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在已判定误差三角形是由系统误差造成之后,采用每条方位变化相应角度重新作图。如果新三角形倒置了,则说明所变角度()。

发布日期:2021-03-22

在已判定误差三角形是由系统误差造成之后,采用每条方位变化相应角度重新作图。如果新三角形倒置了,则说明...
A

缩小了方位系统误差

B

增加了方位系统误差

C

正好消除了方位系统误差

D

角度太大使系统误差变成了反向值

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Look at the topic headings below, marked A, B, C, D E, and F, and match them with the paragraphs in the text below. There is one extra heading which you don’t need to use.  Questions 1-5 are based on the following passage.  A. Vanishing topsoil influences farm productivities  B. Water is being polluted by chemical fertilisers  C. Advantages and disadvantages of fuel produced from crop residues  D. Environmental damages were even worsened by government policies  E. A modest cut in subsidies is adopted in some countries  F. Removal of certain subsidies achieves some positive results  All these activities may have damaging environmental impacts. For example, land clearing for agriculture is the largest single cause of deforestation; chemical fertilizers and pesticides may contaminate water supplies; more intensive farming and the abandonment of fallow periods tend to exacerbate soil erosion; and the spread of monoculture and use of high-yielding varieties of crops have been accompanied by the disappearance of old varieties of food plants which might have provided some insurance against pests or diseases in future.    Soil erosion threatens the productivity of land in both rich and poor countries. The United States, where the most careful measurements have been done, discovered in 1982 that about one-fifth of its farmland was losing topsoil at a rate likely to diminish the soil’s productivity. The country subsequently embarked upon a program to convert 11 percent of its cropped land to meadow or forest. Topsoil in India and China is vanishing much faster than in America.    Government policies have frequently compounded the environmental damage that farming can cause. In the rich countries, subsidies for growing crops and price supports for farm output drive up the price of land. The annual value of these subsidies is immense: about $ 250 billion, or more than all World Bank lending in the 1980s. To increase the output of crops per acre, a farmer’s easiest option is to use more of the most readily available inputs: fertilisers and pesticides. Fertiliser use doubled in Denmark in the period 1960 - 1985 and increased in the Netherlands by 150 percent. The quantity of pesticides applied has risen too: by 69 percent in 1975 - 1984 in Denmark, for example, with a rise of 115 percent in the frequency of application in the three years from 1981.    In the late 1980s and early 1990s some efforts were made to reduce farm subsidies. The most dramatic example was that of New Zealand, which scrapped most farm support in1984. A study of the environmental effects, conducted in 1993, found that the end of fertiliser subsidies had been followed by a fall in fertiliser use (a fall compounded by the decline in world commodity prices, which cut farm incomes). The removal of subsidies also stopped land-clearing and over-stocking, which in the past had been the principal causes of erosion. Farms began to diversify. The one kind of subsidy whose removal appeared to have been bad for the environment was the subsidy to manage soil erosion.    In less enlightened countries, and in the European Union, the trend has been to reduce rather than eliminate subsidies, and to introduce new payments to encourage farmers to treat their land in environmentally friendlier ways, or to leave it fallow. It may sound strange but such payments need to be higher than the existing incentives for farmers to grow food crops. Farmers, however, dislike being paid to do nothing. In several countries they have become interested in the possibility of using fuel produced from crop residues either as a replacement for petrol (as ethanol) or as fuel for power stations (as biomass). Such fuels produce far less carbon dioxide than coal or oil, and absorb carbon dioxide as they grow.    They are therefore less likely to contribute to the greenhouse effect. But they are rarely competitive with fossil fuels unless subsidized- and growing them does no less environmental harm than other crops.

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在已判定误差三角形是由系统误差造成之后,采用每条方位变化相应角度重新作图,并将新、老三角形对应顶点相连,如果三连线相交成一小三角形,则该三角形是由于下列()原因...

在已判定误差三角形是由系统误差造成之后,采用每条方位变化相应角度重新作图。如果新三角形倒置了,则说明所变角度()。

在已判定误差三角形是由系统误差造成之后,采用每条方位变化相应角度重新作图。如果新三角形变大了,则说明所变角度()。

在已判定误差三角形是由系统误差造成之后,采用每条方位变化相应角度重新作图。如果新三角形变大了,则说明所变角度()。

新三角形和原误差三角形相比较,新三角形倒置了,说明(),且变动数值大于原系统误差。

如果在短时间内重复观测后,船位误差三角形的大小、形状几乎不变或有规律变化,则可认为误差三角形主要是由于观测()中的,可按系统误差处理。

三天体定位,如果三天体分布范围大于180°,并且船位误差三角形是由系统误差引起的,则消除了系统误差之后的观测船位应在()。

造成船位误差三角形的系统误差和偶然误差的影响程度都不能确定时,最或是船位应在三角形的()。

如测得三条位置线均为等精度,各有等量同符号的系统误差时,其船位可能在误差三角形的()。

甲三角形与乙三角形的底边长的比是2:1,高的比是1:2,那么甲三角形与乙三角形面积的比是()