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    顯示項目651-675 / 1474. (共59頁)
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    1977-01-01 High-temperature emissivities of copper, aluminum, and silver 顏三和; Yen, San-ho;
    1995-11-05 High-temperature superconductivity in the generalized negative U Hubbard model Kocharian, A. N.; 楊棨;
    1987-09 High-temperature superconductivity in the presence of O 2p-Cu 3d holes: A spectroscopic study Horn, S.; Cai, J.;
    2011-10-01 High-yield synthesis of ZnO nanowire arrays and their opto-electrical properties Kao, Chen-Yen; Hsin, Cheng-Lun;
    2014-11-03 Highly tunable quantum Hall far-infrared photodetector by use of GaAs/Al x Ga1 − x As-graphene composite material Tang, Chiu-Chun; Ling, D. C.;
    2013-06 Humidity-dependent friction mechanism in an ultrananocrystalline diamond film N Kumar; Radhika Ramadoss;
    1994-04 Hydrogen atom near an impenetrable hyperboloidal surface 楊棨; Yang, Chi;
    2012-08-23 Hydrogenation effects of ultrananocrystalline diamond detected by X-ray absorption near edge structure and Raman spectroscopy Ray, S. C.; Erasmus, R. M.;
    2013-06 Hydrogenation Induced Reversible Modulation of Perpendicular Magnetic Coercivity in Pd/Co/Pd films Lin, Wen-Chin; Tsai, Cheng-Jui;
    2005-10-05 Identification of Peptides Using Gold Nanoparticle-Assisted Single-Drop Microextraction Coupled with AP-MALDI Mass Spectrometry Sudhir, Putty-reddy; Wu, Hui-fen;
    2019-11-23 Identifying the crystal and electronic structure evolution in tri-component transition metal oxide nanosheets for efficient electrocatalytic oxygen evolution Zhang, X.; Dong, C. L.;
    2003-01 Illumination of exciton migration in rodlike luminescent conjugated polymers by single-molecule spectroscopy Wang, C. F.; White, J. D.;
    2014-03-20 Imprint of scalar dark energy on cosmic microwave background polarization Lee, Seokcheon; Liu, Guo-Chin;
    2011-03-02 Improved dark energy detection through the polarization-assisted cross correlation of the cosmic microwave background with radio sources Liu, Guo-Chin; Ng, Kin-Wang;
    2013-08-01 Improvement in plasma illumination properties of ultrananocrystalline diamond films by grain boundary engineering K. J. Sankaran; K. Srinivasu;
    2013 Improvement in Tribological Properties by Modification of Grain Boundary and Microstructure of Ultrananocrystalline Diamond Films Kamatchi Jothiramalingam Sankaran; Joji Kurian;
    2013-05 Improvement in Tribological Properties by Modification of Grain Boundary and Microstructure of Ultrananocrystalline Diamond Films Kamatchi Jothiramalingam Sankaran; Niranjan Kumar;
    2011-02 Improvement of field emission performance on nitrogen ion implanted ultrananocrystalline diamond films through visualization of structure modifications Chen, Ying-chieh; Zhong, Xiao-yan;
    2015-08-26 Improvement on electrical conductivity and electron field emission properties of Au-ion implanted ultrananocrystalline diamond films by using Au-Si eutectic substrates Sankaran, K. J.; Sundaravel, B.;
    2006-01-01 Improvement on the characteristic of Ba2Ti9O20 microwave dielectric materials prepared by modified co-precipitation method 朱立文; Chu, Li-Wen;
    2006-02-01 Improvement on the growth of ultrananocrystalline diamond by using pre-nucleation technique 李彥志; Lee, Yen-chih;
    2013-02 In situ detection of dopamine using nitrogen incorporated diamond nanowire electrode Jayakumar Shalini; Kamatchi Jothiramalingam Sankaran;
    2017-07-24 In situ evolution of highly-dispersed amorphous CoOx cluster for oxygen evolution reaction Dawei Chen; Chung-Li Dong;
    2019-08-16 In situ observation of the insulator-to-metal transition and nonequilibrium phase transition for Li1-xCoO2 films with preferred (003) orientation nanorods Chen, Y.; Xu, G.;
    2010-05 In situ real-time investigation of cancer cell photothermolysis mediated by excited gold nanorod surface plasmons Chen, Cheng-Lung; Kuo, Ling-Ru;

    顯示項目651-675 / 1474. (共59頁)
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