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mathematical mode
相关语句
  数学模型
    Mathematical Mode of High Benefit on Codonopsis pilosula in Dingxi District
    定西地区党参高效栽培数学模型
短句来源
  数学模型
    Mathematical Mode of High Benefit on Codonopsis pilosula in Dingxi District
    定西地区党参高效栽培数学模型
短句来源
  数学模式
    Build the mathematical mode about temperature and illumination which exploit the test condition of different seedtime and autochthonic resources about temperature and illumination, research the planting boundary about high yielding-excellent quality-late maturity Japonica rice.
    利用不同播期水稻生育进程的试验资料和本地的温光资源,建立温光数学模式,研究高产优质迟熟中粳稻品种种植界限。
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  “mathematical mode”译为未确定词的双语例句
    According to the fine selection the scheme of cultural model for yield above 9 500 kg/ha was obtained from the mathematical mode as fallows Seedtime on apr. 3 - 5 planting density at 59 481 - 61 601 plants/ha applying N 273.4 - 282.7 kg/ha P2O5 168.1 - 179.9 kg/ha K2O 115.0 - 130.5 kg/ha.
    经用计算机进行因子水平寻优,得出产量在9500kg/hm2以上的栽培模式为:播种时期在4月3~5日,密度59481~61601株/hm2,施纯氮273.4~282.7kg/hm2,施P2O5为168.1~179.9kg/hm2,施K2O为115.0~130.5kg/hm2。
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  mathematical mode
We propose a mathematical mode of these materials and apply it to the analysis of the influence of interface microdefects on the characteristics of free oscillations of the composite.
      
An N-dynamics Model for Predicting N-behavior Subject to Environmentally Friendly Fertilization Practices :I - Mathematical Mode
      
Mathematical Mode of Thought in Architecture Design Education: A case study
      
The semi-random source, defined by Sántha and Vazirani, is a general mathematical mode for imperfect and correlated sources of randomness (physical sources such as noise dicdes).
      
The mathematical mode including signal transmission, summing, receiving and recovering are established respectively.
      
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The mathematical model of planting density applied amount of N?P 2 O 5 ?K 2 O and ZnO for plot yield of maize variety Miandan - 4of was established.by means of five - factor - five - level quadratic orthogonal regressive ro-tation combination design.According to the fine selection,the scheme of cultural model for yield above8550kg /hm 2 was obtained from the mathematical mode as fallows planting at the density of45970~47707plants /hm 2 ,ap-plying...

The mathematical model of planting density applied amount of N?P 2 O 5 ?K 2 O and ZnO for plot yield of maize variety Miandan - 4of was established.by means of five - factor - five - level quadratic orthogonal regressive ro-tation combination design.According to the fine selection,the scheme of cultural model for yield above8550kg /hm 2 was obtained from the mathematical mode as fallows planting at the density of45970~47707plants /hm 2 ,ap-plying N263.9~271.5kg /hm 2 ,P 2 O 5 113.77~121.4kg /hm 2 ,K 2 O99.4~107.9kg /hm 2 ,ZnO8.0~9.7kg /hm 2 .

通过五因素二次回归正交旋转组合试验,建立了玉米新品种绵单七号子粒产量与种植密度(X1),施氮量(X2),施磷量(X3),施钾量(X4),施锌量(X5)的数学模型。经用计算机进行因子水平寻优,得出产量在8550kg/hm2以上的栽培模式为:密度45970~47707株/hm2,施纯氮263.9~271.5kg/hm2,施用P2O5为113.77~121.4kg/hm2,施用K2O为99.4~107.9kg/hm2,施用ZnO为8.0~9.7kg/hm2。

The mathematical model of seedtime、planting density、applying amount of N、P2O5、and K2O for plot yield of maize variety Miandan No.8 was established. by means of five- factor- five-level quadratic orthogonal regressive rotation combination design. According to the fine selection the scheme of cultural model for yield above 9 500 kg/ha was obtained from the mathematical mode as fallows Seedtime on apr. 3 - 5 planting density at 59 481 - 61 601 plants/ha applying N 273.4 - 282.7 kg/ha P2O5 168.1 - 179.9...

The mathematical model of seedtime、planting density、applying amount of N、P2O5、and K2O for plot yield of maize variety Miandan No.8 was established. by means of five- factor- five-level quadratic orthogonal regressive rotation combination design. According to the fine selection the scheme of cultural model for yield above 9 500 kg/ha was obtained from the mathematical mode as fallows Seedtime on apr. 3 - 5 planting density at 59 481 - 61 601 plants/ha applying N 273.4 - 282.7 kg/ha P2O5 168.1 - 179.9 kg/ha K2O 115.0 - 130.5 kg/ha.

通过五因素二次回归正交旋转组合试验,建立了玉米新品种绵单8号子粒产量与播种时期(X1)、种植密度(X2)、施氮量(X3)、施磷量(X4)、施钾量(X5)的数学模型。经用计算机进行因子水平寻优,得出产量在9500kg/hm2以上的栽培模式为:播种时期在4月3~5日,密度59481~61601株/hm2,施纯氮273.4~282.7kg/hm2,施P2O5为168.1~179.9kg/hm2,施K2O为115.0~130.5kg/hm2。

Build the mathematical mode about temperature and illumination which exploit the test condition of different seedtime and autochthonic resources about temperature and illumination, research the planting boundary about high yielding-excellent quality-late maturity Japonica rice. The result indicated that late maturity Japonica rice had the characteristic of strong temperature sensibility and thin phototonus, it should adopt supporting measures such as thin sowing and long seedling age et al to ensure heading...

Build the mathematical mode about temperature and illumination which exploit the test condition of different seedtime and autochthonic resources about temperature and illumination, research the planting boundary about high yielding-excellent quality-late maturity Japonica rice. The result indicated that late maturity Japonica rice had the characteristic of strong temperature sensibility and thin phototonus, it should adopt supporting measures such as thin sowing and long seedling age et al to ensure heading completely in safe heading stage in Ganyu area, thereby it can reach high yielding.

利用不同播期水稻生育进程的试验资料和本地的温光资源,建立温光数学模式,研究高产优质迟熟中粳稻品种种植界限。结果表明,迟熟中粳品种有感温性强、感光性弱的特性,在赣榆地区,应采用稀播长秧龄等配套措施,确保在安全齐穗期内出齐穗,达到高产的目的。

 
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