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You searched for subject:(permanent current density). Showing records 1 – 2 of 2 total matches.

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1. Mohamed, Tallouli||モハメド, タロウリ. Study of the current feeding effect on transport and remnant current characteristics of HTS tapes : 高温超伝導テープ線材の通電電流及び永久電流モードの特性に関する研究; コウオン チョウデンドウ テープ センザイ ノ ツウデン デンリュウ オヨビ エイキュウ デンリュウ モード ノ トクセイ ニ カンスル ケンキュウ.

Degree: 博士(工学), 2016, Chubu University / 中部大学

Subjects/Keywords: Over-current pulse; BSCCO tape; YBCO tape; permanent magnetic field; permanent current density; Hall probe measurement; magnetic field relaxations

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Mohamed, Tallouli||モハメド, . (2016). Study of the current feeding effect on transport and remnant current characteristics of HTS tapes : 高温超伝導テープ線材の通電電流及び永久電流モードの特性に関する研究; コウオン チョウデンドウ テープ センザイ ノ ツウデン デンリュウ オヨビ エイキュウ デンリュウ モード ノ トクセイ ニ カンスル ケンキュウ. (Thesis). Chubu University / 中部大学. Retrieved from http://opac.bliss.chubu.ac.jp/e-Lib/ctlsrh.do?bibid=XD16000003

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Chicago Manual of Style (16th Edition):

Mohamed, Tallouli||モハメド, タロウリ. “Study of the current feeding effect on transport and remnant current characteristics of HTS tapes : 高温超伝導テープ線材の通電電流及び永久電流モードの特性に関する研究; コウオン チョウデンドウ テープ センザイ ノ ツウデン デンリュウ オヨビ エイキュウ デンリュウ モード ノ トクセイ ニ カンスル ケンキュウ.” 2016. Thesis, Chubu University / 中部大学. Accessed August 06, 2020. http://opac.bliss.chubu.ac.jp/e-Lib/ctlsrh.do?bibid=XD16000003.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

MLA Handbook (7th Edition):

Mohamed, Tallouli||モハメド, タロウリ. “Study of the current feeding effect on transport and remnant current characteristics of HTS tapes : 高温超伝導テープ線材の通電電流及び永久電流モードの特性に関する研究; コウオン チョウデンドウ テープ センザイ ノ ツウデン デンリュウ オヨビ エイキュウ デンリュウ モード ノ トクセイ ニ カンスル ケンキュウ.” 2016. Web. 06 Aug 2020.

Vancouver:

Mohamed, Tallouli||モハメド . Study of the current feeding effect on transport and remnant current characteristics of HTS tapes : 高温超伝導テープ線材の通電電流及び永久電流モードの特性に関する研究; コウオン チョウデンドウ テープ センザイ ノ ツウデン デンリュウ オヨビ エイキュウ デンリュウ モード ノ トクセイ ニ カンスル ケンキュウ. [Internet] [Thesis]. Chubu University / 中部大学; 2016. [cited 2020 Aug 06]. Available from: http://opac.bliss.chubu.ac.jp/e-Lib/ctlsrh.do?bibid=XD16000003.

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

Council of Science Editors:

Mohamed, Tallouli||モハメド . Study of the current feeding effect on transport and remnant current characteristics of HTS tapes : 高温超伝導テープ線材の通電電流及び永久電流モードの特性に関する研究; コウオン チョウデンドウ テープ センザイ ノ ツウデン デンリュウ オヨビ エイキュウ デンリュウ モード ノ トクセイ ニ カンスル ケンキュウ. [Thesis]. Chubu University / 中部大学; 2016. Available from: http://opac.bliss.chubu.ac.jp/e-Lib/ctlsrh.do?bibid=XD16000003

Note: this citation may be lacking information needed for this citation format:
Not specified: Masters Thesis or Doctoral Dissertation

2. Oniku, Ololade D. Electroplated Thick-Film Cobalt Platinum Permanent Magnets.

Degree: PhD, Electrical and Computer Engineering, 2015, University of Florida

This dissertation develops microscale permanent magnet materials intended for magnetic microsystems such as microscale electric machines, vibrational energy harvesters, lab-on-a-chip, microsensors and actuators, and biomagnetic devices. The strong magnetic performance of rare-earth permanent magnets, such as Nd-Fe-B and SmCo, is well known in the magnetics community. However, one major concern for these rare-earth alloys is their susceptibility to oxidation, which is especially problematic for thin films. An alternative permanent magnet material for microsystem applications is the Co-Pt alloy, which exhibits good magnetic properties (Hci > 800 kA/m, squareness close to 1, Br ~ 0.8 T, and BHmax> 100 kJ/m3), high Curie temperature, high corrosion-resistance, as well as its relative ease of fabrication. This work focuses on the development of thick CoPt magnetic films using electrodeposition techniques and the study of its material and magnetic properties for integration in microdevices. Advisors/Committee Members: ARNOLD,DAVID P (committee chair), JUDY,JACK (committee member), DOBSON,JON P (committee member).

Subjects/Keywords: Annealing; Coercivity; Current density; Magnetic fields; Magnetic materials; Magnetic properties; Magnetism; Magnetization; Magnets; Permanent magnets; cobalt-platinum  – electroplating  – magnetic-films  – magnetic-materials  – magnetic-mems  – magnetic-patterning  – permanent-magnets  – thick-films

…89 6-1 Samples used in studying the influence of current density on electroplated CoPt… …41 2-9 Influence of film thickness and current density on coercivity for Co-Pt films… …layers, electrodeposition variables (current density, deposition time, pH, bath chemistry… …permanent magnetic materials, Co-Pt alloys offer good energy density, high Curie temperature, high… …optimization of the annealing process. In Chapter 6, the influence of current density on the magnetic… 

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APA · Chicago · MLA · Vancouver · CSE | Export to Zotero / EndNote / Reference Manager

APA (6th Edition):

Oniku, O. D. (2015). Electroplated Thick-Film Cobalt Platinum Permanent Magnets. (Doctoral Dissertation). University of Florida. Retrieved from https://ufdc.ufl.edu/UFE0049419

Chicago Manual of Style (16th Edition):

Oniku, Ololade D. “Electroplated Thick-Film Cobalt Platinum Permanent Magnets.” 2015. Doctoral Dissertation, University of Florida. Accessed August 06, 2020. https://ufdc.ufl.edu/UFE0049419.

MLA Handbook (7th Edition):

Oniku, Ololade D. “Electroplated Thick-Film Cobalt Platinum Permanent Magnets.” 2015. Web. 06 Aug 2020.

Vancouver:

Oniku OD. Electroplated Thick-Film Cobalt Platinum Permanent Magnets. [Internet] [Doctoral dissertation]. University of Florida; 2015. [cited 2020 Aug 06]. Available from: https://ufdc.ufl.edu/UFE0049419.

Council of Science Editors:

Oniku OD. Electroplated Thick-Film Cobalt Platinum Permanent Magnets. [Doctoral Dissertation]. University of Florida; 2015. Available from: https://ufdc.ufl.edu/UFE0049419

.