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The Coronas-F Space Mission - Key Results for Solar Terrestrial Physics (Hardcover, 2014 ed.): Vladimir Kuznetsov The Coronas-F Space Mission - Key Results for Solar Terrestrial Physics (Hardcover, 2014 ed.)
Vladimir Kuznetsov
R4,143 R3,613 Discovery Miles 36 130 Save R530 (13%) Ships in 10 - 15 working days

This volume is the updated and extended translation of the Russian original. It presents the results of observations of solar activity and its effects in the Earth space environment carried out from July 2001 to December 2005 on board the CORONAS-F space mission. The general characteristics of the CORONAS-F scientific payload are provided with a description of the principal experiments. The main results focus on the global oscillations of the Sun (p-modes), solar corona, solar flares, solar cosmic rays, Earth s radiation belts, and upper atmosphere. The book will be welcomed by students, post-graduates, and scientists working in the field of solar and solar-terrestrial physics.

This English edition is supplemented by sections presenting new results of the SPIRIT and TESIS experiments under the CORONAS solar program, as well as from the SONG experiment onboard the CORONAS-F satellite.

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Nanoengineered Nanofibrous Materials (Hardcover, 2004 ed.): Jennifer Wright Nanoengineered Nanofibrous Materials (Hardcover, 2004 ed.)
Jennifer Wright; Edited by Selcuk Guceri, Yury G. Gogotsi, Vladimir Kuznetsov
R7,934 Discovery Miles 79 340 Ships in 18 - 22 working days

The combination of conductive polymer technology with the ability to produce nanofibres will facilitate major new developments in biotechnology and information technology, benefiting such areas as scaffolds for tissue engineering and drug delivery systems; wires, capacitors, transistors and diodes; sensor technology; biohazard protection; and energy transport, conversion and storage.

The work on nanofibrous materials presented here is designed, first of all, to instruct scientists in the most advanced methods for the formation of nanofibres and nanotubes. The second section covers the physics and chemistry of nanofibres, while the third deals with computer simulation and modelling. The applications described in section 4 include biomedical applications, nanotube-based devices, electronic applications of nanotubes and nanofibres, nanofluidics, and composites. Finally, the fifth section discusses recent developments in nanomaterials, nanoparticles and nanostructures.

The Coronas-F Space Mission - Key Results for Solar Terrestrial Physics (Paperback, Softcover reprint of the original 1st ed.... The Coronas-F Space Mission - Key Results for Solar Terrestrial Physics (Paperback, Softcover reprint of the original 1st ed. 2014)
Vladimir Kuznetsov
R3,917 Discovery Miles 39 170 Ships in 18 - 22 working days

This volume is the updated and extended translation of the Russian original. It presents the results of observations of solar activity and its effects in the Earth space environment carried out from July 2001 to December 2005 on board the CORONAS-F space mission. The general characteristics of the CORONAS-F scientific payload are provided with a description of the principal experiments. The main results focus on the global oscillations of the Sun (p-modes), solar corona, solar flares, solar cosmic rays, Earth's radiation belts, and upper atmosphere. The book will be welcomed by students, post-graduates, and scientists working in the field of solar and solar-terrestrial physics. This English edition is supplemented by sections presenting new results of the SPIRIT and TESIS experiments under the CORONAS solar program, as well as from the SONG experiment onboard the CORONAS-F satellite.

Nanoengineered Nanofibrous Materials (Paperback, 2004 ed.): Jennifer Wright Nanoengineered Nanofibrous Materials (Paperback, 2004 ed.)
Jennifer Wright; Edited by Selcuk Guceri, Yury G. Gogotsi, Vladimir Kuznetsov
R4,082 Discovery Miles 40 820 Ships in 18 - 22 working days

The combination of conductive polymer technology with the ability to produce nanofibres will facilitate major new developments in biotechnology and information technology, benefiting such areas as scaffolds for tissue engineering and drug delivery systems; wires, capacitors, transistors and diodes; sensor technology; biohazard protection; and energy transport, conversion and storage. The work on nanofibrous materials presented here is designed, first of all, to instruct scientists in the most advanced methods for the formation of nanofibres and nanotubes. The second section covers the physics and chemistry of nanofibres, while the third deals with computer simulation and modelling. The applications described in section 4 include biomedical applications, nanotube-based devices, electronic applications of nanotubes and nanofibres, nanofluidics, and composites. Finally, the fifth section discusses recent developments in nanomaterials, nanoparticles and nanostructures.

Nanoengineered Nanofibrous Materials (Hardcover, 2004 ed.): Jennifer Wright Nanoengineered Nanofibrous Materials (Hardcover, 2004 ed.)
Jennifer Wright; Edited by Selcuk Guceri, Yury G. Gogotsi, Vladimir Kuznetsov
R4,237 Discovery Miles 42 370 Ships in 18 - 22 working days

The combination of conductive polymer technology with the ability to produce nanofibres will facilitate major new developments in biotechnology and information technology, benefiting such areas as scaffolds for tissue engineering and drug delivery systems; wires, capacitors, transistors and diodes; sensor technology; biohazard protection; and energy transport, conversion and storage.

The work on nanofibrous materials presented here is designed, first of all, to instruct scientists in the most advanced methods for the formation of nanofibres and nanotubes. The second section covers the physics and chemistry of nanofibres, while the third deals with computer simulation and modelling. The applications described in section 4 include biomedical applications, nanotube-based devices, electronic applications of nanotubes and nanofibres, nanofluidics, and composites. Finally, the fifth section discusses recent developments in nanomaterials, nanoparticles and nanostructures.

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