Enables reader to develop efficient, powerful, and safe propulsion systems
Energetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion.
Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following:
Energetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Luigi T. DeLuca received his Ph.D. from Princeton University, USA, in 1976. He is currently a Visiting Professor at Nanjing University of Science & Technology, Nanjing, China.
Ruth M. Doherty received her degrees in Chemistry at the University of Maryland (M.S in Organic Chemistry; Ph.D. in Physical Chemistry). After a long career in federal service, she is now a Senior Chemist at the Energetics Technology Center.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Hardcover. Etat : new. Hardcover. Enables reader to develop efficient, powerful, and safe propulsion systems Energetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion. Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following: Neural networks role in development of a high-energy materials genome and problems and approaches for estimating the enthalpy of formation of energetic materialsCombustion of silicon as a carbon-free energy carrier and theoretical developments in combustion of aluminum-based reactive materialsAmmonium nitrate-based cocrystals as promising oxidizers for solid rocket propellants and preliminary particle size distribution measurements in a new installation that reduces inherent biasSurface accumulation layers in metallized solid fuel propulsion and hypergolic propellants based on hydrogen peroxide oxidizerAccelerated combustion simulations of hydrogen-air flames in the HYLON swirled injector in OpenFOAM Energetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. N° de réf. du vendeur 9783527355457
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Buch. Etat : Neu. Energetic Materials and Techniques | Advances in Chemical Propulsion and Power Generation | Luigi T. De Luca (u. a.) | Buch | 2 Audio-CDs | Englisch | 2026 | Wiley-VCH GmbH | EAN 9783527355457 | Verantwortliche Person für die EU: Wiley-VCH GmbH, Boschstr. 12, 69469 Weinheim, product-safety[at]wiley[dot]com | Anbieter: preigu. N° de réf. du vendeur 135846748
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Buch. Etat : Neu. Neuware -Enables reader to develop efficient, powerful, and safe propulsion systemsEnergetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion.Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following:\* Neural networks role in development of a high-energy materials genome and problems and approaches for estimating the enthalpy of formation of energetic materials\* Combustion of silicon as a carbon-free energy carrier and theoretical developments in combustion of aluminum-based reactive materials\* Ammonium nitrate-based cocrystals as promising oxidizers for solid rocket propellants and preliminary particle size distribution measurements in a new installation that reduces inherent bias\* Surface accumulation layers in metallized solid fuel propulsion and hypergolic propellants based on hydrogen peroxide oxidizer\* Accelerated combustion simulations of hydrogen-air flames in the HYLON swirled injector in OpenFOAMEnergetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion. 752 pp. Englisch. N° de réf. du vendeur 9783527355457
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Buch. Etat : Neu. Neuware -Enables reader to develop efficient, powerful, and safe propulsion systemsEnergetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion.Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following:\* Neural networks role in development of a high-energy materials genome and problems and approaches for estimating the enthalpy of formation of energetic materials\* Combustion of silicon as a carbon-free energy carrier and theoretical developments in combustion of aluminum-based reactive materials\* Ammonium nitrate-based cocrystals as promising oxidizers for solid rocket propellants and preliminary particle size distribution measurements in a new installation that reduces inherent bias\* Surface accumulation layers in metallized solid fuel propulsion and hypergolic propellants based on hydrogen peroxide oxidizer\* Accelerated combustion simulations of hydrogen-air flames in the HYLON swirled injector in OpenFOAMEnergetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion. 752 pp. Englisch. N° de réf. du vendeur 9783527355457
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Buch. Etat : Neu. Neuware -Enables reader to develop efficient, powerful, and safe propulsion systems Energetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion. Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following: - Neural networks' role in development of a high-energy materials genome and problems and approaches for estimating the enthalpy of formation of energetic materials - Combustion of silicon as a carbon-free energy carrier and theoretical developments in combustion of aluminum-based reactive materials - Ammonium nitrate-based cocrystals as promising oxidizers for solid rocket propellants and preliminary particle size distribution measurements in a new installation that reduces inherent bias - Surface accumulation layers in metallized solid fuel propulsion and hypergolic propellants based on hydrogen peroxide oxidizer - Accelerated combustion simulations of hydrogen-air flames in the HYLON swirled injector in OpenFOAM Energetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion. N° de réf. du vendeur 9783527355457
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Buch. Etat : Neu. Neuware -Enables reader to develop efficient, powerful, and safe propulsion systems Energetic Materials and Techniques explores cutting-edge developments in the area of energetic materials. I focuses on innovations in the materials themselves, as well as on advances in experimental techniques and computational approaches, such as the integration of artificial intelligence and machine learning to enhance material properties and performance. It delves into the combustion of micro- and nano-sized metals, which hold promise for improving the efficiency and power of propulsion systems, and covers the sensitivity of energetic materials and carbon-free energy carriers Environmental and safety concerns, as well as the latest developments in solid and hybrid rocket propulsion, are also covered. At the end of the text, readers will find advanced computational techniques for modeling and simulation in combustion. Written by a team of highly qualified authors with significant experience in the field, Energetic Materials and Techniques addresses many high-interest topics, including the following: - Neural networks' role in development of a high-energy materials genome and problems and approaches for estimating the enthalpy of formation of energetic materials - Combustion of silicon as a carbon-free energy carrier and theoretical developments in combustion of aluminum-based reactive materials - Ammonium nitrate-based cocrystals as promising oxidizers for solid rocket propellants and preliminary particle size distribution measurements in a new installation that reduces inherent bias - Surface accumulation layers in metallized solid fuel propulsion and hypergolic propellants based on hydrogen peroxide oxidizer - Accelerated combustion simulations of hydrogen-air flames in the HYLON swirled injector in OpenFOAM Energetic Materials and Techniques serves as an essential up-to-date reference on the subject for both researchers and industry professionals. It is also valuable for funding agencies seeking to support both near- and long-term research projects in high-energy materials and propulsion.Wiley-VCH GmbH, Boschstraße 12, 69469 Weinheim 752 pp. Englisch. N° de réf. du vendeur 9783527355457
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