问题 多项选择题

影响细菌染色的因素有()。

A、细菌细胞壁、细胞膜的通透性

B、膜孔的大小

C、菌龄

D、染色液中电解

答案

参考答案:A, B, C, D

问答题

某市政工程,项目的合同工期为38周。经总监理工程师批准的施工总进度计划如图4-5所示(时间单位:周),各工作可以缩短的时间及其增加的赶工费见表4-4,其中H、L分别为道路的路基、路面工程。

表4-4 各工作可以缩短的时间及其增加的赶工费

[问题] 1.开工1周后,建设单位要求将总工期缩短2周,故请监理单位帮助拟定一个合理赶工方案以便与施工单位洽商,请问如何调整计划才能既实现建设单位的要求,又能使支付施工单位的赶工费用最少说明步骤和理由。

2.建设单位依据调整后的方案与施工单位协商,并按此方案签订了补充协议,施工单位修改了施工总进度计划。在H、L工作施工前,建设单位通过设计单位将此400m的道路延长至 600m。请问该道路延长后,H、L工作的持续时间为多少周(设工程量按单位时间均值增加)对修改后的施工总进度计划的工期是否有影响为什么

3.H工作施工的第一周,监理人员检查发现路基工程分层填土厚度超过规范规定,为保证工程质量,总监理工程师签发了工程暂停令,停止了该部位工程施工。总监理工程师的做法是否正确总监理工程师在什么情况下可签发工程暂停令

4.施工中由于建设单位提供的施工条例:发生变化,导致I、J、K、N四项工作分别拖延1周,为确保工程按期完成,需支出赶上费。如果该项目投入使用后,每周净收益5.6万元,从建设单位角度出发,是让施工单位赶工合理还是延期完工合理为什么

问答题

Passage Four

Despite their names, satin and soman are exceptionally ugly sisters. They are organophosphorous nerve gases. They are cheap and simple to manufacture. And mere milligrams—just a drop—of either is enough to kill an adult in a couple of minutes. They therefore make particularly fine weapons of mass destruction, equally popular with rogue dictators who have not been able to build nuclear bombs and with weird cults such as Aum Shinrikyo, which gassed the Tokyo subway in 1995.

Detecting them soon enough to prevent their effects can be difficult. Even detecting them after the event—if you are, for example, a United Nations weapon inspector—can be haphazard. But help may be at hand. A paper in this month’s edition of Analytical Chemistry, by George Murray and his team at John Hopkins University’s Applied Physics Laboratory in Laurel, Maryland, reports a new way of picking up minute qualities of the two gases without the risk of false alarms from legitimate organophosphorous compounds such as insecticides.

Dr Murray’s detector consists of a fiber-optic cable that has one end plugged into a laser and the other coated with a metal called europium. The laser generates blue light, and europium has the property of shining red when exposed to blue light of the correct wavelength—an effect that is exploited in many optical devices. But the metal possesses a second property that makes it uniquely suitable for Dr. Murray’s purpose: it reacts ply with organophosphates, and when it does so, the wavelength of the light that is emitting changes perceptibly.

To stop his detector going off in response to the wrong signals such as insecticide on the flea collar of a dog, Dr Murray has resorted to a second trick. The europium is embedded in a plastic film that binds specifically to sarin or soman (they are very similar molecules), using special pockets called molecular imprints that have been chemically etched into it. The organophosphates commonly used as pesticides do not fit into these pockets; and so fail to react with the metal. The result is a detector that is both sensitive ( it can pick up concentrations of as seven nerve-gas molecules in a trillion) and reasonable fast (it is able to sound the alarm within 30 seconds).

So far, Dr Murray has tested his device only on soman dissolved in water. This is mainly a safety measure, because water-borne nerve agents are easier to handle than those in gaseous form. But soman or sarin-contaminated water supplies are a real hazard in themselves—and not just in far-flung war zones. In America, for example, there are occasional leaks from military bases. The most recent was from Tooele Chemical Disposal Facility in Utah, one of the sites where the country’s chemical weapons stockpile is being destroyed. At the moment it would be hard to work out if any material from such a spill had found its way into the water supply until people started to become ill.

Dr Murray seems confident, however, that his technology will work just as well on sarin and saman gas, and has prepared "smart" cards coated with the mixture of europium and plastic to detect airborne nerve gases. Unfortunately, he does not, at the moment, have access to any place where the safety regulations will permit him to try them out. But if UN inspectors were ever allowed back into Iraq, he might have a chance.

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