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Frontiers in Superconductivity Research (Hardcover, Illustrated Ed): Barry P. Martins Frontiers in Superconductivity Research (Hardcover, Illustrated Ed)
Barry P. Martins
R4,907 R3,148 Discovery Miles 31 480 Save R1,759 (36%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. High temperature superconductors, such as La2-xSrxCuOx (Tc=40K) and YBa2Cu3O7-x (Tc=90K), were discovered in 1987 and have been actively studied since. In spite of an intense, worldwide, research effort during this time, a complete understanding of the copper oxide (cuprate) materials is still lacking. Many fundamental questions are unanswered, particularly the mechanism by which high-Tc superconductivity occurs. More broadly, the cuprates are in a class of solids with strong electron-electron interactions. An understanding of such 'strongly correlated' solids is perhaps the major unsolved problem of condensed matter physics with over ten thousand researchers working on this topic. High-Tc superconductors also have significant potential for applications in technologies ranging from electric power generation and transmission to digital electronics. This ability to carry large amounts of current can be applied to electric power devices such as motors and generators, and to electricity transmission in power lines. For example, superconductors can carry as much as 100 times the amount of electricity of ordinary copper or aluminum wires of the same size. Many universities, research institutes and companies are working to develop high-Tc superconductivity applications and considerable progress has been made. This volume brings together leading research in this growth field.

New Research on Superconductivity (Hardcover): Barry P. Martins New Research on Superconductivity (Hardcover)
Barry P. Martins
R5,037 R4,556 Discovery Miles 45 560 Save R481 (10%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. High temperature superconductors, such as La2-xSrxCuOx (Tc=40K) and YBa2Cu3O7-x (Tc=90K), were discovered in 1987 and have been actively studied since. In spite of an intense, world-wide, research effort during this time, a complete understanding of the copper oxide (cuprate) materials is still lacking. Many fundamental questions are unanswered, particularly the mechanism by which high-Tc superconductivity occurs. More broadly, the cuprates are in a class of solids with strong electron-electron interactions. An understanding of such "strongly correlated" solids is perhaps the major unsolved problem of condensed matter physics with over ten thousand researchers working on this topic. High-Tc superconductors also have significant potential for applications in technologies ranging from electric power generation and transmission to digital electronics. This ability to carry large amounts of current can be applied to electric power devices such as motors and generators, and to electricity transmission in power lines. For example, superconductors can carry as much as 100 times the amount of electricity of ordinary copper or aluminium wires of the same size. Many universities, research institutes and companies are working to develop high-Tc superconductivity applications and considerable progress has been made. This volume brings together new leading-edge research in the field.

New Frontiers in Superconductivity Research (Hardcover): Barry P. Martins New Frontiers in Superconductivity Research (Hardcover)
Barry P. Martins
R5,036 R4,555 Discovery Miles 45 550 Save R481 (10%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. High temperature superconductors, such as La2-xSrxCuOx (Tc=40K) and YBa2Cu3O7-x (Tc=90K), were discovered in 1987 and have been actively studied since. In spite of an intense, world-wide, research effort during this time, a complete understanding of the copper oxide (cuprate) materials is still lacking. Many fundamental questions are unanswered, particularly the mechanism by which high-Tc superconductivity occurs. More broadly, the cuprates are in a class of solids with strong electron-electron interactions. An understanding of such "strongly correlated" solids is perhaps the major unsolved problem of condensed matter physics with over ten thousand researchers working on this topic.

Topics in Superconductivity Research (Hardcover, New): Barry P. Martins Topics in Superconductivity Research (Hardcover, New)
Barry P. Martins
R5,676 R4,470 Discovery Miles 44 700 Save R1,206 (21%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. High temperature superconductors, such as La2-xSrxCuOx (Tc=40K) and YBa2Cu3O7-x (Tc=90K), were discovered in 1987 and have been actively studied since. In spite of an intense, world-wide, research effort during this time, a complete understanding of the copper oxide (cuprate) materials is still lacking. Many fundamental questions are unanswered, particularly the mechanism by which high-Tc superconductivity occurs. More broadly, the cuprates are in a class of solids with strong electron-electron interactions. An understanding of such "strongly correlated" solids is perhaps the major unsolved problem of condensed matter physics with over ten thousand researchers working on this topic. High-Tc superconductors also have significant potential for applications in technologies ranging from electric power generation and transmission to digital electronics. This ability to carry large amounts of current can be applied to electric power devices such as motors and generators, and to electricity transmission in power lines. For example, superconductors can carry as much as 100 times the amount of electricity of ordinary copper or aluminium wires of the same size. Many universities, research institutes and companies are working to develop high-Tc superconductivity applications and considerable progress has been made. This new volume brings together new leading-edge research in the field.

Focus on Superconductivity (Hardcover, New): Barry P. Martins Focus on Superconductivity (Hardcover, New)
Barry P. Martins
R3,964 R3,090 Discovery Miles 30 900 Save R874 (22%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. Contents: Preface; Two Band Superconductivity in MgB2: Basic Anisotropic Properties and Phase Diagram; Detection of the Vortex Dynamic Regimes in MgB2 by Third Harmonic AC Susceptibility Measurements; Possibilities of MgB2/ Cu Wires Fabricated by the in-situ Reaction Technique; Correlation of T c with Crystal Chemical Parameters in High-T c Cuprates, Diborides and Borocarbides: Concept of Arrangement and Function of Layered Superconductors; Superconductivity in and Microstructure of Well-shaped Single-Crystalline MgB2; Transport in High Temperature Superconductors in Close Vicinity of the Critical Temperature; Detection of the Vortex Dynamic Regimes in MgB2 by Third Harmonic AC Susceptibility Measurements; Interaction of Superconductor with Magnetic Sheath as a Way for Improvement of Critical Current in MgB2/ Fe Superconductor; Effect of Mg Impurity on the Magnetotransport Properties of the MgB3 Superconductor; Electroplating of the Superconductive Boride MgB2 from Molten Salts; Index.

Recent Developments in Superconductivity Research (Hardcover): Barry P. Martins Recent Developments in Superconductivity Research (Hardcover)
Barry P. Martins
R5,061 R4,579 Discovery Miles 45 790 Save R482 (10%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. High temperature superconductors, such as La2-xSrxCuOx (Tc=40K) and YBa2Cu3O7-x (Tc=90K), were discovered in 1987 and have been actively studied since. In spite of an intense, world-wide, research effort during this time, a complete understanding of the copper oxide (cuprate) materials is still lacking. Many fundamental questions are unanswered, particularly the mechanism by which high-Tc superconductivity occurs. More broadly, the cuprates are in a class of solids with strong electron-electron interactions. An understanding of such "strongly correlated" solids is perhaps the major unsolved problem of condensed matter physics with over ten thousand researchers working on this topic. High-Tc superconductors also have significant potential for applications in technologies ranging from electric power generation and transmission to digital electronics. This ability to carry large amounts of current can be applied to electric power devices such as motors and generators, and to electricity transmission in power lines. For example, superconductors can carry as much as 100 times the amount of electricity of ordinary copper or aluminium wires of the same size. Many universities, research institutes and companies are working to develop high-Tc superconductivity applications and considerable progress has been made. This volume brings together new leading-edge research in the field.

New Topics in Superconductivity Research (Hardcover, Illustrated Ed): Barry P. Martins New Topics in Superconductivity Research (Hardcover, Illustrated Ed)
Barry P. Martins
R5,052 R4,570 Discovery Miles 45 700 Save R482 (10%) Ships in 12 - 17 working days

Superconductivity is the ability of certain materials to conduct electrical current with no resistance and extremely low losses. High temperature superconductors, such as La2-xSrxCuOx (Tc=40K) and YBa2Cu3O7-x (Tc=90K), were discovered in 1987 and have been actively studied since. In spite of an intense, world-wide, research effort during this time, a complete understanding of the copper oxide (cuprate) materials is still lacking. Many fundamental questions are unanswered, particularly the mechanism by which high-Tc superconductivity occurs. More broadly, the cuprates are in a class of solids with strong electron-electron interactions. An understanding of such "strongly correlated" solids is perhaps the major unsolved problem of condensed matter physics with over ten thousand researchers working on this topic. High-Tc superconductors also have significant potential for applications in technologies ranging from electric power generation and transmission to digital electronics. This ability to carry large amounts of current can be applied to electric power devices such as motors and generators, and to electricity transmission in power lines. For example, superconductors can carry as much as 100 times the amount of electricity of ordinary copper or aluminium wires of the same size. Many universities, research institutes and companies are working to develop high-Tc superconductivity applications and considerable progress has been made. This volume brings together new leading-edge research in the field.

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