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Seite 426
The population density can be expressed by an integration of two dimensioal density of states D2D and Fermi statistics F ( x ) from energy en ∞ N2D ( 8 ) = 2 ( D2DF ( 5 ) 85 δ ( 4 ) where D2D = m πήλ which is constant for two ...
The population density can be expressed by an integration of two dimensioal density of states D2D and Fermi statistics F ( x ) from energy en ∞ N2D ( 8 ) = 2 ( D2DF ( 5 ) 85 δ ( 4 ) where D2D = m πήλ which is constant for two ...
Seite 427
Assume the steady state current is constant through the devices , i.e. J = 0 . The current J is dz d contributed from the drift current qnu and diffusion current qDan , where m and D is dz dz mobility and difusion constant of free ...
Assume the steady state current is constant through the devices , i.e. J = 0 . The current J is dz d contributed from the drift current qnu and diffusion current qDan , where m and D is dz dz mobility and difusion constant of free ...
Seite 674
三、結果與討論材料的性質可分為物理性質、機械性質以及化學性質,對機械工業而言,其中最重要的是機械性質[ 1 ] ,在本文中假設夾雜物與基體的 Lame constant 不同,並定義機械性質比 MPR ( Material Property Ratio )如下: MPR = = M HM , RM 代表在基體 ...
三、結果與討論材料的性質可分為物理性質、機械性質以及化學性質,對機械工業而言,其中最重要的是機械性質[ 1 ] ,在本文中假設夾雜物與基體的 Lame constant 不同,並定義機械性質比 MPR ( Material Property Ratio )如下: MPR = = M HM , RM 代表在基體 ...
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