Manickam sivashankar (11 risultati)

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  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    PAP. Condizione: New. New Book. Shipped from UK. Established seller since 2000.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: PBShop.store UK, Fairford, GLOS, Regno UnitoPBShop.store UK

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    EUR 62,96

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    PAP. Condizione: New. New Book. Shipped from UK. Established seller since 2000.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: Revaluation Books, Exeter, Regno UnitoRevaluation Books

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    EUR 61,35

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    Paperback. Condizione: Brand New. 175 pages. 6.00x0.40x9.00 inches. In Stock.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: Majestic Books, Hounslow, Regno UnitoMajestic Books

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    EUR 66,68

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    Quantità: 4 disponibili

    Condizione: New. Print on Demand.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: Books Puddle, Woodside, NY, U.S.A.Books Puddle

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    EUR 72,93

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    Condizione: New. Print on Demand.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: Biblios, frankfurt am main, HESSE, GermaniaBiblios

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    EUR 67,85

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    Quantità: 4 disponibili

    Condizione: New. PRINT ON DEMAND.

  • Lingua: Inglese

    Editore: Eliva Press Okt 2025, 2025

    9999324606 / 9789999324601

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    Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermaniaBuchWeltWeit Ludwig Meier e.K.

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    EUR 59,20

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    Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware 176 pp. Englisch.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: CitiRetail, Stevenage, Regno UnitoCitiRetail

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    EUR 57,66

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    Paperback. Condizione: new. Paperback. The demand for energy and pollution from fossil fuels are increasing in the 21st century. Research on renewable energies is accelerating to replace conventional energy sources due to energy scarcity and rising pollution levels. A 270 TWh power of photovoltaic (PV) capacity was produced globally in the year of 2023, while it was found to be unstable due to its negative temperature coefficient [0.5 %/oC]. The electrical conversion efficiency of PV is directly proportional to the irradiance level on its surface. Using optical concentrators on the PV surface can enhance the intensity of solar radiation, thereby increasing the power production of concentrated photovoltaics (CPV). Globally, the installed non-concentrated and concentrated capacity will increase to 660 GW and 100 GW, respectively, by the end of 2024. The concentration of solar irradiance on PV depends on the concentration ratio (CR), which refers to the ratio between the area of the concentrator and the area of the solar cell. Concentrated photovoltaic technologies (CPV) are classified into three categories, namely, low concentration ratio (CR 10), and high concentration ratio (CR > 100). The performance of the CPV is significantly influenced by its surface temperature, leading to a 5 % reduction in power output for every 10 C increase in temperature, while increasing the CR. The use of CPV with more than 10CR requires a solar tracker, which increases the total cost and total weight of the system, while the cost and weight of the system can be minimized with the use of LCPV (CPV). This book will be useful for proposing an effective thermal management techniques. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH

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    EUR 88,73

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    Quantità: 1 disponibili

    Taschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The demand for energy and pollution from fossil fuels are increasing in the 21st century. Research on renewable energies is accelerating to replace conventional energy sources due to energy scarcity and rising pollution levels. A 270 TWh power of photovoltaic (PV) capacity was produced globally in the year of 2023, while it was found to be unstable due to its negative temperature coefficient [0.5 %/oC]. The electrical conversion efficiency of PV is directly proportional to the irradiance level on its surface. Using optical concentrators on the PV surface can enhance the intensity of solar radiation, thereby increasing the power production of concentrated photovoltaics (CPV). Globally, the installed non-concentrated and concentrated capacity will increase to 660 GW and 100 GW, respectively, by the end of 2024. The concentration of solar irradiance on PV depends on the concentration ratio (CR), which refers to the ratio between the area of the concentrator and the area of the solar cell. Concentrated photovoltaic technologies (CPV) are classified into three categories, namely, low concentration ratio (CR 10), and high concentration ratio (CR > 100). The performance of the CPV is significantly influenced by its surface temperature, leading to a 5 % reduction in power output for every 10 ¿C increase in temperature, while increasing the CR. The use of CPV with more than 10CR requires a solar tracker, which increases the total cost and total weight of the system, while the cost and weight of the system can be minimized with the use of LCPV (CPV). This book will be useful for proposing an effective thermal management techniques.

  • Lingua: Inglese

    Editore: Eliva Press Okt 2025, 2025

    9999324606 / 9789999324601

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    Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germaniabuchversandmimpf2000

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    EUR 59,20

    EUR 60,00 spedizione 
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    Quantità: 1 disponibili

    Taschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -The demand for energy and pollution from fossil fuels are increasing in the 21st century. Research on renewable energies is accelerating to replace conventional energy sources due to energy scarcity and rising pollution levels. A 270 TWh power of photovoltaic (PV) capacity was produced globally in the year of 2023, while it was found to be unstable due to its negative temperature coefficient [0.5 %/oC]. The electrical conversion efficiency of PV is directly proportional to the irradiance level on its surface. Using optical concentrators on the PV surface can enhance the intensity of solar radiation, thereby increasing the power production of concentrated photovoltaics (CPV). Globally, the installed non-concentrated and concentrated capacity will increase to 660 GW and 100 GW, respectively, by the end of 2024. The concentration of solar irradiance on PV depends on the concentration ratio (CR), which refers to the ratio between the area of the concentrator and the area of the solar cell. Concentrated photovoltaic technologies (CPV) are classified into three categories, namely, low concentration ratio (CR 10), and high concentration ratio (CR > 100). The performance of the CPV is significantly influenced by its surface temperature, leading to a 5 % reduction in power output for every 10 ¿C increase in temperature, while increasing the CR. The use of CPV with more than 10CR requires a solar tracker, which increases the total cost and total weight of the system, while the cost and weight of the system can be minimized with the use of LCPV (CPV). This book will be useful for proposing an effective thermal management techniques.Libri GmbH, Europaallee 1, 36244 Bad Hersfeld 176 pp. Englisch.

  • Lingua: Inglese

    Editore: Eliva Press, 2025

    9999324606 / 9789999324601

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    Da: preigu, Osnabrück, Germaniapreigu

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    EUR 57,05

    EUR 70,00 spedizione 
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    Quantità: 5 disponibili

    Taschenbuch. Condizione: Neu. Thermal Management of Low Concentrated Photovoltaics with Heat Sinks encapsulated NePCM | Sivashankar Manickam | Taschenbuch | Englisch | 2025 | Eliva Press | EAN 9789999324601 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand.