Magnetic Devices

Power Magnetic Devices: A Multi-Objective Design Approach (repost)  eBooks & eLearning

Posted by arundhati at March 5, 2019
Power Magnetic Devices: A Multi-Objective Design Approach (repost)

Scott D. Sudhoff, "Power Magnetic Devices: A Multi-Objective Design Approach"
English | ISBN: 1118489993 | 2014 | 488 pages | PDF | 9 MB

Power Magnetic Devices : A Multi-Objective Design Approach, 2nd Edition  eBooks & eLearning

Posted by yoyoloit at Nov. 18, 2021
Power Magnetic Devices : A Multi-Objective Design Approach, 2nd Edition

Power Magnetic Devices
by Sudhoff, Scott D.;

English | 2021 | ISBN: ‎ 1119674603 | 655 pages | True PDF EPUB | 94.5 MB
Do-It-Yourself Magnetic Therapy: Understanding & Building Your Own Magnetic Therapy Devices – Fast, Cheap & Easy

Richard Tamir, "Do-It-Yourself Magnetic Therapy: Understanding & Building Your Own Magnetic Therapy Devices – Fast, Cheap & Easy"
English | ISBN: 1549707949 | 2017 | 72 pages | AZW3 | 1033 KB

High Reliability Magnetic Devices  eBooks & eLearning

Posted by insetes at April 16, 2019
High Reliability Magnetic Devices

High Reliability Magnetic Devices By Colonel Wm. T. McLyman
2002 | 372 Pages | ISBN: 0824708180 | PDF | 13 MB

High-Frequency Magnetic Components, 2nd Edition (Repost)  eBooks & eLearning

Posted by nebulae at May 31, 2017
High-Frequency Magnetic Components, 2nd Edition (Repost)

Marian K. Kazimierczuk, "High-Frequency Magnetic Components, 2nd Edition"
English | ISBN: 1118717791 | 2014 | 760 pages | PDF | 12 MB

"Magnetic Skyrmions" by Dipti Ranjan Sahu  eBooks & eLearning

Posted by exLib at July 31, 2021
"Magnetic Skyrmions" by Dipti Ranjan Sahu

"Magnetic Skyrmions" by Dipti Ranjan Sahu
ITexLi | 2021 | ISBN: 1839692537 9781839692536 1839692529 9781839692529 1839692545 978183969254375 | 133 pages | PDF | 15 MB

This book presents a basic overview of magnetic skyrmions along with current research on magnetic skyrmions, emphasizing formation mechanisms and materials design strategies. This book is suitable for an interdisciplinary audience of undergraduates, graduates, engineers, scientists, and researchers in the development of the next generation of spintronic devices.

Ultrathin Magnetic Structures III: Fundamentals of Nanomagnetism  eBooks & eLearning

Posted by ChrisRedfield at June 17, 2019
Ultrathin Magnetic Structures III: Fundamentals of Nanomagnetism

J.A.C. Bland, Bretislav Heinrich - Ultrathin Magnetic Structures III: Fundamentals of Nanomagnetism
Published: 2005-02-14 | ISBN: 3540219536 | PDF | 318 pages | 4.89 MB

Ultrathin Magnetic Structures IV: Applications of Nanomagnetism (Repost)  eBooks & eLearning

Posted by insetes at Feb. 18, 2019
Ultrathin Magnetic Structures IV: Applications of Nanomagnetism (Repost)

Ultrathin Magnetic Structures IV: Applications of Nanomagnetism By J.A.C. Bland, B. Heinrich (auth.), Bretislav Heinrich, J. Anthony C. Bland (eds.)
2005 | 258 Pages | ISBN: 3540219544 | PDF | 9 MB
Quantized Phenomena of Transport and Magneto-Optics in Magnetic Topological Insulator Heterostructures

Quantized Phenomena of Transport and Magneto-Optics in Magnetic Topological Insulator Heterostructures by Masataka Mogi
English | PDF | 2022 | 120 Pages | ISBN : 9811921369 | 4.5 MB

This book presents experimental studies on emergent transport and magneto-optical properties in three-dimensional topological insulators with two-dimensional Dirac fermions on their surfaces. Designing magnetic heterostructures utilizing a cutting-edge growth technique (molecular beam epitaxy) stabilizes and manifests new quantization phenomena, as confirmed by low-temperature electrical transport and time-domain terahertz magneto-optical measurements.
Quantized Phenomena of Transport and Magneto-Optics in Magnetic Topological Insulator Heterostructures

Quantized Phenomena of Transport and Magneto-Optics in Magnetic Topological Insulator Heterostructures by Masataka Mogi
English | EPUB | 2022 | 120 Pages | ISBN : 9811921369 | 31.8 MB

This book presents experimental studies on emergent transport and magneto-optical properties in three-dimensional topological insulators with two-dimensional Dirac fermions on their surfaces. Designing magnetic heterostructures utilizing a cutting-edge growth technique (molecular beam epitaxy) stabilizes and manifests new quantization phenomena, as confirmed by low-temperature electrical transport and time-domain terahertz magneto-optical measurements.