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9篇 您的检索式:作者名="Albisser"
    题名 作者 年代 出处 被引量
1The impact of initiatives in education,self-management training,and computer-assisted self -care on outcomes in diabetes disease management显示文摘Albisser AM Harris RI Albisser JB 2001Diabetes Technol Ther2001,3,4:1
2Reliability of movement workspace measurements in a passive arm or- thosis used in spinal cord injury rehabilitation显示文摘Rudhe C Albisser U Starkey ML 2012Journal and rehabilitation2012,9,1:1
3Clinical control of diabetes by the artificial pancreas 显示文摘Albisser AM Leibel BS Ewart TG 1974Diatetes1974,23,:1
4The impact of initiatives in education, self-management training, and computer-assisted self- care on outcomes in diabetes disease management 显示文摘Albisser AM Harris RI Albisser JB 2001Diabetes Technol Ther2001,3,4:1
5Heart, liver, and skeletal muscle myeloperoxidase activity during exercise显示文摘BELCASTRO A N ARTHURN G D ALBISSER T A 1996J Appl Physiol1996,80,4:1
6The impact of initiatives in education, self - management training, and computer- assisted self- care on outcomes in diabetes disease management 显示文摘Albisser AM Harris RI Albisser JB 2001Diabetes Technol Ther2001,3,4:1
7Clinical control of diabetes by the artificial pancreas显示文摘Albisser A M Leibel B S Ewart T G 1974Diabetes1974,23,5:1
8Clinical control of diabetes by the artiifcial pancreas显示文摘Albisser AM Leibel BS Ewart TG 0,,05:1
9Levitation and lateral forces between a point magnetic dipole and a superconducting sphere显示文摘The dipole–dipole interaction model is employed to investigate the angular dependence of the levitation and lateral forces acting on a small magnet in an anti-symmetric magnet/superconducting sphere system. Breaking the symmetry of the system enables us to study the lateral force which is important in the stability of the magnet above a superconducting sphere in the Meissner state. Under the assumption that the lateral displacement of the magnet is small compared to the physical dimensions of our proposed system, analytical expressions are obtained for the levitation and lateral forces as a function of the geometrical parameters of the superconductor as well as the height, the lateral displacement, and the orientation of the magnetic moment of the magnet. The dependence of the levitation force on the height of the levitating magnet is similar to that in the symmetric magnet/superconducting sphere system within the range of proposed lateral displacements. It is found that the levitation force is linearly dependent on the lateral displacement whereas the lateral force is independent of this displacement. A sinusoidal variation of both forces as a function of the polar and azimuthal angles specifying the orientation of the magnetic moment is observed. The relationship between the stability and the orientation of the magnetic moment is discussed for different orientations.H M Al-Khateeb M K Alqadi F Y Alzoubi B Albiss M K Hasan (Qaseer) N Y Ayoub 2016Chinese Physics B2016,25,5:0
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