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Many people have argued about whether or not computing machines can think. Can they or can't they? Almost certainly, a machine can do any work in thinking that a person can do-if the correct way for doing the thinking work can be stated exactly. Besides, many programs have been made guiding machines so that they behave in very clever ways. Machines have been taught to play checkers (下棋) and to learn from what happens in the games, so as to make their play better and better. Machines can beat many persons who play checkers. Machines can translate from one language to another. They can prove statements in geometry as taught in school. Machines can recognize printed marks on paper, so that a person is no longer needed to look at the marks. There are many ways in which computers can be used in business, science, industry, engineering, and government. Computers study oil-field surveys made by airplanes; they keep track of oil sales; they study stresses (压力) in pipes; they help in planning and running refineries (炼油厂); and much more. If people cannot state exactly the correct way to do certain work in thinking, it is an open question as to how much of this work a machine can do. Suppose a person is "teaching" the machine and telling the machine "yes" when the machine is right, and "no" when the machine is wrong. Then the machine can keep on searching among possible ways for solving a problem-until the machine can do as well as the person, and perhaps much better. But, what is thinking? People can agree about much that is thinking, and much that is not thinking; but they argue about the rest because the word "think" is not a scientific word with an exact meaning. A lot of the argument is wasted breath because the persons who argue are using different meanings of the word "think." People, however, have only had experience with machines that appear to think since 1944. It would be rash to state that after the next 200 years, machines will not be thinking. And to consider that machines can think gives people a big push to give to machines more and more work in thinking. ( 382 words )
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【判断题】花萼相辉楼作为兴庆宫中有名的建筑,名字取自于《 诗经·小雅·棠棣》“棠棣之华,萼不烨烨?凡今之人,莫不兄弟。”与兴庆宫“五王子宅”的前身颇为相关( )
A.
正确
B.
错误
【单选题】由于目前退休年龄偏低,要适应的提高法定退休年龄,实现渐进式的延迟退休年龄 的办法。这涉及到广大职工的切身利益,特别是各类群体差异比较大,应该坚持以人为本, 考虑到不同群体的情况,在制定政策的时候尽量稳妥。 从这段文字中我们可以了解到我国延迟退休年龄的方法是()
A.
直接延迟
B.
渐进式延迟
C.
差异化延迟
D.
人本化延迟
【单选题】关于棘皮动物的主要特征的叙述,错误的是:
A.
棘皮动物是后口动物
B.
棘皮动物胚胎发育的初期往往是两侧对称,后期多为五辐射对称
C.
水沟系为棘皮动物所特有
D.
体表具有棘和叉棘
【单选题】关于棘皮动物的主要特征的叙述,错误的是( )
A.
水沟系为棘皮动物所特有
B.
棘皮动物是后口动物
C.
体表具有棘和叉棘
D.
棘皮动物胚胎发育的初期往往是两侧对称,后期多为五辐射对称
【单选题】用于切开家兔皮肤的器械是
A.
手术刀
B.
解剖刀
C.
手术剪
D.
技工剪
【简答题】One swallow does not make a summer.
【单选题】不能用于抗原分子检测的荧光素是( )
A.
异硫氯酸荧光素
B.
花青素5
C.
多甲藻叶绿素蛋白
D.
烟酸己可碱3342
E.
别藻青蛋白
【判断题】流程部门化不利于充分利用专业技术与技能
A.
正确
B.
错误
【简答题】Please interpret the following idioms alternately from the source language into the target language. (1) One swallow does not make a summer. (2) No smoke without fire. (3) In the end things will mend ...
【单选题】关于棘皮动物的主要特征的叙述,错误的是( )
A.
体表具有棘和叉棘
B.
棘皮动物是后口动物
C.
水沟系为棘皮动物所特有
D.
棘皮动物胚胎发育的初期往往是两侧对称,后期多为五辐射对称
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