推迟用药时间

C、年轻患者早期尽量使用多巴受体激动剂等其他抗PD药物

D、老年患者因总用药时间短,可考虑早期选用L-Dopa

E、年老患者应用L-Dopa时发生运动并发症的概率较年轻人高,用药过程中应予更多注意

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第7题

应用DA受体激动剂的优点叙述错误的是

A、不需经过代谢转化直接作用于纹状体DA受体而发挥药理作用

B、DA受体激动剂不发生氧化代谢,不产生氧自由基等潜在毒性代谢产物

C、半衰期长,对受体刺激稳定持久,有利于克服症状波动和运动障碍

D、单独应用有效,与L-Dopa合用可延长疗效,推迟副作用的出现

E、与复方L-Dopa相比,不易引起DA受体下调

点击查看答案
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