Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
因为同时具有亲水基团和疏水基团而具有两亲性。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场
情况下,应用界面重参数化方法精确求解了两
对称铁磁薄
低能自旋波本征问题。
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。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
脂双层 膜脂因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
期性边界条件和
虑表面各向异性场
下,应用界面重参数化方法精确求解了两层对称铁磁薄膜中
低能自旋波本征问题。
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。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
脂双层 膜脂因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面重参数化方法精确求解了两层对称铁磁薄膜中的
旋波本征问题。
声明:以上、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的观点;若发现问题,欢迎向我们指正。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
双层 膜
因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面重参数化方法精确求解了两层对称铁磁薄膜中的低能自旋波本征问
。
: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
,欢迎向我们指正。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
脂双 膜脂因
具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面重参数化方法精确求解了两
铁磁薄膜中的低能自旋波本征问题。
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。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
脂双层 膜脂因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面重参数化方法精确求解了两层对称铁磁薄膜中的低
波本征问题。
声明:以上、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的观点;若发现问题,欢迎向我们指正。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
双层 膜
因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面重参数化方法精确求解了两层对称铁磁薄膜中的低能自旋波本征
。
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
,欢迎向我们指正。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
脂双 膜脂因为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面
参数化方法精确求解了两
对称铁磁薄膜中的低能自旋
问题。
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软件的观点;若发现问题,欢迎向我们指正。
Lipid bilayer Membrane lipids are amphipathic since they contain both hydriphilic and hydriphibic regions.
双层
为同时具有亲水基团和疏水基团而具有两亲性。
A symmetrical ferromagnetic bilayer film is investigated under the nonperiodic boundary condition and considering anisotropic field at two surfaces,by using the rescaling interface approach.
在非周期性边界条件和在虑表面各向异性场的情况下,应用界面重参数化方法精确求解了两层对称
中的低能自旋波本征问题。
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。