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Springer Handbook of Electronic and Photonic Materials (Repost)

Posted By: AvaxGenius
Springer Handbook of Electronic and Photonic Materials (Repost)

Springer Handbook of Electronic and Photonic Materials by Safa Kasap, Peter Capper
English | PDF | 2007 | 1410 Pages | ISBN : 0387335765 | 75.2 MB

The Springer Handbook of Electronic and Photonic Materials has been prepared to give a broad coverage of a wide range of electronic and photonic materials, starting from fundamentals and building up to advanced topics and applications. Its wide coverage with clear illustrations and applications, its chapter sequencing and logical flow, make it very different than other electronic materials handbooks. Each chapter has been prepared either by experts in the field or instructors who have been teaching the subject at a university or in corporate laboratories.

Statistical Physics: An Advanced Approach with Applications

Posted By: AvaxGenius
Statistical Physics: An Advanced Approach with Applications

Statistical Physics: An Advanced Approach with Applications by Josef Honerkamp
English | PDF | 1998 | 416 Pages | ISBN : 3540639780 | 32.1 MB

The application of statistical methods to physics is essential. This unique book on statistical physics offers an advanced approach with numerous applications to the modern problems students are confronted with. Therefore the text contains more concepts and methods in statistics than the student would needed for statistical mechanics alone. Methods from mathematical statistics and stochastics for the analysis of data are discussed as well. The book is divided in two parts focusing first on the modelling of statistical systems then on the analysis of these systems. Problems with hints for solution help the students to deepen their knowledge.

Searching for 2D Superconductivity in La2-xSrxCuO4 Single Crystals (Repost)

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Searching for 2D Superconductivity in La2-xSrxCuO4 Single Crystals (Repost)

Searching for 2D Superconductivity in La2-xSrxCuO4 Single Crystals by Itzik Kapon
English | EPUB | 2019 | 63 Pages | ISBN : 3030230600 | 15.2 MB

A new experimental method – the "Stiffnessometer", is developed to measure elementary properties of a superconductor, including the superconducting stiffness and the critical current. This technique has many advantages over existing methods, such as: the ability to measure these properties while minimally disturbing the system; the ability to measure large penetration depths (comparable to sample size), as necessary when approaching the critical temperature; and the ability to measure critical currents without attaching contacts and heating the sample.