There are many ways of generating a two-dimensional representation of an object.
有很多制作物体图的方法。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体图的方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于器件模拟的深亚微米
延型衬底的电阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号的
时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于频域和时域的扫算法,可以实现全频段的高速高效频点及符号率的自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据双调和方程的特点并借助于MATHEMATICA软件,得到了应力函数双调和方程的多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体维图
方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于维器件模拟
深亚微米工艺
衬底
电阻宏模
。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模
对舰船
声进行了分析,得到
声信号
维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于频和时
维盲扫算法,可以实现全频段
高速高效频点及符号率
自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据维双调和方程
特点并借助于MATHEMATICA软件,得到了应力函数双调和方程
多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体二维图的方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
出了一种基于二维器件模拟的深亚微米工艺外延型衬底的电阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
:为
取舰船
声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信
的二维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着出了一种基于频域和时域的二维盲扫算法,可以实现全频段的高速高效频点
率的自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据二维双调和方程的特点并借助于MATHEMATICA软件,得到了应力函数双调和方程的多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作维图的方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于维器件模拟的深亚微米工艺外延型衬底的电阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号的
维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于频域和时域的维盲扫算法,可以实现全频段的高速高效频点及符号率的自动搜
。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
维双调和方程的特点并借助于MATHEMATICA软件,得到了应力函数双调和方程的多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体二维图方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基二维器件模拟
深亚微米工艺外延型衬底
宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号
二维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基和时
二维盲扫算法,可以实现全
段
高速高效
点及符号率
自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据二维双调和方程特点并借助
MATHEMATICA软件,得到了应力函数双调和方程
多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体二维图的方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于二维器件模拟的深工艺外延型衬底的电阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号的二维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于频域和时域的二维盲法,可以实现全频段的高速高效频点及符号率的自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据二维双调和方程的特点并借助于MATHEMATICA软件,得到了应力函数双调和方程的多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件的观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体图
方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于器件模拟
深亚微米工
型衬底
电阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号
时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于频域和时域盲扫算法,可以实现全频段
高速高效频点及符号率
自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据双调和方程
特点并借助于MATHEMATICA软件,得到了应力函数双调和方程
多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体二维图法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于二维器件模拟深亚微米工艺外延型衬底
电阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号
二维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于频域和时域二维盲扫算法,可以实现全频段
高速高效频点及符号
动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据二维双调和程
特点并借助于MATHEMATICA软件,得到了应力函数双调和
程
多项式解答。
声明:以上例句、词性分类均由互联网资源动生成,部分未经过人工审核,其表达内容亦不代表本软件
观点;若发现问题,欢迎向我们指正。
There are many ways of generating a two-dimensional representation of an object.
有很多制作物体二维图方法。
A resistance macromodel for deep-submicron process epi-type substrate based on the 2D device simulation is presented.
摘要提出了一种基于二维器件模拟深亚微米工艺外延型衬
阻宏模型。
Abstract :A passive long wave cochlea model is applied to extract audial feature of naval vessel radiation noise.
摘 要 :为提取舰船声听觉特征,应用被动长波模型对舰船
声进行了分析,得到
声信号
二维时空分布。
Then a planar blind search algorithm based on frequency domain and time domain, which can autoscan all the frequency point and symbol rate.
接着提出了一种基于时
二维盲扫算法,可以实现全
段
高速高效
点及符号率
自动搜索。
According to the nature of two-dimensional biharmonic equations,this paper obtains a polynomial solution of the biharmonic equation for stress function by means of the MATHEMATICA software.
根据二维双调方程
特点并借助于MATHEMATICA软件,得到了应力函数双调
方程
多项式解答。
声明:以上例句、词性分类均由互联网资源自动生成,部分未经过人工审核,其表达内容亦不代表本软件观点;若发现问题,欢迎向我们指正。