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Viser: Particle Dynamics with Aggregation and Fragmentation - An Introduction for Scientists and Engineers

Particle Dynamics with Aggregation and Fragmentation, 1. udgave

Particle Dynamics with Aggregation and Fragmentation Vital Source e-bog

Culbert B. Laney
(2025)
Oxford University Press
734,00 kr.
Leveres umiddelbart efter køb
Particle Dynamics with Aggregation and Fragmentation, 1. udgave
Søgbar e-bog

Particle Dynamics with Aggregation and Fragmentation Vital Source e-bog

Culbert B. Laney
(2025)
Oxford University Press
1.115,00 kr.
Leveres umiddelbart efter køb
Particle Dynamics with Aggregation and Fragmentation, 1. udgave

Particle Dynamics with Aggregation and Fragmentation Vital Source e-bog

Culbert B. Laney
(2025)
Oxford University Press
836,00 kr.
Leveres umiddelbart efter køb
Particle Dynamics with Aggregation and Fragmentation - An Introduction for Scientists and Engineers

Particle Dynamics with Aggregation and Fragmentation

An Introduction for Scientists and Engineers
Culbert B. Laney
(2025)
Sprog: Engelsk
Oxford University Press
1.670,00 kr.
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Detaljer om varen

  • 1. Udgave
  • Vital Source 180 day rentals (fixed pages)
  • Udgiver: Oxford University Press (April 2025)
  • ISBN: 9780198920670R180

Particle dynamics with aggregation and fragmentation occurs in almost every branch of science and engineering. Examples include the formation of stars and planets in astrophysics, the formation of colloids and polymers in chemistry, the formation of raindrops and snowflakes in meteorology, the formation of fuel sprays in mechanical engineering, impact damage to aircraft and satellites in aerospace engineering, and drilling and blasting in civil and mining engineering.



This is one of the first textbooks to give particle dynamics with aggregation and fragmentation a full treatment, putting it on an equal footing with fluid dynamics and solid mechanics. To help readers understand the connections to fluid dynamics, this book shows how particle dynamics occurs in ideal gases, granular gases, and fluid turbulence. Instead of relying on empirical results that apply only under specific circumstances, the book uses broad physical principles such as conservation of mass, momentum, and energy. The text draws on rigorous mathematical theory and modern high-performance computing, while avoiding the complex details. The book also provides extensive references for those readers who need them.



While intended for a graduate level audience, the book is written in a graphically-rich style which will be accessible to advanced undergraduates. In particular, it includes over 100 figures and over 200 examples, most of which are placed into grey boxes to avoid interrupting the main text. While surveying the relevant research literature, this book also draws on the author's unique insights into particle aggregation and fragmentation, gained from participating in relevant research and development activities in industry and academia for over 25 years.

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Bookshelf online: 180 dage fra købsdato.
Bookshelf appen: 180 dage fra købsdato.

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Detaljer om varen

  • 1. Udgave
  • Vital Source searchable e-book (Fixed pages)
  • Udgiver: Oxford University Press (April 2025)
  • ISBN: 9780198920670

Particle dynamics with aggregation and fragmentation occurs in almost every branch of science and engineering. Examples include the formation of stars and planets in astrophysics, the formation of colloids and polymers in chemistry, the formation of raindrops and snowflakes in meteorology, the formation of fuel sprays in mechanical engineering, impact damage to aircraft and satellites in aerospace engineering, and drilling and blasting in civil and mining engineering.



This is one of the first textbooks to give particle dynamics with aggregation and fragmentation a full treatment, putting it on an equal footing with fluid dynamics and solid mechanics. To help readers understand the connections to fluid dynamics, this book shows how particle dynamics occurs in ideal gases, granular gases, and fluid turbulence. Instead of relying on empirical results that apply only under specific circumstances, the book uses broad physical principles such as conservation of mass, momentum, and energy. The text draws on rigorous mathematical theory and modern high-performance computing, while avoiding the complex details. The book also provides extensive references for those readers who need them.



While intended for a graduate level audience, the book is written in a graphically-rich style which will be accessible to advanced undergraduates. In particular, it includes over 100 figures and over 200 examples, most of which are placed into grey boxes to avoid interrupting the main text. While surveying the relevant research literature, this book also draws on the author's unique insights into particle aggregation and fragmentation, gained from participating in relevant research and development activities in industry and academia for over 25 years.

Licens varighed:
Bookshelf online: 4 år fra købsdato.
Bookshelf appen: ubegrænset dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • 1. Udgave
  • Vital Source 365 day rentals (fixed pages)
  • Udgiver: Oxford University Press (April 2025)
  • ISBN: 9780198920670R365

Particle dynamics with aggregation and fragmentation occurs in almost every branch of science and engineering. Examples include the formation of stars and planets in astrophysics, the formation of colloids and polymers in chemistry, the formation of raindrops and snowflakes in meteorology, the formation of fuel sprays in mechanical engineering, impact damage to aircraft and satellites in aerospace engineering, and drilling and blasting in civil and mining engineering.



This is one of the first textbooks to give particle dynamics with aggregation and fragmentation a full treatment, putting it on an equal footing with fluid dynamics and solid mechanics. To help readers understand the connections to fluid dynamics, this book shows how particle dynamics occurs in ideal gases, granular gases, and fluid turbulence. Instead of relying on empirical results that apply only under specific circumstances, the book uses broad physical principles such as conservation of mass, momentum, and energy. The text draws on rigorous mathematical theory and modern high-performance computing, while avoiding the complex details. The book also provides extensive references for those readers who need them.



While intended for a graduate level audience, the book is written in a graphically-rich style which will be accessible to advanced undergraduates. In particular, it includes over 100 figures and over 200 examples, most of which are placed into grey boxes to avoid interrupting the main text. While surveying the relevant research literature, this book also draws on the author's unique insights into particle aggregation and fragmentation, gained from participating in relevant research and development activities in industry and academia for over 25 years.

Licens varighed:
Bookshelf online: 365 dage fra købsdato.
Bookshelf appen: 365 dage fra købsdato.

Udgiveren oplyser at følgende begrænsninger er gældende for dette produkt:
Print: 2 sider kan printes ad gangen
Copy: højest 2 sider i alt kan kopieres (copy/paste)

Detaljer om varen

  • Hardback: 464 sider
  • Udgiver: Oxford University Press (April 2025)
  • ISBN: 9780198920663
Particle dynamics with aggregation and fragmentation occurs in almost every branch of science and engineering. Examples include the formation of stars and planets in astrophysics, the formation of colloids and polymers in chemistry, the formation of raindrops and snowflakes in meteorology, the formation of fuel sprays in mechanical engineering, impact damage to aircraft and satellites in aerospace engineering, and drilling and blasting in civil and mining engineering.This is one of the first textbooks to give particle dynamics with aggregation and fragmentation a full treatment, putting it on an equal footing with fluid dynamics and solid mechanics. To help readers understand the connections to fluid dynamics, this book shows how particle dynamics occurs in ideal gases, granular gases, and fluid turbulence. Instead of relying on empirical results that apply only under specific circumstances, the book uses broad physical principles such as conservation of mass, momentum, and energy. The text draws on rigorous mathematical theory and modern high-performance computing, while avoiding the complex details. The book also provides extensive references for those readers who need them.While intended for a graduate level audience, the book is written in a graphically-rich style which will be accessible to advanced undergraduates. In particular, it includes over 100 figures and over 200 examples, most of which are placed into grey boxes to avoid interrupting the main text. While surveying the relevant research literature, this book also draws on the author's unique insights into particle aggregation and fragmentation, gained from participating in relevant research and development activities in industry and academia for over 25 years.
About the AuthorAbout the Book ("Frequently Asked Questions")1. Introduction2. Basic Properties3. Distributions and Averages4. Computational Methods5. Analytic, Semi-Empirical, and Empirical Methods6. Particle Shape Distributions7. Particle Velocity Distributions8. Particle Energy Distributions9. Aggregation Cascades
Part 1: Mean-Field Governing Equations10. Aggregation Cascades
Part 2: Full Mean-Field Solutions11. Aggregation Cascades
Part 3: Late-Time Mean-Field Solutions12. Fragmentation Cascades
Part 1: Mean-Field Theory for Binary Fragmentation13. Fragmentation Cascades
Part 2: Mean-Field Theory for Random Fragmentation14. Fragmentation Cascades
Part 3: Mean-Field Theory for Collisional Fragmentation15. Unitary Fragmentation
Part 1: Basic Principles16. Unitary Fragmentation
Part 2: Average Sizes17. Unitary Fragmentation
Part 3: Size Distributions18. Maximum Entropy Theory for Discrete Particle Systems19. Maximum Entropy Theory for Continuous Particle Systems20. ConclusionsAppendix A: Different Forms of Common Size Distributions
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