Language: English
Published by American Chemical Society, 1981
ISBN 10: 084120604X ISBN 13: 9780841206045
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Language: English
Published by American Chemical Society, Washington, D.C., 1981
ISBN 10: 084120604X ISBN 13: 9780841206045
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Hardcover. Octavo, 416 pages. In Very Good condition with Very Good minus dust jacket. Beige and yellow spine with blue and yellow text. Dust jacket has slight tearing to spine edges. Textblock clean. Shelved ND-E. 1376789. FP New Rockville Stock.
Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry RSC, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by London, Imperial College Press., 2008
ISBN 10: 1860942555 ISBN 13: 9781860942556
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by American Chemical Society, Washington D. C., 1981
ISBN 10: 084120604X ISBN 13: 9780841206045
First Edition
Hardcover. Condition: Good. Dust Jacket Condition: No Dust Jacket. ACS Symposium Series ; 146; 416 pages; Ex-Library copy with usual identifiers. B&W illustrations. Graphs. Charts. Slightly cocked spine. Light rubbing on the covers. Good condition otherwise. No other noteworthy defects. No markings on text pages. ; - Your satisfaction is our priority. We offer free returns and respond promptly to all inquiries. Your item will be carefully cushioned in bubble wrap and securely boxed. All orders ship on the same or next business day. Buy with confidence. 1st Edition (Unstated); No Printing Stated.
Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
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Language: English
Published by Imperial College Press, 2003
ISBN 10: 1860942555 ISBN 13: 9781860942556
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Language: English
Published by Royal Society of Chemistry, GB, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Hardback. Condition: New. Photovoltaic systems enable the sun's energy to be converted directly into electricity using semiconductor solar cells. The ultimate goal of photovoltaic research and development is to reduce the cost of solar power to reach or even become lower than the cost of electricity generated from fossil and nuclear fuels. The power conversion efficiency and the cost per unit area of the phototvoltaic system are critical factors that determine the cost of photovoltaic electricity. Until recently, the power conversion efficiency of single-junction photovoltaic cells has been limited to approximately 33% - the socalled Shockley-Queisser limit. This book presents the latest developments in photovoltaics which seek to either reach or surpass the Shockley-Queisser limit, and to lower the cell cost per unit area. Progress toward this ultimate goal is presented for the three generations of photovoltaic cells: the 1st generation based on crystalline silicon semiconductors; the 2nd generation based on thin film silicon, compound semiconductors, amorphous silicon, and various mesoscopic structures; and the 3rd generation based on the unique properties of nanoscale materials, new inorganic and organic photoconversion materials, highly efficient multi-junction cells with low cost solar concentration, and novel photovoltaic processes.The extent to which photovoltaic materials and processes can meet the expectations of efficient and cost effective solar energy conversion to electricity is discussed. Written by an international team of expert contributors, and with researchers in academia, national research laboratories, and industry in mind, this book is a comprehensive guide to recent progress in photovoltaics and essential for any library or laboratory in the field.
Language: English
Published by Royal Society of Chemistry, Cambridge, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
Seller: Grand Eagle Retail, Bensenville, IL, U.S.A.
Hardcover. Condition: new. Hardcover. Photovoltaic systems enable the suns energy to be converted directly into electricity using semiconductor solar cells. The ultimate goal of photovoltaic research and development is to reduce the cost of solar power to reach or even become lower than the cost of electricity generated from fossil and nuclear fuels. The power conversion efficiency and the cost per unit area of the phototvoltaic system are critical factors that determine the cost of photovoltaic electricity. Until recently, the power conversion efficiency of single-junction photovoltaic cells has been limited to approximately 33% - the socalled Shockley-Queisser limit. This book presents the latest developments in photovoltaics which seek to either reach or surpass the Shockley-Queisser limit, and to lower the cell cost per unit area. Progress toward this ultimate goal is presented for the three generations of photovoltaic cells: the 1st generation based on crystalline silicon semiconductors; the 2nd generation based on thin film silicon, compound semiconductors, amorphous silicon, and various mesoscopic structures; and the 3rd generation based on the unique properties of nanoscale materials, new inorganic and organic photoconversion materials, highly efficient multi-junction cells with low cost solar concentration, and novel photovoltaic processes.The extent to which photovoltaic materials and processes can meet the expectations of efficient and cost effective solar energy conversion to electricity is discussed. Written by an international team of expert contributors, and with researchers in academia, national research laboratories, and industry in mind, this book is a comprehensive guide to recent progress in photovoltaics and essential for any library or laboratory in the field. This book describes the diverse range of materials and fabrication methods now available to take photovoltaic systems into the third generation and exceed the Shockley-Quieisser limit. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
Language: English
Published by ROYAL SOCIETY OF CHEMISTRY, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Condition: New. This book describes the diverse range of materials and fabrication methods now available to take photovoltaic systems into the third generation and exceed the Shockley-Quieisser limit.InhaltsverzeichnisrnrnPreface Crystalline Silicon Solar .
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Hardcover. Condition: New. Brand New! Fast Delivery This is an International Edition and ship within 24-48 hours. Deliver by FedEx and Dhl, & Aramex, UPS, & USPS and we do accept APO and PO BOX Addresses. Order can be delivered worldwide within 6-10 days and we do have flat rate for up to 2LB. Extra shipping charges will be requested if the Book weight is more than 5 LB. This Item May be shipped from India, United states & United Kingdom. Depending on your location and availability.
Language: English
Published by Royal Society of Chemistry, GB, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
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Add to basketHardback. Condition: New. Photovoltaic systems enable the sun's energy to be converted directly into electricity using semiconductor solar cells. The ultimate goal of photovoltaic research and development is to reduce the cost of solar power to reach or even become lower than the cost of electricity generated from fossil and nuclear fuels. The power conversion efficiency and the cost per unit area of the phototvoltaic system are critical factors that determine the cost of photovoltaic electricity. Until recently, the power conversion efficiency of single-junction photovoltaic cells has been limited to approximately 33% - the socalled Shockley-Queisser limit. This book presents the latest developments in photovoltaics which seek to either reach or surpass the Shockley-Queisser limit, and to lower the cell cost per unit area. Progress toward this ultimate goal is presented for the three generations of photovoltaic cells: the 1st generation based on crystalline silicon semiconductors; the 2nd generation based on thin film silicon, compound semiconductors, amorphous silicon, and various mesoscopic structures; and the 3rd generation based on the unique properties of nanoscale materials, new inorganic and organic photoconversion materials, highly efficient multi-junction cells with low cost solar concentration, and novel photovoltaic processes.The extent to which photovoltaic materials and processes can meet the expectations of efficient and cost effective solar energy conversion to electricity is discussed. Written by an international team of expert contributors, and with researchers in academia, national research laboratories, and industry in mind, this book is a comprehensive guide to recent progress in photovoltaics and essential for any library or laboratory in the field.
Language: English
Published by RSC Publishing Jul 2014, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
Seller: AHA-BUCH GmbH, Einbeck, Germany
Buch. Condition: Neu. Neuware - Photovoltaic systems enable the sun's energy to be converted directly into electricity using semiconductor solar cells. The ultimate goal of photovoltaic research and development is to reduce the cost of solar power to reach or even become lower than the cost of electricity generated from fossil and nuclear fuels. The power conversion efficiency and the cost per unit area of the phototvoltaic system are critical factors that determine the cost of photovoltaic electricity. Until recently,the power conversion efficiency of single-junction photovoltaic cells has been limited to approximately 33% - the so-called Shockley-Queisser limit.
Language: English
Published by Royal Society of Chemistry, Cambridge, 2014
ISBN 10: 1849735913 ISBN 13: 9781849735919
Seller: AussieBookSeller, Truganina, VIC, Australia
Hardcover. Condition: new. Hardcover. Photovoltaic systems enable the suns energy to be converted directly into electricity using semiconductor solar cells. The ultimate goal of photovoltaic research and development is to reduce the cost of solar power to reach or even become lower than the cost of electricity generated from fossil and nuclear fuels. The power conversion efficiency and the cost per unit area of the phototvoltaic system are critical factors that determine the cost of photovoltaic electricity. Until recently, the power conversion efficiency of single-junction photovoltaic cells has been limited to approximately 33% - the socalled Shockley-Queisser limit. This book presents the latest developments in photovoltaics which seek to either reach or surpass the Shockley-Queisser limit, and to lower the cell cost per unit area. Progress toward this ultimate goal is presented for the three generations of photovoltaic cells: the 1st generation based on crystalline silicon semiconductors; the 2nd generation based on thin film silicon, compound semiconductors, amorphous silicon, and various mesoscopic structures; and the 3rd generation based on the unique properties of nanoscale materials, new inorganic and organic photoconversion materials, highly efficient multi-junction cells with low cost solar concentration, and novel photovoltaic processes.The extent to which photovoltaic materials and processes can meet the expectations of efficient and cost effective solar energy conversion to electricity is discussed. Written by an international team of expert contributors, and with researchers in academia, national research laboratories, and industry in mind, this book is a comprehensive guide to recent progress in photovoltaics and essential for any library or laboratory in the field. This book describes the diverse range of materials and fabrication methods now available to take photovoltaic systems into the third generation and exceed the Shockley-Quieisser limit. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.